Mathematical Models.- Stochastic Models and Linear Tracer Kinetics.- On Modeling Flow Data Using Generalized Stochastic Compartmental Models.- Autoradiography.- Basic Principles in Imaging of Regional Cerebral Metabolic Rates with Radioisotopes.- Multi-tracer Autoradiography for the Simultaneous Measurement of Cerebral Blood Flow and Metabolism.- Single Photon Emission Tomography.- to Methods Used for Measuring Regional Cerebral Blood Flow with Single Photon Emission Tomography.- Estimating Blood Flow by Deconvolution of the Injection of Radioisotope Tracers.- Regional Cerebral Blood Flow Measurements Using the 133-Xenon Inhalation Method.- Positron Emission Tomography.- An Introduction to the Physics and Instrumentation of Positron Emission Tomography.- Nuclear Magnetic Resonance.- Nuclear Magnetic Resonance Spectroscopy: Basic Principles and Some Applications to Studies of Cerebral Metabolism.- Nuclear Magnetic Resonance Imaging.- Measurement and Interpretation of T1 and T2.- Flow Studies.- Perfusion Studies and Fast Imaging.- Contributors.
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