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Titlebook: Neuroimaging II; Clinical Application Erin D. Bigler Book 1996 Springer Science+Business Media New York 1996 Syndrom.anatomy.brain.brain im

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Neuroimaging in Neurological Disordersagnosis and management. Anatomical imaging methods such as magnetic resonance imaging (MRI) and x-ray computed tomography (CT) have been used to determine the structural changes associated with various neurological diseases. Functional imaging techniques such as single photon emission computed tomog
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Gender Differences in Brain Morphometry and Functionn are, on average, taller and heavier than women, not to mention shaped differently. Although differences in size and shape that are unrelated to function might be of interest to an anatomist or neurosurgeon, gender differences in brain structure are of interest to behavioral scientists primarily to
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Functional and Structural Measures for Determining Risk of Memory Change following Epilepsy Surgeryf epileptogenic brain tissue has become a widely accepted medical treatment option for patients with chronic, focal seizure disorders that are refractory to conventional anticonvulsant medications (Anderman, 1987; Engel, 1987). With advanced pre-operative screening procedures and methods that are av
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Neuroimaging and Traumatic Brain Injury(see Gean, 1994; Osborn, 1994; Prayer & Gean, 1994). The actual mechanisms of brain injury have been fully discussed elsewhere (Bigler, 1990; Christman, Grady, Walker, Holloway, & Povlishock, 1994; Newberg & Alavi, this volume; Povlishock, 1992). This chapter will deal exclusively with these two are
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Magnetic Resonance Imaging and Memory Disorders us with more reliable anatomical definition of pathological and normal brain tissue. Second, it has allowed better quantification of cerebral lesions and of normal brain structures. In this chapter, I will review both trends and offer examples of each type of advance. The reader is referred to Andr
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