Detection of changed regional cerebral blood flow in mild cognitive impairment and early Alzheimer's dementia by perfusion-weighted magnetic resonance imaging

[1]  H. Vankova Mini Mental State , 2010 .

[2]  S Minoshima,et al.  Preclinical evidence of Alzheimer changes in progressive mild cognitive impairment: a qualitative and quantitative SPECT study , 2006, Acta neurologica Scandinavica.

[3]  P. Murali Doraiswamy,et al.  Accuracy of spatial normalization of the hippocampus: Implications for fMRI research in memory disorders , 2006, NeuroImage.

[4]  P. Modrego,et al.  Predictors of conversion to dementia of probable Alzheimer type in patients with mild cognitive impairment. , 2006, Current Alzheimer research.

[5]  Peter Stoeter,et al.  Functional implications of hippocampal volume and diffusivity in mild cognitive impairment , 2005, NeuroImage.

[6]  E. Bullmore,et al.  Functional neuroanatomy of successful paired associate learning in Alzheimer's disease. , 2005, The American journal of psychiatry.

[7]  J. Benito-León,et al.  [Regional correlations between MR imaging perfusion and SPECT in Alzheimer's disease]. , 2005, Neurologia.

[8]  N. Schuff,et al.  Pattern of cerebral hypoperfusion in Alzheimer disease and mild cognitive impairment measured with arterial spin-labeling MR imaging: initial experience. , 2005, Radiology.

[9]  C. Zimmer,et al.  Quantification of blood flow in brain tumors: comparison of arterial spin labeling and dynamic susceptibility-weighted contrast-enhanced MR imaging. , 2003, Radiology.

[10]  Keith A. Johnson,et al.  MRI-guided SPECT perfusion measures and volumetric MRI in prodromal Alzheimer disease. , 2003, Archives of neurology.

[11]  B. Rosen,et al.  Tracer arrival timing‐insensitive technique for estimating flow in MR perfusion‐weighted imaging using singular value decomposition with a block‐circulant deconvolution matrix , 2003, Magnetic resonance in medicine.

[12]  R. Coleman,et al.  Neuroimaging and early diagnosis of Alzheimer disease: a look to the future. , 2003, Radiology.

[13]  M. Sasaki,et al.  MR relative cerebral blood flow mapping of Alzheimer disease: correlation with Tc-99m HMPAO SPECT. , 2002, Academic radiology.

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

[15]  B J Shepstone,et al.  Cerebral perfusion SPET correlated with Braak pathological stage in Alzheimer's disease. , 2002, Brain : a journal of neurology.

[16]  Sandra E. Black,et al.  Limbic system perfusion in Alzheimer's disease measured by MRI-coregistered HMPAO SPET , 2002, European Journal of Nuclear Medicine and Molecular Imaging.

[17]  L. Xiong,et al.  Tetramethylpyrazine attenuates spinal cord ischemic injury due to aortic cross-clamping in rabbits , 2002, BMC neurology.

[18]  R. Floris,et al.  Diffusion and perfusion MR imaging in cases of Alzheimer's disease: correlations with cortical atrophy and lesion load. , 2001, AJNR. American journal of neuroradiology.

[19]  R. V. Van Heertum,et al.  SPECT perfusion imaging in the diagnosis of Alzheimer’s disease , 2001, Neurology.

[20]  T. Ohnishi,et al.  Longitudinal evaluation of early Alzheimer's disease using brain perfusion SPECT. , 2000, Journal of nuclear medicine : official publication, Society of Nuclear Medicine.

[21]  K. Shulman Clock‐drawing: is it the ideal cognitive screening test? , 2000, International journal of geriatric psychiatry.

[22]  A. Kertesz,et al.  The Frontal Behavioral Inventory in the differential diagnosis of frontotemporal dementia , 2000, Journal of the International Neuropsychological Society.

[23]  H. Buschke,et al.  Memory and mental status correlates of modified Braak staging , 1999, Neurobiology of Aging.

[24]  David L. Thomas,et al.  Measuring Cerebral Blood Flow Using Magnetic Resonance Imaging Techniques , 1999, Journal of cerebral blood flow and metabolism : official journal of the International Society of Cerebral Blood Flow and Metabolism.

[25]  J L Andersson,et al.  Brain regions associated with episodic retrieval in normal aging and Alzheimer’s disease , 1999, Neurology.

[26]  P F Renshaw,et al.  Dynamic susceptibility contrast MR imaging of regional cerebral blood volume in Alzheimer disease: a promising alternative to nuclear medicine. , 1998, AJNR. American journal of neuroradiology.

[27]  H. Lehfeld,et al.  The Bayer Activities of Daily Living Scale (B-ADL) , 1998, Dementia and Geriatric Cognitive Disorders.

[28]  B L Holman,et al.  Preclinical prediction of Alzheimer's disease using SPECT , 1998, Neurology.

[29]  Kazunari Ishii,et al.  Demonstration of decreased posterior cingulate perfusion in mild Alzheimer's disease by means of H215O positron emission tomography , 1997, European Journal of Nuclear Medicine.

[30]  B. Rosen,et al.  High resolution measurement of cerebral blood flow using intravascular tracer bolus passages. Part I: Mathematical approach and statistical analysis , 1996, Magnetic resonance in medicine.

[31]  B. Rosen,et al.  High resolution measurement of cerebral blood flow using intravascular tracer bolus passages. Part II: Experimental comparison and preliminary results , 1996, Magnetic resonance in medicine.

[32]  E F Halpern,et al.  Functional MR in the evaluation of dementia: correlation of abnormal dynamic cerebral blood volume measurements with changes in cerebral metabolism on positron emission tomography with fludeoxyglucose F 18. , 1995, AJNR. American journal of neuroradiology.

[33]  Anthony F Jorm A short form of the Informant Questionnaire on Cognitive Decline in the Elderly (IQCODE): development and cross-validation , 1994, Psychological Medicine.

[34]  C. Olson,et al.  Functional heterogeneity in cingulate cortex: the anterior executive and posterior evaluative regions. , 1992, Cerebral cortex.

[35]  B L Holman,et al.  The scintigraphic appearance of Alzheimer's disease: a prospective study using technetium-99m-HMPAO SPECT. , 1992, Journal of nuclear medicine : official publication, Society of Nuclear Medicine.

[36]  R R Edelman,et al.  Cerebral blood flow: assessment with dynamic contrast-enhanced T2*-weighted MR imaging at 1.5 T. , 1990, Radiology.

[37]  Richard S. J. Frackowiak,et al.  Cerebral blood flow, blood volume and oxygen utilization. Normal values and effect of age. , 1990, Brain : a journal of neurology.

[38]  K. Maurer,et al.  Electrical brain activity and cerebral blood flow in dementia of the Alzheimer type , 1989, Psychiatry Research.

[39]  R. Levy,et al.  The investigation of Alzheimer's disease with single photon emission tomography. , 1989, Journal of neurology, neurosurgery, and psychiatry.

[40]  D. Benson,et al.  The fluorodeoxyglucose 18F scan in Alzheimer's disease and multi-infarct dementia. , 1983, Archives of neurology.

[41]  R H Huesman,et al.  Regional Cerebral Metabolic Alterations in Dementia of the Alzheimer Type: Positron Emission Tomography with [1818] Fluorodeoxyglucose , 1983, Journal of computer assisted tomography.

[42]  T Jones,et al.  Regional cerebral oxygen supply and utilization in dementia. A clinical and physiological study with oxygen-15 and positron tomography. , 1981, Brain : a journal of neurology.

[43]  R. S. J. Frackowiak,et al.  REGIONAL CEREBRAL OXYGEN SUPPLY AND UTILIZATION IN DEMENTIAA CLINICAL AND PHYSIOLOGICAL STUDY WITH OXYGEN-15 AND POSITRON TOMOGRAPHY A CLINICAL AND PHYSIOLOGICAL STUDY WITH OXYGEN - 15 AND POSITRON TOMOHRAPHY , 1981 .

[44]  S. Folstein,et al.  “Mini-mental state”: A practical method for grading the cognitive state of patients for the clinician , 1975 .

[45]  M. Schwartz,et al.  Evidence of subnormal function of association cortex in presenile dementia , 1975, Neurology.

[46]  F. Petermann,et al.  Trail Making Test (TMT) , 2010 .

[47]  Angelika I. T. Thöne-Otto,et al.  Wechsler Gedächtnistest - Revidierte Fassung (WMS-R) , 2009 .

[48]  E. Kisch,et al.  Changes in serum dopamine-beta-hydroxylase activity during cold pressor test in subjects with high and low basal activity of this enzyme , 2005, Journal of Neural Transmission.

[49]  E. Tangalos,et al.  Mild Cognitive Impairment Clinical Characterization and Outcome , 1999 .

[50]  K. Wienhard,et al.  Normal and pathological aging – findings of positron-emission-tomography , 1998, Journal of Neural Transmission.

[51]  H. Braak,et al.  Evolution of neuronal changes in the course of Alzheimer's disease. , 1998, Journal of neural transmission. Supplementum.