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Brain Circuitry and Signaling in Psychiatry: Basic Science and Clinical Implications

Posted By: tukotikko
Brain Circuitry and Signaling in Psychiatry: Basic Science and Clinical Implications

Brain Circuitry and Signaling in Psychiatry: Basic Science and Clinical Implications By Gary Kaplan, Ronald P. Hammer
2002 | 281 Pages | ISBN: 088048957X | PDF | 4 MB


The 1990s, appropriately termed "the decade of the brain," witnessed unprecedented advances in our knowledge of psychiatric neuroscience. Yet with every advance, we realized afresh that we were still in the beginning stages of a much longer journey. This text chronicles the next step of that journey. Structured around a proven teaching methodology that uniquely integrates the clinical aspects of psychiatric disorders with their neurobiology, this volume begins with two introductory chapters on functional neural circuitry and neural signaling pathways. The remaining six chapters present current knowledge on the neuroanatomic and neurochemical mechanisms underlying schizophrenia, addiction, anxiety, depression, bipolar disorder, and dementia/Alzheimer's disease. For clarity and consistency, each chapter features the same four divisions -- clinical presentation, neural circuitry, signaling pathways, and psychopharmacology -- as they relate to * Schizophrenia, which reviews studies of the neural basis of schizophrenia and describes how the cortex, the thalamus, the basal ganglia, and the medial temporal lobe work together during normal brain function and then how each is perturbed in psychosis. * Addiction, which focuses on the consequences of psychoactive substance use, including compulsive practices (e.g., eating, sex, Internet browsing) that might also involve the same brain circuits and signaling pathways. Of exceptional value are two unique illustrations that capture -- for the first time -- much of what we know about the anatomy and neurochemistry underlying the behavioral symptoms of addiction. * Anxiety, which presents current hypotheses regarding neurocircuitry and signaling pathways for the three best-studied (from a neurobiologic perspective) anxiety disorders: panic disorder, posttraumatic stress disorder, and obsessive-compulsive disorder. * Depression, which offers evidence for the involvement of highly interconnected cortical and limbic structures such as the prefrontal cortex, medial thalamus, amygdala, ventral striatum, hippocampus, and the hypothalamic-pituitary-adrenal axis in unipolar major depression, and suggests target areas (such as the cAMP pathway) for study in the development of new antidepressants. * Bipolar disorder, which shows that specific abnormalities in signal transduction pathways, including protein kinase activity, G protein levels, and gene expression, are unique to bipolar patients, concluding that the actions of lithium and anticonvulsants on intracellular signaling pathways provide a new paradigm for novel pharmacological interventions. * Dementia and Alzheimer's disease, which details current findings on neurofibrillary degeneration, relevant genes and proteins, pathogenesis (metabolic decline, defective cell repair, and Ass toxicity), and treatment strategies (neurotransmitter replacement, and neuroprotective and regenerative approaches).