Metabolic encephalopathy

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Datensatz im Suchindex

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adam_text Contents 1 Functional Anatomy of the Brain ........................................................... 1 John M. DeSesso 2 Brain Metabolic Adaptations to Hypoxia .............................................. 15 Michelle A. Puchowicz, Smruta S. Koppaka, and Joseph С LaManna 3 Hypoglycémie Brain Damage .................................................................. 31 Roland N. Auer 4 Experimental Ischemia: Summary of Metabolic Encephalopathy ..... 41 W. David Lust, Jennifer Zechel, and Svetlana Pundik 5 Stroke — Clinical Features ....................................................................... 69 Svetlana Pundik and Jose I. Suarez 6 The Role of Animal Models in the Study of Epileptogenesis ............... 85 Kate Chandler, Pi-Shan Chang, and Matthew Walker 7 Seizure-Induced Neuronal Plasticity and Metabolic Effects ............................................................................. 113 Monisha Goyal 8 Metabolic Encephalopathies in Children ............................................... 137 Joseph DiCarlo 9 Pathophysiology of Hepatic Encephalopathy: Studies in Animal Models ....................................................................... 149 Roger F. Buttenvorth Contents 10 Hepatic Encephalopathy....................................................................... 181 Karin Weissenborn 11 Uremie and Dialysis Encephaiopathies ................................................ 201 Allen I. Arieff 12 Thiamine Deficiency: A Model of Metabolie Encephalopathy and of Selective Neuronal Vulnerability............................................. 235 Saravanan Karuppagounder and Gary E. Gibson 13 Alcohol, Apoptosis, and Oxidative Stress ............................................ 261 George I. Henderson, Jennifer Stewart, and Steven Schenker 14 Wernicke s Encephalopathy ................................................................. 281 Maryam R. Kashi, George I. Henderson, and Steven Schenker 15 The Genetics of Myelination in Metabolic Brain Disease: The Leukodystrophies ................................................. 303 John W. Rumsey 16 Bilirubin Encephalopathy ..................................................................... 321 Jeffrey W. McCandless and David W. McCandless 17 Infectious and Inflammatory Metabolic Encephaiopathies: Concepts in Pathogenesis ..................................... 333 Kottil Rammohan 18 Major Depression and Metabolic Encephalopathy: Syndromes More Alike Than Not? ...................................................... 349 Brian H. Harvey 19 Attention-Deficit/Hyperactivity Disorder as a Metabolic Encephalopathy ........................................................... 371 Vivienné Ann Russell 20 Brain Damage in Phenylalanine, Homocysteine, and Galactose Metabolic Disorders ..................................................... 393 Kleopatra H. Schulpis and Stylianos Tsakiris 21 Wilson Disease ........................................................................................ 459 Peter Ferenci Contents xi 22 Metabolie Abnormalities in Alzheimer Disease .................................. 483 Florian M. Gebhardt and Peter R. Dodd 23 Prions and the Transmissible Spongiform Encephalopathies ............ 531 Richard C. Wiggins 24 Lead Encephalopathy............................................................................ 551 Ivan J. Boyer Index................................................................................................................ 573 Metabolic Encephalopathy David W. McCandless EDITOR Metabolic Encephalopathy is meant to combine and correlate animal and human studies. In many cases, alterations in the neurochemistry of humans and experimental animal models are similar. It is hoped that increased awareness of the importance of early diagnosis and treatment of these disorders may result in a lowering of the incidence of structural changes and morbidity. These metabolic encephalopathies hold a special fascination for both basic scientists and clinical investigators because they are accessible, treatable, and there exist good animal models for further study. Therefore, this book assembles both basic and clinical neuroscience issues in the treatment of specific metabolic encephalopathies such as uremia, Wernicke s disease, epilepsy, stroke, hepatic encephalopathy, pediatrie encephalopathies, inborn errors of metabolism, toxins such as lead, depression, cerebral infections, kernicterus, Wilson disease, HIV encephalopathy, and many others. About the Editor: Dr. David W. McCandless is the John J. Sheinin Professor of Anatomy in the Department of Cell Biology and Anatomy at The Chicago Medical School, Rosalind Franklin University, North Chicago, IL. He has over 35 years of laboratory research into basic mechanisms of various metabolic encephalopathies. He serves as Editor-in-Chief of the journal Metabolic Brain Disease (Springer), now in its 23rd year. Dr. McCandless has been on the faculty or research staff at The University of Vermont College of Medicine, NIH-NINCDS, University of Texas Medical School at Houston, and The Chicago Medical School, and was a visiting professor at Washington University School of Medicine. Dr. McCandless has published in journals such as The J. Clinical Investigation, Nature, Proc, National Academy of Sciences, Amer. J. of Physiology, Brain Research, }. Neurochemistry, Teratology, Epilepsia, Stroke, and many others. This is his third edited book.
adam_txt Contents 1 Functional Anatomy of the Brain . 1 John M. DeSesso 2 Brain Metabolic Adaptations to Hypoxia . 15 Michelle A. Puchowicz, Smruta S. Koppaka, and Joseph С LaManna 3 Hypoglycémie Brain Damage . 31 Roland N. Auer 4 Experimental Ischemia: Summary of Metabolic Encephalopathy . 41 W. David Lust, Jennifer Zechel, and Svetlana Pundik 5 Stroke — Clinical Features . 69 Svetlana Pundik and Jose I. Suarez 6 The Role of Animal Models in the Study of Epileptogenesis . 85 Kate Chandler, Pi-Shan Chang, and Matthew Walker 7 Seizure-Induced Neuronal Plasticity and Metabolic Effects . 113 Monisha Goyal 8 Metabolic Encephalopathies in Children . 137 Joseph DiCarlo 9 Pathophysiology of Hepatic Encephalopathy: Studies in Animal Models . 149 Roger F. Buttenvorth Contents 10 Hepatic Encephalopathy. 181 Karin Weissenborn 11 Uremie and Dialysis Encephaiopathies . 201 Allen I. Arieff 12 Thiamine Deficiency: A Model of Metabolie Encephalopathy and of Selective Neuronal Vulnerability. 235 Saravanan Karuppagounder and Gary E. Gibson 13 Alcohol, Apoptosis, and Oxidative Stress . 261 George I. Henderson, Jennifer Stewart, and Steven Schenker 14 Wernicke's Encephalopathy . 281 Maryam R. Kashi, George I. Henderson, and Steven Schenker 15 The Genetics of Myelination in Metabolic Brain Disease: The Leukodystrophies . 303 John W. Rumsey 16 Bilirubin Encephalopathy . 321 Jeffrey W. McCandless and David W. McCandless 17 Infectious and Inflammatory Metabolic Encephaiopathies: Concepts in Pathogenesis . 333 Kottil Rammohan 18 Major Depression and Metabolic Encephalopathy: Syndromes More Alike Than Not? . 349 Brian H. Harvey 19 Attention-Deficit/Hyperactivity Disorder as a Metabolic Encephalopathy . 371 Vivienné Ann Russell 20 Brain Damage in Phenylalanine, Homocysteine, and Galactose Metabolic Disorders . 393 Kleopatra H. Schulpis and Stylianos Tsakiris 21 Wilson Disease . 459 Peter Ferenci Contents xi 22 Metabolie Abnormalities in Alzheimer Disease . 483 Florian M. Gebhardt and Peter R. Dodd 23 Prions and the Transmissible Spongiform Encephalopathies . 531 Richard C. Wiggins 24 Lead Encephalopathy. 551 Ivan J. Boyer Index. 573 Metabolic Encephalopathy David W. McCandless EDITOR Metabolic Encephalopathy is meant to combine and correlate animal and human studies. In many cases, alterations in the neurochemistry of humans and experimental animal models are similar. It is hoped that increased awareness of the importance of early diagnosis and treatment of these disorders may result in a lowering of the incidence of structural changes and morbidity. These metabolic encephalopathies hold a special fascination for both basic scientists and clinical investigators because they are accessible, treatable, and there exist good animal models for further study. Therefore, this book assembles both basic and clinical neuroscience issues in the treatment of specific metabolic encephalopathies such as uremia, Wernicke's disease, epilepsy, stroke, hepatic encephalopathy, pediatrie encephalopathies, inborn errors of metabolism, toxins such as lead, depression, cerebral infections, kernicterus, Wilson disease, HIV encephalopathy, and many others. About the Editor: Dr. David W. McCandless is the John J. Sheinin Professor of Anatomy in the Department of Cell Biology and Anatomy at The Chicago Medical School, Rosalind Franklin University, North Chicago, IL. He has over 35 years of laboratory research into basic mechanisms of various metabolic encephalopathies. He serves as Editor-in-Chief of the journal Metabolic Brain Disease (Springer), now in its 23rd year. Dr. McCandless has been on the faculty or research staff at The University of Vermont College of Medicine, NIH-NINCDS, University of Texas Medical School at Houston, and The Chicago Medical School, and was a visiting professor at Washington University School of Medicine. Dr. McCandless has published in journals such as The J. Clinical Investigation, Nature, Proc, National Academy of Sciences, Amer. J. of Physiology, Brain Research, }. Neurochemistry, Teratology, Epilepsia, Stroke, and many others. This is his third edited book.
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New York Springer 2009
XVI, 585 S. Ill., graph. Darst. 235 mm x 155 mm
txt rdacontent
n rdamedia
nc rdacarrier
Brain Diseases, Metabolic complications
Brain Diseases, Metabolic physiopathology
Brain Diseases
Disease Models, Animal
Energy Metabolism
Energy metabolism
Metabolism Disorders
Stoffwechselstörung (DE-588)4057701-6 gnd rswk-swf
Hirnkrankheit (DE-588)4025013-1 gnd rswk-swf
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Digitalisierung UB Regensburg application/pdf http://bvbr.bib-bvb.de:8991/F?func=service&doc_library=BVB01&local_base=BVB01&doc_number=016588372&sequence=000004&line_number=0002&func_code=DB_RECORDS&service_type=MEDIA Klappentext
spellingShingle Metabolic encephalopathy
Brain Diseases, Metabolic complications
Brain Diseases, Metabolic physiopathology
Brain Diseases
Disease Models, Animal
Energy Metabolism
Energy metabolism
Metabolism Disorders
Stoffwechselstörung (DE-588)4057701-6 gnd
Hirnkrankheit (DE-588)4025013-1 gnd
subject_GND (DE-588)4057701-6
(DE-588)4025013-1
(DE-588)4143413-4
title Metabolic encephalopathy
title_auth Metabolic encephalopathy
title_exact_search Metabolic encephalopathy
title_exact_search_txtP Metabolic encephalopathy
title_full Metabolic encephalopathy David W. McCandless ed.
title_fullStr Metabolic encephalopathy David W. McCandless ed.
title_full_unstemmed Metabolic encephalopathy David W. McCandless ed.
title_short Metabolic encephalopathy
title_sort metabolic encephalopathy
topic Brain Diseases, Metabolic complications
Brain Diseases, Metabolic physiopathology
Brain Diseases
Disease Models, Animal
Energy Metabolism
Energy metabolism
Metabolism Disorders
Stoffwechselstörung (DE-588)4057701-6 gnd
Hirnkrankheit (DE-588)4025013-1 gnd
topic_facet Brain Diseases, Metabolic complications
Brain Diseases, Metabolic physiopathology
Brain Diseases
Disease Models, Animal
Energy Metabolism
Energy metabolism
Metabolism Disorders
Stoffwechselstörung
Hirnkrankheit
Aufsatzsammlung
url http://bvbr.bib-bvb.de:8991/F?func=service&doc_library=BVB01&local_base=BVB01&doc_number=016588372&sequence=000003&line_number=0001&func_code=DB_RECORDS&service_type=MEDIA
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