Velocity-coded colour magnetic resonance angiography and perfusion-weighted magnetic resonance imaging for the evaluation of extracranial-to-intracranial arterial bypass surgery
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[1] R. Grubb,et al. Preview of a new trial of extracranial-to-intracranial arterial anastomosis: the carotid occlusion surgery study. , 2001, Neurosurgery clinics of North America.
[2] J. Kim,et al. Correlative assessment of hemodynamic parameters obtained with T2*-weighted perfusion MR imaging and SPECT in symptomatic carotid artery occlusion. , 2000, AJNR. American journal of neuroradiology.
[3] G. Brix,et al. Cerebral Blood Flow and Cerebrovascular Reserve Capacity: Estimation by Dynamic Magnetic Resonance Imaging , 1998, Journal of cerebral blood flow and metabolism : official journal of the International Society of Cerebral Blood Flow and Metabolism.
[4] William J. Powers,et al. Importance of Hemodynamic Factors in the Prognosis of Symptomatic Carotid Occlusion , 1998 .
[5] B. Lerer,et al. Age-related changes in brain perfusion of normal subjects detected by 99mTc-HMPAO SPECT , 1998, Neuroradiology.
[6] S. Aoki,et al. Velocity-coded color MR angiography. , 1998, AJNR. American journal of neuroradiology.
[7] P. Adeleine,et al. Assessment of cerebrovascular reactivity by dynamic susceptibility contrast-enhanced MR imaging , 1997, Journal of the Neurological Sciences.
[8] T. Shima,et al. Magnetic Resonance Angiographic Evaluation of STA-MCA Anastomoses in Comparison with Intraoperative Hemodynamic Studies , 1997 .
[9] K. Watanabe,et al. Phase-contrast MRA in the evaluation of EC-IC bypass patency. , 1995, Clinical radiology.
[10] M. Fukui,et al. Cerebral circulation and oxygen metabolism in childhood moyamoya disease: a perioperative positron emission tomography study. , 1994, Journal of neurosurgery.
[11] J. Hatazawa,et al. Quantitative mapping of regional cerebral blood flow using iodine-123-IMP and SPECT. , 1994, Journal of nuclear medicine : official publication, Society of Nuclear Medicine.
[12] W. J. Lorenz,et al. Quantification of regional cerebral blood flow and volume with dynamic susceptibility contrast-enhanced MR imaging. , 1994, Radiology.
[13] P. Turski,et al. Evaluation of subclavian steal with two-dimensional phase-contrast and two-dimensional time-of-flight MR angiography. , 1994, AJNR. American journal of neuroradiology.
[14] C R Bird,et al. Neurologic complications of cerebral angiography. , 1994, AJNR. American journal of neuroradiology.
[15] Julie S. Snowden,et al. Choice of reference region in the quantification of single-photon emission tomography in primary degenerative dementia , 1994, European Journal of Nuclear Medicine.
[16] N. Nakayama,et al. Evaluation of the patency of an extracranial-intracranial bypass using magnetic resonance angiography with selective presaturation of bypass vessels. , 1994, Neurologia medico-chirurgica.
[17] T. Kodama,et al. MRA in the Evaluation of EC‐IC Bypass Patency , 1993, Journal of computer assisted tomography.
[18] K. Houkin,et al. [Analysis of cerebral blood flow dynamics and evaluation of extracranial-intracranial arterial bypass function using magnetic resonance angiography with presaturation pulse sequence]. , 1993, No shinkei geka. Neurological surgery.
[19] E. Potchen,et al. Determination of blood flow direction using velocity-phase image display with 3-D phase-contrast MR angiography. , 1992, AJNR. American journal of neuroradiology.
[20] R S Frackowiak,et al. Assessment of cerebral haemodynamic reserve: correlation between PET parameters and CO2 reactivity measured by the intravenous 133 xenon injection technique. , 1988, Journal of neurology, neurosurgery, and psychiatry.
[21] R. Wise,et al. Cerebral haemodynamic changes after extracranial-intracranial bypass surgery. , 1987, Journal of neurology, neurosurgery, and psychiatry.
[22] J. Baron,et al. Effects of extra-intracranial arterial bypass on cerebral blood flow and oxygen metabolism in humans. , 1985, Stroke.
[23] K. Leenders,et al. EVALUATION OF CEREBRAL PERFUSION RESERVE IN PATIENTS WITH CAROTID-ARTERY OCCLUSION , 1984, The Lancet.
[24] 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.
[25] G N Stewart,et al. Researches on the Circulation Time in Organs and on the Influences which affect it , 1893, The Journal of physiology.
[26] B. Kemp,et al. Quantification of functional deficit in Alzheimer's disease using a computer-assisted mapping program for99mTc-HMPAO SPECT , 2004, Neuroradiology.
[27] A. Arbab,et al. Brain perfusion measured by flow-sensitive alternating inversion recovery (FAIR) and dynamic susceptibility contrast-enhanced magnetic resonance imaging: comparison with nuclear medicine technique , 2001, European Radiology.
[28] W. Yuh,et al. Severe occlusive carotid artery disease: hemodynamic assessment by MR perfusion imaging in symptomatic patients. , 1999, AJNR. American journal of neuroradiology.
[29] J R Waugh,et al. Arteriographic complications in the DSA era. , 1992, Radiology.
[30] J. Amsterdam,et al. Temporal lobe asymmetry with iofetamine (IMP) SPECT imaging in patients with major depression. , 1992, Journal of affective disorders.
[31] 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.