Positron emission tomography in clinical neurology.

Positron emission tomography (PET) imaging in clinical neurology serves several purposes: differential diagnosis, especially in the early stage of neurologic disorders, description of pathophysiologic changes that are responsible for manifestation and course of a disease, and evaluation and follow-up of treatment effects. Many of these applications are possible with the most widely available PET tracer, 2-deoxy-2-[18F]fluoro-D-glucose (FDG). Additional tracers are used clinically to detect the disturbance of specific neurotransmitter and receptor systems, blood flow, oxygen metabolism, and amino acid uptake. Main diagnostic issues addressed in this review are early diagnosis of Alzheimer's disease and other dementias, differential diagnosis of movement disorders, diagnosis of recurrent brain tumors, identification of viable tissue in ischemic stroke, and localization of epileptogenic foci. Techniques for presurgical localization of eloquent cortex and monitoring of therapy are presented.

[1]  V J Cunningham,et al.  Central benzodiazepine receptors in malformations of cortical development: A quantitative study. , 2001, Brain : a journal of neurology.

[2]  A. Bol,et al.  Positron tomography demonstrates frontal lobe hypometabolism in progressive supranuclear palsy , 1989, Annals of neurology.

[3]  V. Dhawan,et al.  Differential diagnosis of parkinsonism with [18F]fluorodeoxyglucose and PET , 1998, Movement disorders : official journal of the Movement Disorder Society.

[4]  O Sabri,et al.  Metabolic and electrophysiological validation of functional MRI , 2001, Journal of neurology, neurosurgery, and psychiatry.

[5]  M E Phelps,et al.  Epileptic patterns of local cerebral metabolism and perfusion in humans determined by emission computed tomography of 18FDG and 13NH3 , 1980, Annals of neurology.

[6]  D J Brooks,et al.  Ketone bodies do not directly alter excitatory or inhibitory hippocampal synaptic transmission , 2000, Neurology.

[7]  J. Doppman,et al.  Pituitary microadenomas: a PET study. , 1990, Radiology.

[8]  C D Marsden,et al.  Differing patterns of striatal 18F‐dopa uptake in Parkinson's disease, multiple system atrophy, and progressive supranuclear palsy , 1990, Annals of neurology.

[9]  O Muzik,et al.  Intracranial EEG versus flumazenil and glucose PET in children with extratemporal lobe epilepsy , 2000, Neurology.

[10]  D. Carpenter,et al.  Benign prognosis of never-symptomatic carotid occlusion , 2000, Neurology.

[11]  P. Maquet,et al.  Contribution of positron emission tomography to the investigation of epilepsies of frontal lobe origin. , 1992, Advances in neurology.

[12]  M Vapalahti,et al.  [11 C]Flumazenil binding in the medial temporal lobe in patients with temporal lobe epilepsy: correlation with hippocampal MR volumetry, T2 relaxometry, and neuropathology. , 2000, Neurology.

[13]  I. Savic,et al.  Cortical Benzodiazepine Receptor Changes are Related to Frequency of Partial Seizures: A Positron Emission Tomography Study , 1996, Epilepsia.

[14]  William E. Klunk,et al.  The Binding of 2-(4′-Methylaminophenyl)Benzothiazole to Postmortem Brain Homogenates Is Dominated by the Amyloid Component , 2003, The Journal of Neuroscience.

[15]  Jeffrey G. Ojemann,et al.  Increased Functional Vascular Response in the Region of a Glioma , 1998, Journal of cerebral blood flow and metabolism : official journal of the International Society of Cerebral Blood Flow and Metabolism.

[16]  Hidenao Fukuyama,et al.  Movement-related cortical potentials and regional cerebral blood flow change in patients with stroke after motor recovery , 1997, Journal of the Neurological Sciences.

[17]  Karl J. Friston,et al.  Rapid Assessment of Regional Cerebral Metabolic Abnormalities in Single Subjects with Quantitative and Nonquantitative [18F]FDG PET: A Clinical Validation of Statistical Parametric Mapping , 1999, NeuroImage.

[18]  H. Groenewegen,et al.  Leads for the development of neuroprotective treatment in Parkinson's disease and brain imaging methods for estimating treatment efficacy. , 1999, European journal of pharmacology.

[19]  V J Cunningham,et al.  11C-flumazenil PET, volumetric MRI, and quantitative pathology in mesial temporal lobe epilepsy , 1997, Neurology.

[20]  A. Kertesz,et al.  Pick's disease, frontotemporal dementia, and Pick complex: emerging concepts. , 1998, Archives of neurology.

[21]  J. Missimer,et al.  Complementary positron emission tomographic studies of the striatal dopaminergic system in Parkinson's disease. , 1995, Archives of neurology.

[22]  Peter T. Fox,et al.  Preoperative assessment of the cerebral hemispheric dominance for language with CBF PET , 1993 .

[23]  K Herholz,et al.  Enhanced accuracy in differential diagnosis of radiation necrosis by positron emission tomography-magnetic resonance imaging coregistration: technical case report. , 2000, Neurosurgery.

[24]  S. Thibodeau,et al.  Preclinical evidence of Alzheimer's disease in persons homozygous for the epsilon 4 allele for apolipoprotein E. , 1996, The New England journal of medicine.

[25]  K Wienhard,et al.  PET, CT, and MR Imaging in Cerebrovascular Disease , 1986, Journal of computer assisted tomography.

[26]  Richard S. J. Frackowiak,et al.  Striatal function in normal aging: Implications for Parkinson's disease , 1990, Annals of neurology.

[27]  Gereon R. Fink,et al.  HMPAO SPET and FDG PET in Alzheimer's disease and vascular dementia: comparison of perfusion and metabolic pattern , 1994, European Journal of Nuclear Medicine.

[28]  S Gilman,et al.  Differences between lateral and mesial temporal metabolism interictally in epilepsy of mesial temporal origin , 1990, Neurology.

[29]  W. Martin,et al.  Cortical glucose metabolism in Huntington's disease , 1992, Neurology.

[30]  A. Luxen,et al.  Positron emission tomography and histopathology in Creutzfeldt‐Jakob disease , 1993, Neurology.

[31]  C Nahmias,et al.  A Rostrocaudal Gradient for Aromatic Acid Decarboxylase in the Human Striatum , 1987, Canadian Journal of Neurological Sciences / Journal Canadien des Sciences Neurologiques.

[32]  H. Karbe,et al.  Brain Plasticity in Poststroke Aphasia: What Is the Contribution of the Right Hemisphere? , 1998, Brain and Language.

[33]  R N Gunn,et al.  Huntington's disease progression. PET and clinical observations. , 1999, Brain : a journal of neurology.

[34]  K. Shannak,et al.  Brain monoamines in progressive supranuclear palsy--comparison with idiopathic Parkinson's disease. , 1994, Journal of neural transmission. Supplementum.

[35]  John S. Duncan,et al.  Commission on Diagnostic Strategies Recommendations for Functional Neuroimaging of Persons with Epilepsy , 2000, Epilepsia.

[36]  J. Baron,et al.  Delayed Intrahemispheric Remote Hypometabolism , 2000, Cerebrovascular Diseases.

[37]  Alan C. Evans,et al.  Regional cerebral glucose metabolism differs in adult and rigid juvenile forms of Huntington disease. , 1989, Pediatric neurology.

[38]  G. Alexander,et al.  Positron emission tomography in evaluation of dementia: Regional brain metabolism and long-term outcome. , 2001, JAMA.

[39]  K Herholz,et al.  Impaired benzodiazepine receptor binding in peri‐lesional cortex of patients with symptomatic epilepsies studied by [11C]‐flumazenil PET 1 , 2002, European journal of neurology.

[40]  R. Hichwa,et al.  PET scan investigations of Huntington's disease: Cerebral metabolic correlates of neurological features and functional decline , 1986, Annals of neurology.

[41]  D E Kuhl,et al.  Motor correlates of occipital glucose hypometabolism in Parkinson’s disease without dementia , 1999, Neurology.

[42]  J. Grotta,et al.  Intravenous thrombolysis for acute stroke , 1997, Neurology.

[43]  M. Han,et al.  Comparative analysis of MR imaging, positron emission tomography, and ictal single-photon emission CT in patients with neocortical epilepsy. , 2001, AJNR. American journal of neuroradiology.

[44]  T. Ishikawa,et al.  Assessment of disease severity in parkinsonism with fluorine-18-fluorodeoxyglucose and PET. , 1995, Journal of nuclear medicine : official publication, Society of Nuclear Medicine.

[45]  D. Kuhl,et al.  In vivo studies of acetylcholinesterase activity using a labeled substrate, N‐[11C]methylpiperdin‐4‐yl propionate ([11C]PMP) , 1996, Synapse.

[46]  H. Karbe,et al.  Widespread functional effects of discrete thalamic infarction. , 1991, Archives of neurology.

[47]  J. Xiong,et al.  Intersubject Variability in Cortical Activations during a Complex Language Task , 2000, NeuroImage.

[48]  C. Markham,et al.  Patterns of cerebral glucose utilization in Parkinson's disease and Huntington's disease , 1984, Annals of neurology.

[49]  W D Heiss,et al.  Functional Imaging Correlates of Recovery after Stroke in Humans , 2000, Journal of cerebral blood flow and metabolism : official journal of the International Society of Cerebral Blood Flow and Metabolism.

[50]  R Sankar,et al.  Landau-Kleffner Syndrome With Continuous Spikes and Waves During Slow-Wave Sleep , 1995, Journal of child neurology.

[51]  R. J. Seitz,et al.  Precentral glioma location determines the displacement of cortical hand representation. , 1998, Neurosurgery.

[52]  G. Alexander,et al.  Declining brain activity in cognitively normal apolipoprotein E ɛ4 heterozygotes: A foundation for using positron emission tomography to efficiently test treatments to prevent Alzheimer's disease , 2001, Proceedings of the National Academy of Sciences of the United States of America.

[53]  R. Müller,et al.  Determination of language dominance by [15O]-water PET in children and adolescents: A comparison with the wada test , 1998 .

[54]  P. Maquet,et al.  Cerebral Glucose Utilization During Sleep in Landau‐Kleffner Syndrome: A PET Study , 1990, Epilepsia.

[55]  E. Salmon,et al.  Anterior Cingulate and Motor Network Metabolic Impairment in Progressive Supranuclear Palsy , 1997, NeuroImage.

[56]  J. C. Mazziotta,et al.  Interictal cerebral metabolism in partial epilepsies of neocortical origin , 1991, Epilepsy Research.

[57]  C. Nahmias,et al.  Regional cerebral glucose metabolism in SLE chorea: Further evidence that striatal hypometabolism is not a correlate of chorea , 1987, Movement disorders : official journal of the Movement Disorder Society.

[58]  R. Robinson,et al.  Cortical and subcortical glucose metabolism in childhood epileptic encephalopathies , 1997, Journal of neurology, neurosurgery, and psychiatry.

[59]  Y Yonekura,et al.  Evidence of misery perfusion and risk for recurrent stroke in major cerebral arterial occlusive diseases from PET. , 1996, Journal of neurology, neurosurgery, and psychiatry.

[60]  J. Baron,et al.  Tomographic Mapping of Brain Intracellular pH and Extracellular Water Space in Stroke Patients , 1985, Journal of cerebral blood flow and metabolism : official journal of the International Society of Cerebral Blood Flow and Metabolism.

[61]  P. Grasby,et al.  Cerebral activation in malformations of cortical development. , 1998, Brain : a journal of neurology.

[62]  C. Pozzilli,et al.  Positron Emission Tomography in Minor Ischemic Stroke Using Oxygen-15 Steady-State Technique , 1987, Journal of cerebral blood flow and metabolism : official journal of the International Society of Cerebral Blood Flow and Metabolism.

[63]  R Iwata,et al.  Assessment of cancer recurrence in residual tumors after fractionated radiotherapy: a comparison of fluorodeoxyglucose, L-methionine and thymidine. , 1997, Journal of nuclear medicine : official publication, Society of Nuclear Medicine.

[64]  K. Leenders,et al.  Tracer transport and metabolism in a patient with juvenile pilocytic astrocytoma. A PET study , 1998, Journal of Neuro-Oncology.

[65]  A J Lees,et al.  Steele-Richardson-Olszewski syndrome. Brain energy metabolism, blood flow and fluorodopa uptake measured by positron emission tomography. , 1988, Brain : a journal of neurology.

[66]  R. Goebel,et al.  Multimodal imaging of residual function and compensatory resource allocation in cortical atrophy: a case study of parietal lobe function in a patient with Huntington's disease , 1998, Psychiatry Research: Neuroimaging.

[67]  J. Baron,et al.  Do changes in oxygen metabolism in the unaffected cerebral hemisphere underlie early neurological recovery after stroke? A positron emission tomography study. , 1996, Stroke.

[68]  M. Bobinski,et al.  Prediction of cognitive decline in normal elderly subjects with 2-[18F]fluoro-2-deoxy-d-glucose/positron-emission tomography (FDG/PET) , 2001, Proceedings of the National Academy of Sciences of the United States of America.

[69]  J. Duncan,et al.  Benzodiazepine–GABAA Receptor Binding Is Very Low in Dysembryoplastic Neuroepithelial Tumor: a PET Study , 2001, Epilepsia.

[70]  Fausto Viader,et al.  Spontaneous neurological recovery after stroke and the fate of the ischemic penumbra , 1996, Annals of neurology.

[71]  R. Müller,et al.  Brain Organization of Motor and Language Functions Following Hemispherectomy: A [15O]-Water Positron Emission Tomography Study , 1998, Journal of child neurology.

[72]  H. Fukuyama,et al.  Atrophy of the corpus callosum, cognitive impairment, and cortical hypometabolism in progressive supranuclear palsy , 1997, Annals of neurology.

[73]  Alan A. Wilson,et al.  11C-labeled stilbene derivatives as Abeta-aggregate-specific PET imaging agents for Alzheimer's disease. , 2003, Nuclear medicine and biology.

[74]  A. Destée,et al.  Voxel‐based distribution of metabolic impairment in corticobasal degeneration , 2000, Movement disorders : official journal of the Movement Disorder Society.

[75]  S. Goldman,et al.  PET findings in a brain abscess associated with a silent atrial septal defect , 1995, Clinical Neurology and Neurosurgery.

[76]  R. Lipton,et al.  Validity of clinical criteria for the diagnosis of dementia with Lewy bodies , 1999, Neurology.

[77]  M. Iyo,et al.  Brain acetylcholinesterase activity: validation of a PET tracer in a rat model of Alzheimer's disease. , 1996, Journal of nuclear medicine : official publication, Society of Nuclear Medicine.

[78]  G. Sedvall,et al.  IN-VIVO DEMONSTRATION OF REDUCED BENZODIAZEPINE RECEPTOR BINDING IN HUMAN EPILEPTIC FOCI , 1988, The Lancet.

[79]  M. Bergström,et al.  Positron emission tomography with ([11C]methyl)-L-methionine, [11C]D-glucose, and [68Ga]EDTA in supratentorial tumors. , 1985, Journal of computer assisted tomography.

[80]  N. Foster,et al.  Metabolic reduction in the posterior cingulate cortex in very early Alzheimer's disease , 1997, Annals of neurology.

[81]  T. Taniwaki,et al.  Positron emission tomography (PET) in Machado-Joseph disease , 1997, Journal of the Neurological Sciences.

[82]  Otto Muzik,et al.  Imaging proliferation in vivo with [F-18]FLT and positron emission tomography , 1998, Nature Medicine.

[83]  M. Hayden,et al.  The combined use of positron emission tomography and DNA polymorphisms for preclinical detection of Huntington's disease , 1987, Neurology.

[84]  M. Sasaki,et al.  Differentiating between multiple system atrophy and Parkinson’s disease by positron emission tomography with18F-dopa and18F-FDG , 1997, Annals of nuclear medicine.

[85]  G. Schlaug,et al.  Inter-subject variability of cerebral activations in acquiring a motor skill: a study with positron emission tomography , 2004, Experimental Brain Research.

[86]  J. Mazziotta,et al.  Reduced cerebral glucose metabolism in asymptomatic subjects at risk for Huntington's disease. , 1987, The New England journal of medicine.

[87]  Yoav Ben-Shlomo,et al.  The accuracy of diagnosis of parkinsonian syndromes in a specialist movement disorder service. , 2002, Brain : a journal of neurology.

[88]  D Comar,et al.  Comparison study of CT and positron emission tomographic data in recent cerebral infarction. , 1983, AJNR. American journal of neuroradiology.

[89]  Richard S. J. Frackowiak,et al.  Striatal D2 receptor status in patients with Parkinson's disease, striatonigral degeneration, and progressive supranuclear palsy, measured with 11C‐raclopride and positron emission tomography , 1992, Annals of neurology.

[90]  W. Martin,et al.  Serendipitous Detection of Cushing’s Disease by FDG Positron Emission Tomography and a Review of the Literature , 2002, Clinical nuclear medicine.

[91]  A. Thiel,et al.  Individual Functional Anatomy of Verb Generation , 1996, NeuroImage.

[92]  H. Herzog,et al.  Comparison of somatosensory evoked potentials with striatal glucose consumption measured by positron emission tomography in the early diagnosis of huntington's disease , 1993, Movement disorders : official journal of the Movement Disorder Society.

[93]  D. Kuhl,et al.  Crossed cerebellar diaschisis: occurrence and resolution demonstrated with PET during carotid temporary balloon occlusion. , 1992, AJNR. American journal of neuroradiology.

[94]  Hemi-parkinsonism in multiple system atrophy: a PET and MRI study , 1992, Journal of the Neurological Sciences.

[95]  Iwao Kanno,et al.  Hemodynamic changes during neural deactivation in human brain: A positron emission tomography study of crossed cerebellar diaschisis , 2002, Annals of nuclear medicine.

[96]  S. Sato,et al.  Postoperative changes in cerebral metabolism in temporal lobe epilepsy. , 2000, Archives of neurology.

[97]  D. Brooks,et al.  Motor sequence learning: a study with positron emission tomography , 1994, The Journal of neuroscience : the official journal of the Society for Neuroscience.

[98]  Task‐related activations in heterotopic brain malformations: a PET study , 1998, Neuroreport.

[99]  J S Fowler,et al.  Long‐Term frontal brain metabolic changes in cocaine abusers , 1992, Synapse.

[100]  N. Lassen,et al.  The luxury-perfusion syndrome and its possible relation to acute metabolic acidosis localised within the brain. , 1966, Lancet.

[101]  Dae Won Seo,et al.  Extratemporal hypometabolism on FDG PET in temporal lobe epilepsy as a predictor of seizure outcome after temporal lobectomy , 2003, European Journal of Nuclear Medicine and Molecular Imaging.

[102]  A. Alavi,et al.  Ipsilateral and contralateral thalamic hypometabolism as a predictor of outcome after temporal lobectomy for seizures. , 2000, Journal of nuclear medicine : official publication, Society of Nuclear Medicine.

[103]  W D Heiss,et al.  FDG‐PET as a Prognostic Indicator in Radiochemotherapy of Glioblastoma , 1993, Journal of computer assisted tomography.

[104]  A. Brandes,et al.  Diagnostic advances and new trends for the treatment of primary central nervous system lymphoma. , 2002, European journal of cancer.

[105]  U. Spetzger,et al.  Preoperative PET activation for assessment of motor cortex area in precentral chondroma. , 1999, Surgical neurology.

[106]  J. Cummings,et al.  Cortical Abnormalities Associated With Subcortical Lesions in Vascular Dementia: Clinical and Positron Emission Tomographic Findings , 1995 .

[107]  G. Marchal,et al.  PET imaging of cerebral perfusion and oxygen consumption in acute ischaemic stroke: relation to outcome , 1993, The Lancet.

[108]  Hideo Tsukada,et al.  Multitracer study with positron emission tomography in Creutzfeldt-Jakob disease , 2002, European Journal of Nuclear Medicine and Molecular Imaging.

[109]  K Herholz,et al.  Long-term prognosis of poststroke aphasia studied with positron emission tomography. , 1995, Archives of neurology.

[110]  R. Sapolsky,et al.  Herpes Simplex Viral Vectors Expressing Bcl-2 Are Neuroprotective When Delivered After a Stroke , 1997, Journal of cerebral blood flow and metabolism : official journal of the International Society of Cerebral Blood Flow and Metabolism.

[111]  C. Markham,et al.  Cerebral metabolism and atrophy in huntington's disease determined by 18FDG and computed tomographic scan , 1982, Annals of neurology.

[112]  Y. Yonekura,et al.  Acute effects of stereotactic radiosurgery on the kineties of glucose metabolism in metastatic brain tumors: FDG PET study , 2001, Annals of nuclear medicine.

[113]  M. Sasaki,et al.  Cerebral glucose metabolism and striatal 18F-Dopa uptake by PET in cases of chorea with or without dementia , 1993, Journal of the Neurological Sciences.

[114]  M Teräs,et al.  Radiotherapy treatment planning and long-term follow-up with [(11)C]methionine PET in patients with low-grade astrocytoma. , 2000, International journal of radiation oncology, biology, physics.

[115]  J R Moeller,et al.  The metabolic anatomy of Parkinson's disease: Complementary [18F]fluorodeoxyglucose and [18F]fluorodopa positron emission tomographic studies , 1990, Movement disorders : official journal of the Movement Disorder Society.

[116]  Karl Herholz,et al.  In vivo study of acetylcholine esterase in basal forebrain, amygdala, and cortex in mild to moderate Alzheimer disease , 2004, NeuroImage.

[117]  C. Calautti,et al.  Sequential activation brain mapping after subcortical stroke: changes in hemispheric balance and recovery , 2001, Neuroreport.

[118]  K Herholz,et al.  Three-dimensional alignment of functional and morphological tomograms. , 1990, Journal of computer assisted tomography.

[119]  K Herholz,et al.  Cerebral Glucose Metabolism as a Predictor of Rehabilitation After Ischemic Stroke , 1993, Stroke.

[120]  I. Kanno,et al.  Cerebral circulation and metabolism in the acute stage of subarachnoid hemorrhage. , 2000, Journal of neurosurgery.

[121]  D Comar,et al.  Reversal of Focal "Misery‐Perfusion Syndrome" By Extra‐Intracranial Arterial Bypass in Hemodynamic Cerebral Ischemia: A Case Study with 15O Positron Emission Tomography , 1981, Stroke.

[122]  S. Bookheimer,et al.  Activation of language cortex with automatic speech tasks , 2000, Neurology.

[123]  A. Kakita,et al.  Surgical Strategy and Outcomes for Epileptic Patients with Focal Cortical Dysplasia or Dysembryoplastic Neuroepithelial Tumor , 2001, Epilepsia.

[124]  J. Dobkin,et al.  Evidence for transhemispheric diaschisis in unilateral stroke. , 1989, Archives of neurology.

[125]  K Herholz,et al.  FDG PET and Differential Diagnosis of Dementia , 1995, Alzheimer disease and associated disorders.

[126]  M. Diksic,et al.  The sequential changes in DNA synthesis, glucose utilization, protein synthesis, and peripheral benzodiazepine receptor density in C6 brain tumors after chemotherapy to predict the response of tumors to chemotherapy , 1996, Cancer.

[127]  W. J. Brown,et al.  Pathological findings underlying focal temporal lobe hypometabolism in partial epilepsy , 1982, Annals of neurology.

[128]  P. Maquet,et al.  Regional cerebral glucose metabolism in children with deterioration of one or more cognitive functions and continuous spike-and-wave discharges during sleep. , 1995, Brain : a journal of neurology.

[129]  A. Friedman,et al.  Correlation of Hippocampal Neuronal Density and FDG‐PET in Mesial Temporal Lobe Epilepsy , 1999, Epilepsia.

[130]  F. Soussaline,et al.  Brain tumor protein synthesis and histological grades: A study by positron emission tomography (PET) with C11-L-Methionine , 2004, Journal of Neuro-Oncology.

[131]  Takashi Kato,et al.  Magnetic resonance imaging and positron emission tomography of band heterotopia , 1993, Brain and Development.

[132]  M. Sasaki,et al.  A comparative study of thallium-201 SPET, carbon-11 methionine PET and fluorine-18 fluorodeoxyglucose PET for the differentiation of astrocytic tumours , 1998, European Journal of Nuclear Medicine.

[133]  T Jones,et al.  Serial observations on the pathophysiology of acute stroke. The transition from ischaemia to infarction as reflected in regional oxygen extraction. , 1983, Brain : a journal of neurology.

[134]  Richard S. J. Frackowiak,et al.  The functional anatomy of motor recovery after stroke in humans: A study with positron emission tomography , 1991, Annals of neurology.

[135]  M E Phelps,et al.  Patterns of human local cerebral glucose metabolism during epileptic seizures. , 1982, Science.

[136]  D J Brooks,et al.  11C-flumazenil PET in neocortical epilepsy , 1998, Neurology.

[137]  M. Hayden,et al.  Positron emission tomography in the early diagnosis of Huntington's disease , 1986, Neurology.

[138]  A. Alavi,et al.  Inter-modality comparisons of seizure focus lateralization in complex partial seizures , 2001, European Journal of Nuclear Medicine.

[139]  H. Lüders,et al.  Ictal motor signs and interictal regional cerebral hypometabolism , 1997, Neurology.

[140]  J. Wada,et al.  PET, CT, and MRI Imaging of Neuronal Migration Anomalies in Epileptic Patients , 1990, Canadian Journal of Neurological Sciences / Journal Canadien des Sciences Neurologiques.

[141]  S. Goldman,et al.  Combined Positron Emission Tomography and Magnetic Resonance Imaging for the Planning of Stereotactic Brain Biopsies in Children: Experience in 9 Cases , 2003, Pediatric Neurosurgery.

[142]  D J Brooks,et al.  Differential diagnosis of Parkinson's disease, multiple system atrophy, and Steele-Richardson-Olszewski syndrome: discriminant analysis of striatal 18F-dopa PET data. , 1994, Journal of neurology, neurosurgery, and psychiatry.

[143]  G L Brownell,et al.  Positron imaging in ischemic stroke disease using compounds labeled with oxygen 15. Initial results of clinicophysiologic correlations. , 1981, Archives of neurology.

[144]  Klemens Scheidhauer,et al.  Direct comparison of spatially normalized PET and SPECT scans in Alzheimer's disease. , 2002, Journal of nuclear medicine : official publication, Society of Nuclear Medicine.

[145]  M Corbetta,et al.  Preserved speech abilities and compensation following prefrontal damage. , 1996, Proceedings of the National Academy of Sciences of the United States of America.

[146]  V J Cunningham,et al.  Cortical dysfunction in non-demented Parkinson's disease patients: a combined (31)P-MRS and (18)FDG-PET study. , 2000, Brain : a journal of neurology.

[147]  M. Bergström,et al.  The normal pituitary examined with positron emission tomography and (methyl-11C)-L-methionine and (methyl-11C)-D-methionine , 2004, Neuroradiology.

[148]  W. Heiss,et al.  Positron emission tomography in Creutzfeldt-Jakob disease. , 1990, Archives of neurology.

[149]  H. Chugani,et al.  Glucose Metabolism in the Human Cerebellum: An Analysis of Crossed Cerebellar Diaschisis in Children With Unilateral Cerebral Inrjury , 1997, Journal of child neurology.

[150]  M. Fulham,et al.  Neuroimaging findings in a suprasellar granular cell tumor. , 2003, Journal of computer assisted tomography.

[151]  A. Volder,et al.  Brain glucose utilization in childhood Huntington's disease studied with positron emission tomography (PET) , 1988, Brain and Development.

[152]  K Wienhard,et al.  Permanent cortical damage detected by flumazenil positron emission tomography in acute stroke. , 1998, Stroke.

[153]  J. Fallon,et al.  Correlation of intellectual impairment in Parkinson's disease with FDG PET scan , 2000, Neuroreport.

[154]  H. Engler,et al.  Potential significance of 11C-methionine PET as a marker for the radiosensitivity of low-grade gliomas , 2002, European Journal of Nuclear Medicine and Molecular Imaging.

[155]  Satoshi Minoshima,et al.  Alzheimer's disease versus dementia with Lewy bodies: Cerebral metabolic distinction with autopsy confirmation , 2001, Annals of neurology.

[156]  A. Ylinen,et al.  Comparison of[18F]FDG-PET, [99mTc]-HMPAO-SPECT, and [123I]-iomazenil-SPECT in localising the epileptogenic cortex , 1997, Journal of neurology, neurosurgery, and psychiatry.

[157]  M. Raichle,et al.  Searching for a baseline: Functional imaging and the resting human brain , 2001, Nature Reviews Neuroscience.

[158]  David Eidelberg,et al.  Relationships among the metabolic patterns that correlate with mnemonic, visuospatial, and mood symptoms in Parkinson's disease. , 2002, The American journal of psychiatry.

[159]  W. Vaalburg,et al.  Radiation-induced inhibition of tumor growth as monitored by PET using L-[1-11C]tyrosine and fluorine-18-fluorodeoxyglucose. , 1992, Journal of nuclear medicine : official publication, Society of Nuclear Medicine.

[160]  K. Herholz,et al.  Monitoring the Effect of Chemotherapy in a Mixed Glioma by C‐11‐Methionine PET , 2003, Journal of neuroimaging : official journal of the American Society of Neuroimaging.

[161]  H. Freund,et al.  Individual Integration of Positron Emission Tomography and High-Resolution Magnetic Resonance Imaging , 1992, Journal of cerebral blood flow and metabolism : official journal of the International Society of Cerebral Blood Flow and Metabolism.

[162]  Rudolf Graf,et al.  The ischemic penumbra , 1994, Current opinion in neurology.

[163]  V. Sturm,et al.  Glucose consumption and methionine uptake in low-grade gliomas after iodine-125 brachytherapy , 1996, European Journal of Nuclear Medicine.

[164]  Ren-Shyan Liu,et al.  Metabolic characterization of spinocerebellar ataxia type 6. , 2001, Archives of neurology.

[165]  David A Mankoff,et al.  Volumetric analysis of 18F-FDG PET in glioblastoma multiforme: prognostic information and possible role in definition of target volumes in radiation dose escalation. , 2002, Journal of nuclear medicine : official publication, Society of Nuclear Medicine.

[166]  Nicola Pavese,et al.  Progressive striatal and cortical dopamine receptor dysfunction in Huntington's disease: a PET study. , 2003, Brain : a journal of neurology.

[167]  H. Karbe,et al.  Subcortical damage and cortical dysfunction in progressive supranuclear palsy demonstrated by positron emission tomography , 1992, Journal of Neurology.

[168]  Jean-Claude Baron,et al.  In Vivo Mapping of Brain Benzodiazepine Receptor Changes by Positron Emission Tomography After Focal Ischemia in the Anesthetized Baboon , 1993, Stroke.

[169]  R. Kuzniecky,et al.  In vivo hippocampal metabolic dysfunction in human temporal lobe epilepsy. , 2002, Archives of neurology.

[170]  J. Trojanowski,et al.  IMPY: an improved thioflavin-T derivative for in vivo labeling of β-amyloid plaques , 2002, Brain Research.

[171]  O. Witte,et al.  Radiation necrosis or recurrence. , 1996, Journal of neurosurgery.

[172]  D E Kuhl,et al.  Patterns of local cerebral glucose utilization determined in Parkinson's disease by the [18F]fluorodeoxyglucose method , 1984, Annals of neurology.

[173]  H. Tenjin,et al.  Postoperative hemodynamic and metabolic changes in patients with subarachnoid hemorrhage. , 1989, Stroke.

[174]  K Herholz,et al.  Severity of vascular dementia is related to volume of metabolically impaired tissue. , 1992, Archives of neurology.

[175]  A. Thiel,et al.  11C-methionine PET for differential diagnosis of low-grade gliomas , 1998, Neurology.

[176]  G. Moore,et al.  Evidence for Coupling between Glucose Metabolism and Glutamate Cycling Using FDG PET and 1H Magnetic Resonance Spectroscopy in Patients with Epilepsy , 2000, Journal of cerebral blood flow and metabolism : official journal of the International Society of Cerebral Blood Flow and Metabolism.

[177]  J. Pardo,et al.  Global aphasia due to thalamic hemorrhage: a case report and review of the literature. , 1996, Archives of physical medicine and rehabilitation.

[178]  A. Papanicolaou,et al.  Effects of duration of epilepsy on the uncoupling of metabolism and blood flow in complex partial seizures , 1997, Neurology.

[179]  F. Shishido,et al.  Clinical Value of Pet with 18F-Fluorodeoxyglucose and L-Methyl-11C-Methionine for Diagnosis of Recurrent Brain Tumor and Radiation Injury , 1991, Acta radiologica.

[180]  J. Baron,et al.  Efficient principal component analysis for multivariate 3D voxel‐based mapping of brain functional imaging data sets as applied to FDG‐PET and normal aging , 2003, Human brain mapping.

[181]  J C Froment,et al.  Clinical utility of flumazenil-PET versus [18F]fluorodeoxyglucose-PET and MRI in refractory partial epilepsy. A prospective study in 100 patients. , 1998, Brain : a journal of neurology.

[182]  Christian Degueldre,et al.  Voxel‐based analysis of confounding effects of age and dementia severity on cerebral metabolism in Alzheimer's disease , 2000, Human brain mapping.

[183]  Richard S. J. Frackowiak,et al.  Disturbance of oxidative metabolism of glucose in recent human cerebral infarcts , 1983, Annals of neurology.

[184]  E. Perry,et al.  Pathological changes in the nucleus of meynert in Alzheimer's and Parkinson's diseases , 1983, Journal of the Neurological Sciences.

[185]  J G Ojemann,et al.  Preserved function in brain invaded by tumor. , 1996, Neurosurgery.

[186]  J C Mazziotta,et al.  The lennox‐gastaut syndrome: Metabolic subtypes determined by 2‐deoxy‐2 [18F]fluoro‐d‐glucose positron emission tomography , 1987, Annals of neurology.

[187]  R. Hichwa,et al.  Positron emission tomographic scan investigations of Huntington's disease: Cerebral metabolic correlates of cognitive function , 1988, Annals of neurology.

[188]  Magnetic Resonance Imaging-Guided Language Activation PET in Patients: Technical Aspects and Clinical Results , 1998 .

[189]  V Hachinski,et al.  The effect of different diagnostic criteria on the prevalence of dementia. , 1997, The New England journal of medicine.

[190]  S. Laureys,et al.  Comparison of Impaired Subcortico-Frontal Metabolic Networks in Normal Aging, Subcortico-Frontal Dementia, and Cortical Frontal Dementia , 1999, NeuroImage.

[191]  I. Kanno,et al.  Carbon-11-methionine PET evaluation of intracerebral hematoma: distinguishing neoplastic from non-neoplastic hematoma. , 1995, Journal of nuclear medicine : official publication, Society of Nuclear Medicine.

[192]  E. Reiman,et al.  Functional brain mapping using positron emission tomography scanning in preoperative neurosurgical planning for pediatric brain tumors , 1999 .

[193]  T Jones,et al.  Brain dopamine metabolism in patients with Parkinson's disease measured with positron emission tomography. , 1986, Journal of neurology, neurosurgery, and psychiatry.

[194]  P. Yates,et al.  The nucleus basalis of Meynert in multi-infarct (vascular) dementia , 2004, Acta Neuropathologica.

[195]  A. Bol,et al.  Brain glucose utilization in band heterotopia: synaptic activity of "double cortex". , 1994, Pediatric neurology.

[196]  S. Goldman,et al.  Cerebello‐thalamo‐cerebral Diaschisis: A Case Report , 1998, Journal of neuroimaging : official journal of the American Society of Neuroimaging.

[197]  W J Powers,et al.  Cerebral Oxygen Metabolism after Aneurysmal Subarachnoid Hemorrhage , 1991, Journal of cerebral blood flow and metabolism : official journal of the International Society of Cerebral Blood Flow and Metabolism.

[198]  M. Kato,et al.  Positron emission tomography in cases of chorea with different underlying diseases. , 1987, Journal of neurology, neurosurgery, and psychiatry.

[199]  J. Haxby,et al.  Reductions in parietal and temporal cerebral metabolic rates for glucose are not specific for Alzheimer's disease. , 1993, Journal of neurology, neurosurgery, and psychiatry.

[200]  S. Kiebel,et al.  Training-induced brain plasticity in aphasia. , 1999, Brain : a journal of neurology.

[201]  W. Theodore When is positron emission tomography really necessary in epilepsy diagnosis? , 2002, Current opinion in neurology.

[202]  J. Holden,et al.  Reproducibility and discriminating ability of fluorine-18-6-fluoro-L-Dopa PET in Parkinson's disease. , 1996, Journal of nuclear medicine : official publication, Society of Nuclear Medicine.

[203]  F. Shishido,et al.  Positron emission tomography in patients with a primary intracerebral hematoma. , 1986, Acta radiologica. Supplementum.

[204]  Y. Agid,et al.  Loss of Striatal [76Br]Bromospiperone Binding Sites Demonstrated by Positron Tomography in Progressive Supranuclear Palsy , 1986, Journal of cerebral blood flow and metabolism : official journal of the International Society of Cerebral Blood Flow and Metabolism.

[205]  R. J. Seitz,et al.  Thalamic metabolism and corticospinal tract integrity determine motor recovery in stroke , 1996, Annals of neurology.

[206]  Nobuyuki Okamura,et al.  Glucose Hypometabolism and Neuropathological Correlates in Brains of Dementia with Lewy Bodies , 2000, Experimental Neurology.

[207]  F Mauguière,et al.  Thalamocortical diaschisis: positron emission tomography in humans. , 1992, Journal of neurology, neurosurgery, and psychiatry.

[208]  O. Muzik,et al.  Altered In Vitro and In Vivo Flumazenil Binding in Human Epileptogenic Neocortex , 1999, Journal of cerebral blood flow and metabolism : official journal of the International Society of Cerebral Blood Flow and Metabolism.

[209]  W. Vaalburg,et al.  PET studies with l-[1-11C]tyrosine, l-[methyl-11C]methionine and 18F-fluorodeoxyglucose in prolactinomas in relation to bromocryptine treatment , 2004, European Journal of Nuclear Medicine.

[210]  H. Freund,et al.  The role of diaschisis in stroke recovery. , 1999, Stroke.

[211]  O. Witte,et al.  Temporal lobe epilepsy with sensory aura: interictal glucose hypometabolism , 2000, Epilepsy Research.

[212]  C D Marsden,et al.  Brain energy metabolism and dopaminergic function in Huntington's disease measured in vivo using positron emission tomography , 1986, Movement disorders : official journal of the Movement Disorder Society.

[213]  S. Kosslyn,et al.  A PET investigation of implicit and explicit sequence learning , 1995 .

[214]  D C Reutens,et al.  Interictal Spikes Increase Cerebral Glucose Metabolism and Blood Flow: A PET Study , 1999, Epilepsia.

[215]  M. Reivich,et al.  Hippocampal Cell Density and Subcortical Metabolism in Temporal Lobe Epilepsy , 1999, Epilepsia.

[216]  G. Fink,et al.  PET and functional testing in temporal lobe epilepsy , 1994, Acta neurologica Scandinavica. Supplementum.

[217]  K. Davis,et al.  Neocortical cholinergic activities differentiate Lewy body dementia from classical Alzheimer's disease. , 1994, Neuroreport.

[218]  R Harrop,et al.  Positron emission tomography and histopathology in Pick's disease , 1987, Neurology.

[219]  G. di Chiro,et al.  Glucose utilization by intracranial meningiomas as an index of tumor aggressivity and probability of recurrence: a PET study. , 1987, Radiology.

[220]  S. Larson,et al.  Cerebral glucose metabolism in the Lennox‐Gastaut syndrome , 1987, Annals of neurology.

[221]  S. Tanada,et al.  Progressive loss of cortical acetylcholinesterase activity in association with cognitive decline in Alzheimer's disease: A positron emission tomography study , 2000, Annals of neurology.

[222]  Otto Muzik,et al.  Identification of Frontal Lobe Epileptic Foci in Children Using Positron Emission Tomography , 1997, Epilepsia.

[223]  Otto Muzik,et al.  Brain organization for language in children, adolescents, and adults with left hemisphere lesion: A pet study , 1999, Progress in Neuro-Psychopharmacology and Biological Psychiatry.

[224]  H. Herzog,et al.  Normal striatal glucose consumption in two patients with benign hereditary chorea as measured by positron emission tomography , 1990, Journal of Neurology.

[225]  Brian J Bacskai,et al.  Four-dimensional multiphoton imaging of brain entry, amyloid binding, and clearance of an amyloid-β ligand in transgenic mice , 2003, Proceedings of the National Academy of Sciences of the United States of America.

[226]  H Evans,et al.  Early evaluation of tumour metabolic response using [18F]fluorodeoxyglucose and positron emission tomography:a pilot study following the phase II chemotherapy schedule for temozolomide in recurrent high-grade gliomas , 2000, British Journal of Cancer.

[227]  J. Mazziotta Huntington's Disease: Studies with Structural Imaging Techniques and Positron Emission Tomography , 1989, Seminars in neurology.

[228]  D E Kuhl,et al.  Neuropsychological function and cerebral glucose utilization in isolated memory impairment and Alzheimer's disease. , 1999, Journal of psychiatric research.

[229]  C. Price,et al.  Mechanisms of recovery from aphasia: evidence from positron emission tomography studies , 1999, Journal of neurology, neurosurgery, and psychiatry.

[230]  J. Hatazawa,et al.  Evolution of Crossed Cerebellar Diaschisis in Middle Cerebral Artery Infarction , 1994, Journal of neuroimaging : official journal of the American Society of Neuroimaging.

[231]  Henrik Walter,et al.  Individual somatotopy of primary sensorimotor cortex revealed by intermodal matching of MEG, PET, and MRI , 2005, Brain Topography.

[232]  W H Theodore,et al.  A direct comparison of PET activation and electrocortical stimulation mapping for language localization , 1997, Neurology.

[233]  H. Herzog,et al.  Cortical and subcortical glucose consumption measured by PET in patients with Huntington's disease. , 1990, Brain : a journal of neurology.

[234]  I. Kanno,et al.  Serial positron emission tomography with fludeoxyglucose F 18 in Creutzfeldt-Jakob disease. , 1995, AJNR. American journal of neuroradiology.

[235]  Kengo Ito,et al.  Parieto-occipital glucose hypometabolism in Parkinson’s disease with autonomic failure , 1999, Journal of the Neurological Sciences.

[236]  Robert H. Perry,et al.  Senile dementia of Lewy body type A clinically and neuropathologically distinct form of Lewy body dementia in the elderly , 1990, Journal of the Neurological Sciences.

[237]  M. Bergström,et al.  Amino acid distribution and metabolism in pituitary adenomas using positron emission tomography with D-[11C]methionine and L-[11C]methionine. , 1987, Journal of computer assisted tomography.

[238]  Y Agid,et al.  Positron emission tomography study in progressive supranuclear palsy. Brain hypometabolic pattern and clinicometabolic correlations. , 1990, Archives of neurology.

[239]  F. Fazio,et al.  The status of dopamine nerve terminals in Parkinson's disease and essential tremor: a PET study with the tracer [11-C]FE-CIT , 2001, Neurological Sciences.

[240]  R. Müller,et al.  Language organization in patients with early and lateleft-hemisphere lesion: a pet study , 1999, Neuropsychologia.

[241]  Scott T. Grafton,et al.  A comparison of neurological, metabolic, structural, and genetic evaluations in persons at risk for Huntington's disease , 1990, Annals of neurology.

[242]  A. Luxen,et al.  Acute effect of carmustine on glucose metabolism in brain and glioblastoma , 1994, Cancer.

[243]  G. Lenzi,et al.  Prolonged Muscular Flaccidity in Stroke Patients Is Associated with Crossed Cerebellar Diaschisis , 1993 .

[244]  William J Powers,et al.  Variability of cerebral blood volume and oxygen extraction: stages of cerebral haemodynamic impairment revisited. , 2002, Brain : a journal of neurology.

[245]  R. Maciunas,et al.  Optimal cutoff levels of F-18 fluorodeoxyglucose uptake in the differentiation of low-grade from high-grade brain tumors with PET. , 1995, Radiology.

[246]  R J Seitz,et al.  Identification of Task‐Specific rCBF Changes in Individual Subjects: Validation and Application for PET , 1993, Journal of computer assisted tomography.

[247]  J. Baron,et al.  Local Interrelationships of Cerebral Oxygen Consumption and Glucose Utilization in Normal Subjects and in Ischemic Stroke Patients: A Positron Tomography Study , 1984, Journal of cerebral blood flow and metabolism : official journal of the International Society of Cerebral Blood Flow and Metabolism.

[248]  Tetsuya Mori,et al.  Voxel-based comparison of regional cerebral glucose metabolism between PSP and corticobasal degeneration , 2002, Journal of the Neurological Sciences.

[249]  A. Thiel,et al.  Penumbral probability thresholds of cortical flumazenil binding and blood flow predicting tissue outcome in patients with cerebral ischaemia. , 2001, Brain : a journal of neurology.

[250]  H. Engler,et al.  Positron emission tomography 11C‐methionine and survival in patients with low‐grade gliomas , 2001 .

[251]  Y. Samson,et al.  Recovery from nonfluent aphasia after melodic intonation therapy , 1996, Neurology.

[252]  Functional and morphological imaging of small striato-capsular infarction by CT, MRI and multitracer PET. , 1992, Neurological research.

[253]  T A Yousry,et al.  Preoperative activation and intraoperative stimulation of language-related areas in patients with glioma. , 1997, Neurosurgery.

[254]  V J Cunningham,et al.  Neocortical abnormalities of [11C]-flumazenil PET in mesial temporal lobe epilepsy , 2001, Neurology.

[255]  G. Small,et al.  Localization of neurofibrillary tangles and beta-amyloid plaques in the brains of living patients with Alzheimer disease. , 2002, The American journal of geriatric psychiatry : official journal of the American Association for Geriatric Psychiatry.

[256]  W. Heiss,et al.  Early detection of irreversibly damaged ischemic tissue by flumazenil positron emission tomography in cats. , 1997, Stroke.

[257]  W. Heiss Functional Mapping of the Brain in Vascular Disorders , 1985, Springer Berlin Heidelberg.

[258]  Lars-Olof Wahlund,et al.  Cingulate cortex hypoperfusion predicts Alzheimer's disease in mild cognitive impairment , 2002, BMC neurology.

[259]  J. Baron,et al.  Effects of thalamic stroke on energy metabolism of the cerebral cortex. A positron tomography study in man. , 1986, Brain : a journal of neurology.

[260]  Susan M. Chang,et al.  18‐fluorodeoxyglucose uptake and survival of patients with suspected recurrent malignant glioma , 1997, Cancer.

[261]  A. Graybiel,et al.  The substantia nigra of the human brain. II. Patterns of loss of dopamine-containing neurons in Parkinson's disease. , 1999, Brain : a journal of neurology.

[262]  Laurent Spelle,et al.  Insular cortex involvement in mesiotemporal lobe epilepsy: A positron emission tomography study , 2002, Annals of neurology.

[263]  Alan A. Wilson,et al.  Structure-activity relationship of imidazo[1,2-a]pyridines as ligands for detecting beta-amyloid plaques in the brain. , 2003, Journal of medicinal chemistry.

[264]  R. E. Adams,et al.  Hypoperfusion without Ischemia Surrounding Acute Intracerebral Hemorrhage , 2001, Journal of cerebral blood flow and metabolism : official journal of the International Society of Cerebral Blood Flow and Metabolism.

[265]  S. Larson,et al.  MR imaging and positron emission tomography of cortical heterotopia. , 1985, Journal of computer assisted tomography.

[266]  Karl Herholz,et al.  Cerebral Networks and Functional Brain Asymmetry: Evidence from Regional Metabolic Changes during Word Repetition , 1998, Brain and Language.

[267]  M. Hallett,et al.  Cerebellar diaschisis revisited , 1992, Neurology.

[268]  H. Chugani,et al.  Metabolic recovery in caudate nucleus of children following cerebral hemispherectomy , 1994, Annals of neurology.

[269]  A. Alavi,et al.  Predictors of outcome after anterior temporal lobectomy , 1994, Neurology.

[270]  B. Hyman,et al.  Imaging Amyloid-β Deposits In Vivo , 2002 .

[271]  G. Weber-Luxenburger,et al.  Interictal hippocampal benzodiazepine receptors in temporal lobe epilepsy: comparison with coregistered hippocampal metabolism and volumetry , 2000, European journal of neurology.

[272]  A. Weindl,et al.  Secondary Parkinsonism due to focal substantia nigra lesions: a PET study with [18F]FDG and [18F]Fluorodopa , 1996, Acta neurologica Scandinavica.

[273]  R J Seitz,et al.  Tactile exploration of shape after subcortical ischaemic infarction studied with PET. , 1994, Brain : a journal of neurology.

[274]  S. Hirai,et al.  Crossed cerebellar diaschisis accompanied by hemiataxia: a PET study. , 1992, Journal of neurology, neurosurgery, and psychiatry.

[275]  Beate Diehl,et al.  Neocortical Temporal FDG‐PET Hypometabolism Correlates with Temporal Lobe Atrophy in Hippocampal Sclerosis Associated with Microscopic Cortical Dysplasia , 2003, Epilepsia.

[276]  R. Kuzniecky,et al.  Neuroimaging of Epilepsy , 2002, Seminars in neurology.

[277]  R. Brooks,et al.  PET-fluorodeoxyglucose of cranial and spinal neuromas. , 1992, Journal of nuclear medicine : official publication, Society of Nuclear Medicine.

[278]  Neurophysiology of the human supplementary motor area. Positron emission tomography. , 1996, Advances in neurology.

[279]  Otto Muzik,et al.  [11ClFlumazenil PET in Patients with Epilepsy with Dual Pathology , 1999, Epilepsia.

[280]  D. Brooks,et al.  PET and the investigation of dementia in the parkinsonian patient. , 1997, Journal of neural transmission. Supplementum.

[281]  Richard S. J. Frackowiak,et al.  Clinical and positron emission tomographic studies in the 'extrapyramidal syndrome' of dementia of the Alzheimer type. , 1990, Archives of neurology.

[282]  A. Luxen,et al.  Reversible striatal hypermetabolism in a case of sydenham's chorea , 1993, Movement disorders : official journal of the Movement Disorder Society.

[283]  Alan C. Evans,et al.  The effect of spontaneous reperfusion on metabolic function in early human cerebral infarcts , 1987, Annals of neurology.

[284]  P. Thompson,et al.  Isolated tremor and disruption of the nigrostriatal dopaminergic system , 1992, Neurology.

[285]  Karl J. Friston,et al.  Functional reorganization of the brain in recovery from striatocapsular infarction in man , 1992, Annals of neurology.

[286]  F. Shishido,et al.  Remote effects in MCA territory ischemic infarction: a study of regional cerebral blood flow and oxygen metabolism using positron computed tomography and 15O labeled gases. , 1987, Radiation medicine.

[287]  J C Mazziotta,et al.  Serial changes of cerebral glucose metabolism and caudate size in persons at risk for Huntington's disease. , 1992, Archives of neurology.

[288]  O. Muzik,et al.  Landau-Kleffner Syndrome: Metabolic Abnormalities in Temporal Lobe Are a Common Feature , 1997, Journal of child neurology.

[289]  D Comar,et al.  "Crossed cerebellar diaschisis" in human supratentorial brain infarction. , 1981, Transactions of the American Neurological Association.

[290]  Karl Herholz,et al.  Predominant ventromedial frontopolar metabolic impairment in frontotemporal dementia , 2003, NeuroImage.

[291]  A. Luxen,et al.  Carbon-11-methionine and fluorine-18-FDG PET study in brain hematoma. , 1994, Journal of nuclear medicine : official publication, Society of Nuclear Medicine.

[292]  P. Lockhart,et al.  SCA-2 presenting as parkinsonism in an Alberta family , 2002, Neurology.

[293]  Sid Gilman,et al.  Cerebral hypometabolism in progressive supranuclear palsy studied with positron emission tomography , 1988, Annals of neurology.

[294]  W D Heiss,et al.  Cerebral glucose metabolism as a predictor of recovery from aphasia in ischemic stroke. , 1993, Archives of neurology.

[295]  J C Mazziotta,et al.  Temporoparietal cortex in aphasia. Evidence from positron emission tomography. , 1990, Archives of neurology.

[296]  Brian J Bacskai,et al.  A lipophilic thioflavin-T derivative for positron emission tomography (PET) imaging of amyloid in brain. , 2002, Bioorganic & medicinal chemistry letters.

[297]  T. Hölzer,et al.  The in vivo metabolic pattern of low-grade brain gliomas: a positron emission tomographic study using f-18-fluorodeoxyglucose and c-11-L-methylmethionine. , 1997, Neurosurgery.

[298]  K Wienhard,et al.  Progressive Derangement of Periinfarct Viable Tissue in Ischemic Stroke , 1992, Journal of cerebral blood flow and metabolism : official journal of the International Society of Cerebral Blood Flow and Metabolism.

[299]  D. Eidelberg,et al.  [11C]Raclopride‐PET studies of the Huntington's disease rate of progression: Relevance of the trinucleotide repeat length , 1998, Annals of neurology.

[300]  A Drzezga,et al.  Reduction of Benzodiazepine Receptor Binding is Related to the Seizure Onset Zone in Extratemporal Focal Cortical Dysplasia , 2000, Epilepsia.

[301]  D Comar,et al.  Crossed cerebellar diaschisis. Further studies. , 1986, Brain : a journal of neurology.

[302]  K. Wienhard,et al.  In-vivo measurements of regional acetylcholine esterase activity in degenerative dementia: comparison with blood flow and glucose metabolism , 2000, Journal of Neural Transmission.

[303]  Mark Muzi,et al.  In vivo validation of 3'deoxy-3'-[(18)F]fluorothymidine ([(18)F]FLT) as a proliferation imaging tracer in humans: correlation of [(18)F]FLT uptake by positron emission tomography with Ki-67 immunohistochemistry and flow cytometry in human lung tumors. , 2002, Clinical cancer research : an official journal of the American Association for Cancer Research.

[304]  K. Herholz,et al.  Differences of regional cerebral glucose metabolism between presenile and senile dementia of Alzheimer type , 1992, Neurobiology of Aging.

[305]  Alan C. Evans,et al.  Language localization with activation positron emission tomography scanning. , 1992, Neurosurgery.

[306]  W D Heiss,et al.  Positron emission tomography findings relevant to neurosurgery for epilepsy. , 1990, Acta neurochirurgica. Supplementum.

[307]  A. Delgado-Escueta,et al.  Interictal Seizure Resections Show Two Configurations of Endothelial Glut1 Glucose Transporter in the Human Blood–Brain Barrier , 1998, Journal of cerebral blood flow and metabolism : official journal of the International Society of Cerebral Blood Flow and Metabolism.

[308]  F Shishido,et al.  Cerebral glioma: evaluation with methionine PET. , 1993, Radiology.

[309]  D. Perani,et al.  A PET Follow-up Study of Recovery after Stroke in Acute Aphasics , 1997, Brain and Language.

[310]  A. Samii,et al.  Alternating two finger tapping with contralateral activation is an objective measure of clinical severity in Parkinson's disease and correlates with PET , 2001, Parkinsonism & related disorders.

[311]  R. Coleman,et al.  FDG-PET in differentiating lymphoma from nonmalignant central nervous system lesions in patients with AIDS. , 1993, Journal of nuclear medicine : official publication, Society of Nuclear Medicine.

[312]  J. Baron,et al.  Contralateral cerebellar diaschisis 7 hours after MCA-occlusion in primates. , 1995, Neurological research.

[313]  K. Ishii,et al.  Statistical brain mapping of 18F-FDG PET in Alzheimer's disease: validation of anatomic standardization for atrophied brains. , 2001, Journal of nuclear medicine : official publication, Society of Nuclear Medicine.

[314]  S. Aquilonius,et al.  Reversible chorea in primary antiphospholipid syndrome , 1998, Movement disorders : official journal of the Movement Disorder Society.

[315]  R. Soffietti,et al.  Histological observations on the regrowth of malignant gliomas after radiotherapy and chemotherapy , 2004, Acta Neuropathologica.

[316]  O Muzik,et al.  Electroclinical correlates of flumazenil and fluorodeoxyglucose PET abnormalities in lesional epilepsy , 2000, Neurology.

[317]  K. Herholz,et al.  Positron emission tomography study of regional glucose metabolism in cerebral ischemia--topographic and kinetic aspects. , 1984, Progress in brain research.

[318]  Arthur W. Toga,et al.  Brain mapping : the disorders , 2000 .

[319]  C. Calautti,et al.  Functional Neuroimaging Studies of Motor Recovery After Stroke in Adults: A Review , 2003, Stroke.

[320]  J. Zubieta,et al.  PET imaging of the dopamine transporter in progressive supranuclear palsy and Parkinson’s disease , 1999, Neurology.

[321]  A. Braun,et al.  PET evaluation of bilingual language compensation following early childhood brain damage , 2001, Neuropsychologia.

[322]  R. G. Manning,et al.  Work in progress: [18F] fluorodeoxyglucose and positron emission tomography in the evaluation of radiation necrosis of the brain. , 1982, Radiology.

[323]  F. Berthold,et al.  In vivo metabolism of childhood posterior fossa tumors and primitive neuroectodermal tumors before and after treatment , 1993, Cancer.

[324]  M Schulzer,et al.  Cerebral glucose metabolism in Parkinson's disease with and without dementia. , 1992, Archives of neurology.

[325]  M. Raichle,et al.  Cerebral Blood Flow and Cerebral Metabolic Rate of Oxygen Requirements for Cerebral Function and Viability in Humans , 1985, Journal of cerebral blood flow and metabolism : official journal of the International Society of Cerebral Blood Flow and Metabolism.

[326]  D. Mankoff,et al.  Kinetic analysis of 2-[11C]thymidine PET imaging studies: validation studies. , 1999, Journal of nuclear medicine : official publication, Society of Nuclear Medicine.

[327]  C D Marsden,et al.  Striatal opioid receptor binding in Parkinson's disease, striatonigral degeneration and Steele-Richardson-Olszewski syndrome, A [11C]diprenorphine PET study. , 1995, Brain : a journal of neurology.

[328]  M. Daube-Witherspoon,et al.  Quantitative functional brain imaging with positron emission tomography , 1998 .

[329]  J. Mazziotta,et al.  Asymmetric interictal glucose hypometabolism and cognitive performance in epileptic patients. , 1994, Archives of neurology.

[330]  B Mazoyer,et al.  Effects of capsular or thalamic stroke on metabolism in the cortex and cerebellum: a positron tomography study. , 1990, Stroke.

[331]  C. Kufta,et al.  Cerebral necrosis after radiotherapy and/or intraarterial chemotherapy for brain tumors: PET and neuropathologic studies. , 1987, AJR. American journal of roentgenology.

[332]  D Comar,et al.  Local cerebral glucose utilisation in treated and untreated patients with Parkinson's disease. , 1984, Journal of neurology, neurosurgery, and psychiatry.

[333]  K Herholz,et al.  Plasticity of language networks in patients with brain tumors: A positron emission tomography activation study , 2001, Annals of neurology.

[334]  A. Luxen,et al.  Diagnostic yield of stereotactic brain biopsy guided by positron emission tomography with [18F]fluorodeoxyglucose. , 1995, Journal of neurosurgery.

[335]  F. Mauguière,et al.  Effects of GABAA receptors activation on brain glucose metabolism in normal subjects and temporal lobe epilepsy (TLE) patients. A positron emission tomography (PET) study Part II: The focal hypometabolism is reactive to GABAA agonist administration in TLE , 1994, Epilepsy Research.

[336]  R. Coleman,et al.  Screening for cerebral metastases with FDG PET in patients undergoing whole-body staging of non-central nervous system malignancy. , 2003, Radiology.

[337]  J. Haxby,et al.  Neuropsychological and cerebral metabolic function in early vs late onset dementia of the Alzheimer type , 1987, Neuropsychologia.

[338]  R J Seitz,et al.  Deficient cerebral activation pattern in stroke recovery. , 1994, Neuroreport.

[339]  W. Heiss,et al.  Dynamic Penumbra Demonstrated by Sequential Multitracer PET after Middle Cerebral Artery Occlusion in Cats , 1994, Journal of cerebral blood flow and metabolism : official journal of the International Society of Cerebral Blood Flow and Metabolism.

[340]  A. Syrota,et al.  Tissue acid‐base balance and oxygen metabolism in human cerebral infarction studied with positron emission tomography , 1983, Annals of neurology.

[341]  Karl J. Friston,et al.  Individual patterns of functional reorganization in the human cerebral cortex after capsular infraction , 1993, Annals of neurology.

[342]  I. Kanno,et al.  Clinical positron emission tomography for brain tumors: comparison of fludeoxyglucose F 18 and L-methyl-11C-methionine. , 1996, AJNR. American journal of neuroradiology.

[343]  M. Sasaki,et al.  Carbon-11-methionine PET in focal cortical dysplasia: a comparison with fluorine-18-FDG PET and technetium-99m-ECD SPECT. , 1998, Journal of nuclear medicine : official publication, Society of Nuclear Medicine.

[344]  Abass Alavi,et al.  Positron emission tomography in patients with glioma a predictor of prognosis , 1988, Cancer.

[345]  B. Mazoyer,et al.  A Common Language Network for Comprehension and Production: A Contribution to the Definition of Language Epicenters with PET , 2000, NeuroImage.

[346]  Karl Herholz,et al.  Methyl-[11C]-l-methionine uptake as measured by positron emission tomography correlates to microvessel density in patients with glioma , 2003, European Journal of Nuclear Medicine and Molecular Imaging.

[347]  K Wienhard,et al.  Regional metabolic correlates of Token test results in cortical and subcortical left hemispheric infarction , 1989, Neurology.

[348]  P J Kelly,et al.  Radiation necrosis or glioma recurrence: is computer-assisted stereotactic biopsy useful? , 1995, Journal of neurosurgery.

[349]  D. Brooks,et al.  Striatal D1 and D2 dopamine receptor loss in asymptomatic mutation carriers of Huntington's disease , 1996, Annals of neurology.

[350]  J. Dobkin,et al.  Glucose uptake by gliomas after treatment. A positron emission tomographic study. , 1989, Archives of neurology.

[351]  M. Freedman,et al.  Frontotemporal lobar degeneration , 1998, Neurology.

[352]  J. Mazziotta,et al.  Interictal metabolic anatomy of mesial temporal lobe epilepsy. , 1993, Archives of neurology.

[353]  D E Kuhl,et al.  Alzheimer disease: improved visual interpretation of PET images by using three-dimensional stereotaxic surface projections. , 1996, Radiology.

[354]  M Samii,et al.  Resting regional cerebral glucose metabolism in advanced Parkinson's disease studied in the off and on conditions with [18F]FDG‐PET , 2001, Movement disorders : official journal of the Movement Disorder Society.

[355]  K Wienhard,et al.  Positron emission tomography in degenerative disorders of the dopaminergic system , 1992, Journal of neural transmission. Parkinson's disease and dementia section.

[356]  R. Hichwa,et al.  Normal caudate glucose metabolism in persons at risk for Huntington's disease. , 1987, Archives of neurology.

[357]  G. di Chiro,et al.  Positron emission tomography in the detection of malignant degeneration of low-grade gliomas. , 1989, Neurosurgery.

[358]  H Toyama,et al.  Three-dimensional imaging of cortical structure, function and glioma for tumor resection. , 1997, Journal of nuclear medicine : official publication, Society of Nuclear Medicine.

[359]  Steve Majerus,et al.  Phonological short‐term memory networks following recovery from Landau and Kleffner syndrome , 2003, Human brain mapping.

[360]  M. Jüptner,et al.  Reorganization of sensory and motor systems in hemiplegic stroke patients. A positron emission tomography study. , 1999, Stroke.

[361]  R. Koeppe,et al.  Epilepsy surgery improves regional glucose metabolism on PET scan , 1987, Journal of Neurology.

[362]  D. Binns,et al.  The utility of a 3-dimensional, large-field-of-view, sodium iodide crystal--based PET scanner in the presurgical evaluation of partial epilepsy. , 2001, Journal of nuclear medicine : official publication, Society of Nuclear Medicine.

[363]  K. Uemura,et al.  Cerebral blood flow and oxygen metabolism in hemiparetic patients with chronic subdural hematoma. Quantitative evaluation using positron emission tomography. , 1995, Surgical neurology.

[364]  V Beaudouin,et al.  Prolonged persistence of substantial volumes of potentially viable brain tissue after stroke: a correlative PET-CT study with voxel-based data analysis. , 1996, Stroke.

[365]  A. Khonsari,et al.  Improved Sensitivity of 18FDG‐Positron Emission Tomography Scans in Frontal and “Frontal Plus” Epilepsy , 1995, Epilepsia.

[366]  M. Bergström,et al.  PET-methionine of skull base neuromas and meningiomas. , 1997, Acta oto-laryngologica.

[367]  F Zito,et al.  High-resolution technetium-99m-HMPAO SPECT in patients with probable Alzheimer's disease: comparison with fluorine-18-FDG PET. , 1994, Journal of nuclear medicine : official publication, Society of Nuclear Medicine.

[368]  V. Kepe,et al.  In vitro detection of (S)-naproxen and ibuprofen binding to plaques in the Alzheimer’s brain using the positron emission tomography molecular imaging probe 2-(1-{6-[(2-[18F]fluoroethyl)(methyl)amino]-2-naphthyl}ethylidene)malononitrile , 2003, Neuroscience.

[369]  K. Dunigan,et al.  11C-methionine PET Imaging of Leptomeningeal Metastases from Primary Breast Cancer – a Case Report , 2001, Journal of Neuro-Oncology.

[370]  M Vapalahti,et al.  [18F]FDG-PET reveals temporal hypometabolism in patients with temporal lobe epilepsy even when quantitative MRI and histopathological analysis show only mild hippocampal damage. , 2001, Archives of neurology.

[371]  K. Ishii,et al.  Regional cerebral glucose metabolism in dementia with Lewy bodies and Alzheimer's disease , 1998, Neurology.

[372]  E. Metter,et al.  Subcortical structures in aphasia. An analysis based on (F-18)-fluorodeoxyglucose, positron emission tomography, and computed tomography. , 1988, Archives of neurology.

[373]  V. Dhawan,et al.  The metabolic anatomy of tremor in Parkinson's disease , 1998, Neurology.

[374]  A. Thiel,et al.  Deep brain stimulation of the subthalamic nucleus versus levodopa challenge in Parkinson's disease: measuring the on- and off-conditions with FDG-PET , 2002, Journal of Neural Transmission.

[375]  H. Fukuyama,et al.  A decrease in regional cerebral blood volume and hematocrit in crossed cerebellar diaschisis. , 1999, Stroke.

[376]  G. di Chiro,et al.  Neuroimaging of juvenile pilocytic astrocytomas: an enigma. , 1993, Radiology.

[377]  K Wienhard,et al.  Functional effects of striatal dysfunction in Parkinson disease. , 1997, Archives of neurology.

[378]  et al.,et al.  Discrimination between Alzheimer Dementia and Controls by Automated Analysis of Multicenter FDG PET , 2002, NeuroImage.

[379]  J. Baron Depression of Energy Metabolism in Distant Brain Structures: Studies with Positron Emission Tomography in Stroke Patients , 1989, Seminars in neurology.

[380]  O Almkvist,et al.  Impaired cerebral glucose metabolism and cognitive functioning predict deterioration in mild cognitive impairment , 2001, Neuroreport.

[381]  E. Bromfield,et al.  Cerebral activation during speech discrimination in temporal lobe epilepsy , 1991, Epilepsy Research.

[382]  G. Franck,et al.  Is 11C-flumazenil PET superior to 18FDG PET and 123I-iomazenil SPECT in presurgical evaluation of temporal lobe epilepsy? , 1997, Journal of neurology, neurosurgery, and psychiatry.

[383]  R. Nickles,et al.  Contralateral flow reduction in unilateral stroke: evidence for transhemispheric diaschisis. , 1987, Stroke.

[384]  H. Chugani,et al.  Electrocorticographic Confirmation of Focal Positron Emission Tomographic Abnormalities in Children with Intractable Epilepsy , 1990, Epilepsia.

[385]  W. Jagust,et al.  Clinical criteria for the diagnosis of vascular dementia: a multicenter study of comparability and interrater reliability. , 2000, Archives of neurology.

[386]  J R Moeller,et al.  The metabolic anatomy of paraneoplastic cerebellar degeneration , 1988, Annals of neurology.

[387]  R. Woods,et al.  Recovery from wernicke's aphasia: A positron emission tomographic study , 1995, Annals of neurology.

[388]  O Muzik,et al.  Relationship of flumazenil and glucose PET abnormalities to neocortical epilepsy surgery outcome , 2001, Neurology.

[389]  W H Theodore,et al.  Hippocampal Volume and Glucose Metabolism in Temporal Lobe Epileptic Foci , 2001, Epilepsia.

[390]  C. Patlak,et al.  Nigrostriatal function in humans studied with positron emission tomography , 1989, Annals of neurology.

[391]  J Y Chang,et al.  Two behavioral states studied in a single PET/FDG procedure: theory, method, and preliminary results. , 1987, Journal of nuclear medicine : official publication, Society of Nuclear Medicine.

[392]  D. Brooks,et al.  Striatal D1 and D2 receptor binding in patients with Huntington's disease and other choreas. A PET study. , 1995, Brain : a journal of neurology.

[393]  Ren-Shyan Liu,et al.  Positron emission tomography in asymptomatic gene carriers of Machado-Joseph disease , 1998, Journal of neurology, neurosurgery, and psychiatry.

[394]  W D Heiss,et al.  Piracetam Improves Activated Blood Flow and Facilitates Rehabilitation of Poststroke Aphasic Patients , 2000, Stroke.

[395]  W D Heiss,et al.  Experimental Evidence of Ischemic Thresholds and Functional Recovery , 1992, Stroke.

[396]  G. Fink,et al.  Peri-Infarct perfusion in human ischemia: Its relation to tissue metabolism, morphology, and clinical outcome. , 1993, Journal of stroke and cerebrovascular diseases : the official journal of National Stroke Association.

[397]  J. Mazziotta,et al.  Cerebral metabolic and cognitive decline in persons at genetic risk for Alzheimer's disease. , 2000, Proceedings of the National Academy of Sciences of the United States of America.

[398]  Michael E. Phelps,et al.  Effects of stroke on local cerebral metabolism and perfusion: Mapping by emission computed tomography of 18FDG and 13NH3 , 1980, Annals of neurology.

[399]  P. Gutin,et al.  Differentiation of Cerebral Radiation Necrosis from Tumor Recurrence by [18F]FDG and 82Rb Positron Emission Tomography , 1987, Journal of computer assisted tomography.

[400]  M. Hayden,et al.  Cerebral metabolism of glucose in benign hereditary chorea , 1986, Movement disorders : official journal of the Movement Disorder Society.

[401]  G Di Chiro,et al.  Prediction of survival in glioma patients by means of positron emission tomography. , 1985, Journal of neurosurgery.

[402]  F. Shishido,et al.  Effects of radiotherapy determined by11C-methyl-l-methionine positron emission tomography in patients with primary cerebral malignant lymphoma , 2004, Neuroradiology.

[403]  M. Richardson,et al.  Grey and white matter flumazenil binding in neocortical epilepsy with normal MRI. A PET study of 44 patients. , 2003, Brain : a journal of neurology.

[404]  G. Chiro Positron emission tomography using [18F] fluorodeoxyglucose in brain tumors. A powerful diagnostic and prognostic tool. , 1987 .

[405]  A. Drzezga,et al.  Cerebral metabolic changes accompanying conversion of mild cognitive impairment into Alzheimer's disease: a PET follow-up study , 2003, European Journal of Nuclear Medicine and Molecular Imaging.

[406]  A. Jacobs,et al.  Amino acid uptake in ischemically compromised brain tissue. , 1995, Stroke.

[407]  C. Nahmias,et al.  Reduced striatal glucose consumption and prolonged reaction time are early features in Huntington's disease , 1984, Journal of the Neurological Sciences.

[408]  D. Dickson,et al.  Neuropathologic Overlap of Progressive Supranuclear Palsy, Pick's Disease and Corticobasal Degeneration , 1996, Journal of neuropathology and experimental neurology.

[409]  F. Shishido,et al.  Uncoupling between CBF and oxygen metabolism in a patient with chronic subdural haematoma: case report. , 1992, Journal of neurology, neurosurgery, and psychiatry.

[410]  R. Müller,et al.  Developmental Changes of Cortical and Cerebellar Motor Control: A Clinical Positron Emission Tomography Study With Children and Adults , 1998, Journal of child neurology.

[411]  G. Deuschl,et al.  Monosymptomatic resting tremor and Parkinson's disease: A multitracer positron emission tomographic study , 2002, Movement disorders : official journal of the Movement Disorder Society.

[412]  Parametric imaging of the rate constant Ki using [18Fluoro]-l-dopa positron emission tomography in progressive supranuclear palsy , 2004, Neuroradiology.

[413]  M Baulac,et al.  The underlying pathophysiology of ictal dystonia in temporal lobe epilepsy , 1998, Neurology.

[414]  W. Heiss,et al.  Functional and morphological abnormalities in temporal lobe epilepsy: a comparison of interictal and ictal EEG, CT, MRI, SPECT and PET , 1987, Journal of Neurology.

[415]  Zhaowei Jiang,et al.  [15O]-water PET and intraoperative brain mapping: A comparison in the localization of eloquent cortex , 1997 .

[416]  I. Kanno,et al.  Methionine PET for follow-up of radiation therapy of primary lymphoma of the brain. , 1994, Radiographics : a review publication of the Radiological Society of North America, Inc.

[417]  O. Witte,et al.  Positron emission tomography with injection of methionine as a prognostic factor in glioma. , 2001, Journal of neurosurgery.

[418]  K. Leenders,et al.  EVALUATION OF CEREBRAL PERFUSION RESERVE IN PATIENTS WITH CAROTID-ARTERY OCCLUSION , 1984, The Lancet.

[419]  Masatoshi Itoh,et al.  Combined Analysis of CSF Tau Levels and [(123)I]Iodoamphetamine SPECT in Mild Cognitive Impairment: Implications for a Novel Predictor of Alzheimer's Disease. , 2002, The American journal of psychiatry.

[420]  S. Goldman,et al.  Regional methionine and glucose uptake in high-grade gliomas: a comparative study on PET-guided stereotactic biopsy. , 1997, Journal of nuclear medicine : official publication, Society of Nuclear Medicine.

[421]  A. Alavi,et al.  Metabolic and clinical correlates of acute ischemic infarction , 1987, Neurology.

[422]  S. Minoshima,et al.  In vivo mapping of cerebral acetylcholinesterase activity in aging and Alzheimer’s disease , 1999, Neurology.

[423]  B. Snow,et al.  Positron emission tomography in progressive supranuclear palsy. , 1991, Archives of neurology.

[424]  K. Hisanaga,et al.  Fluoro-DOPA and FDG positron emission tomography in a case of pathologically verified pure diffuse Lewy body disease , 2001, Journal of Neurology.

[425]  Yu-Shin Ding,et al.  Imaging brain cholinergic activity with positron emission tomography: its role in the evaluation of cholinergic treatments in Alzheimer’s dementia , 2001, Biological Psychiatry.

[426]  S. Gilman,et al.  17 – Neurodegenerative Disorders of the Cerebellum , 2000 .

[427]  A. Alavi,et al.  Contralateral cerebellar hypometabolism following cerebral insult: A positron emission tomographic study , 1984, Annals of neurology.

[428]  G. Small,et al.  Binding Characteristics of Radiofluorinated 6-Dialkylamino-2-Naphthylethylidene Derivatives as Positron Emission Tomography Imaging Probes for β-Amyloid Plaques in Alzheimer's Disease , 2001, The Journal of Neuroscience.

[429]  C. Patlak,et al.  Combined FDOPA and 3OMFD PET studies in Parkinson's disease. , 1996, Journal of nuclear medicine : official publication, Society of Nuclear Medicine.

[430]  S. Bookheimer,et al.  15O water positron emission tomography in language localization: A study comparing positron emission tomography visual and computerized region of interest analysis with the wada test , 1999, Annals of neurology.

[431]  W. Gaillard,et al.  Positron emission tomography in neocortical epilepsies. , 2000, Advances in neurology.

[432]  Karl Herholz,et al.  Localization of Language-Related Cortex with15O-Labeled Water PET in Patients with Gliomas , 1998, NeuroImage.

[433]  R. Fisher,et al.  Bilateral Temporal Hypometabolism in Epilepsy , 1998, Epilepsia.

[434]  H. Karbe,et al.  Differential capacity of left and right hemispheric areas for compensation of poststroke aphasia , 1999, Annals of neurology.

[435]  H. Arai,et al.  18F-fluorodopa PET study of striatal dopamine uptake in the diagnosis of dementia with Lewy bodies , 2000, Neurology.

[436]  M. Raichle,et al.  The effect of hemodynamically significant carotid artery disease on the hemodynamic status of the cerebral circulation. , 1987, Annals of internal medicine.

[437]  W. Heiss,et al.  Differentiating multiple system atrophy from Parkinson’s disease: contribution of striatal and midbrain MRI volumetry and multi-tracer PET imaging , 2002, Journal of neurology, neurosurgery, and psychiatry.

[438]  G. Sedvall,et al.  PET study of the pre- and post-synaptic dopaminergic markers for the neurodegenerative process in Huntington's disease. , 1997, Brain : a journal of neurology.

[439]  B. Rosen,et al.  A functional MRI study of subjects recovered from hemiparetic stroke. , 1997, Stroke.

[440]  R J Seitz,et al.  Enhanced regional cerebral metabolic interactions in thalamic circuitry predicts motor recovery in hemiparetic stroke , 1996, Human brain mapping.

[441]  C. Elger,et al.  Correlation of Hippocampal Glucose Oxidation Capacity and Interictal FDG‐PET in Temporal Lobe Epilepsy , 2003, Epilepsia.

[442]  C. Degueldre,et al.  Preoperative evaluation of 54 gliomas by PET with fluorine-18-fluorodeoxyglucose and/or carbon-11-methionine. , 1998, Journal of nuclear medicine : official publication, Society of Nuclear Medicine.

[443]  O. Muzik,et al.  Cerebellar reorganization following cortical injury in humans , 1999, Neurology.

[444]  J. Baron,et al.  Mild cognitive impairment , 2003, Neurology.

[445]  G Marchal,et al.  Early Postischemic Hyperperfusion: Pathophysiologic Insights from Positron Emission Tomography , 1999, Journal of cerebral blood flow and metabolism : official journal of the International Society of Cerebral Blood Flow and Metabolism.

[446]  H. Lüders,et al.  Presurgical evaluation of epilepsy. , 2001, Brain : a journal of neurology.

[447]  V. Mathews,et al.  Assessment and cost comparison of sleep-deprived EEG, MRI and PET in the prediction of surgical treatment for epilepsy , 2002, Seizure.

[448]  Alan C. Evans,et al.  The Effect of Nimodipine on the Evolution of Human Cerebral Infarction Studied by PET , 1989, Journal of cerebral blood flow and metabolism : official journal of the International Society of Cerebral Blood Flow and Metabolism.

[449]  I Savic,et al.  Comparison of [11C]flumazenil and [18F]FDG as PET markers of epileptic foci. , 1993, Journal of neurology, neurosurgery, and psychiatry.

[450]  K. Herholz,et al.  Diaschisis of specific cerebellar lobules: pontine haematoma studied with high-resolution PET and MRI , 1996, Journal of Neurology.

[451]  O. Muzik,et al.  Neuroradiological assessment of brain structure and function and its implication in the pathogenesis of West syndrome , 2001, Brain and Development.

[452]  Jae Jeong,et al.  Usefulness of 11C-methionine PET in the evaluation of brain lesions that are hypo- or isometabolic on 18F-FDG PET , 2002, European Journal of Nuclear Medicine and Molecular Imaging.

[453]  J C Mazziotta,et al.  Apolipoprotein E type 4 allele and cerebral glucose metabolism in relatives at risk for familial Alzheimer disease. , 1995, JAMA.

[454]  J R Moeller,et al.  Early differential diagnosis of Parkinson's disease with 18F‐fluorodeoxyglucose and positron emission tomography , 1995, Neurology.

[455]  U Pietrzyk,et al.  An interactive technique for three-dimensional image registration: validation for PET, SPECT, MRI and CT brain studies. , 1994, Journal of nuclear medicine : official publication, Society of Nuclear Medicine.

[456]  R. Müller,et al.  Plasticity of motor organization in children and adults , 1997, Neuroreport.

[457]  G. Sedvall,et al.  Dopamine D1 receptor number — a sensitive PET marker for early brain degeneration in Huntington's disease , 2005, European Archives of Psychiatry and Clinical Neuroscience.

[458]  A. Lang,et al.  Striatal dopamine distribution in Parkinsonian patients during life , 1985, Journal of the Neurological Sciences.

[459]  H. Freund,et al.  Role of the premotor cortex in recovery from middle cerebral artery infarction. , 1998, Archives of neurology.

[460]  Kunihiko Hayashi,et al.  Cerebral hypoperfusion and hypometabolism with altered striatal signal intensity in chorea‐acanthocytosis: A combined PET and MRI study , 1998, Movement disorders : official journal of the Movement Disorder Society.

[461]  Dong Soo Lee,et al.  Differential features of metabolic abnormalities between medial and lateral temporal lobe epilepsy: quantitative analysis of (18)F-FDG PET using SPM. , 2003, Journal of nuclear medicine : official publication, Society of Nuclear Medicine.

[462]  W. Klunk,et al.  Synthesis and evaluation of 11C-labeled 6-substituted 2-arylbenzothiazoles as amyloid imaging agents. , 2003, Journal of medicinal chemistry.

[463]  R J Seitz,et al.  Large-scale plasticity of the human motor cortex. , 1995, Neuroreport.

[464]  S. Folstein,et al.  D2 receptors in Huntington's disease: positron emission tomography findings and clinical correlates. , 1990, The Journal of neuropsychiatry and clinical neurosciences.

[465]  H. S. Jørgensen,et al.  The Influence of Age on Stroke Outcome: The Copenhagen Stroke Study , 1994, Stroke.

[466]  R A Koeppe,et al.  Cerebellar and frontal hypometabolism in alcoholic cerebellar degeneration studied with positron emission tomography , 1990, Annals of neurology.

[467]  G. Sawle,et al.  Separating Parkinson's disease from normality. Discriminant function analysis of fluorodopa F 18 positron emission tomography data. , 1994, Archives of neurology.

[468]  R A Brooks,et al.  Glucose utilization of cerebral gliomas measured by [18F] fluorodeoxyglucose and positron emission tomography , 1982, Neurology.

[469]  B E Swartz,et al.  Neuroimaging in Patients with Seizures of Probable Frontal Lobe Origin , 1989, Epilepsia.

[470]  G. Ojemann,et al.  Cortical language localization in left, dominant hemisphere. An electrical stimulation mapping investigation in 117 patients. , 1989, Journal of neurosurgery.

[471]  Sid Gilman,et al.  Spinocerebellar ataxia type 1 with multiple system degeneration and glial cytoplasmic inclusions , 1996, Annals of neurology.

[472]  K. Ohata,et al.  Methionine positron emission tomography of recurrent metastatic brain tumor and radiation necrosis after stereotactic radiosurgery: is a differential diagnosis possible? , 2003, Journal of neurosurgery.

[473]  K. Någren,et al.  Metabolic characterization of childhood brain tumors , 2002, Cancer.

[474]  S. Pappata,et al.  Cortical metabolism in posterolateral thalamic stroke: PET study , 1992, Acta neurologica Scandinavica.

[475]  D. Decoo,et al.  Crossed cerebellar diaschisis after middle cerebral artery infarction , 1997, Clinical Neurology and Neurosurgery.

[476]  Y Agid,et al.  Subcortical dementia. Frontal cortex hypometabolism detected by positron tomography in patients with progressive supranuclear palsy. , 1985, Brain : a journal of neurology.

[477]  M. Ohyama,et al.  Role of the nondominant hemisphere and undamaged area during word repetition in poststroke aphasics. A PET activation study. , 1996, Stroke.

[478]  H. P. Richter,et al.  Cranial Neuronavigation with Direct Integration of 11C Methionine Positron Emission Tomography (PET) Data – Results of a Pilot Study in 32 Surgical Cases , 2002, Acta Neurochirurgica.

[479]  K. Ohata,et al.  Evaluation of treatment effects in brain abscess with positron emission tomography: Comparison of fluorine-18-fluorodeoxyglucose and carbon-11-methionine , 2003, Annals of nuclear medicine.

[480]  S. Minoshima,et al.  The use of FDG-PET in the detection and management of malignant lymphoma: correlation of uptake with prognosis. , 1991, Journal of nuclear medicine : official publication, Society of Nuclear Medicine.