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Titlebook: Animal Models of Acute Neurological Injuries II; Injury and Mechanist Jun Chen,Xiao-Ming Xu,John H. Zhang Book 2012 Springer Science+Busine

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期刊全称Animal Models of Acute Neurological Injuries II
期刊简称Injury and Mechanist
影响因子2023Jun Chen,Xiao-Ming Xu,John H. Zhang
视频video
发行地址Presents the material in a disease/disorder oriented manner for convenient reference.Offers both recommended, established techniques and alternative methods that have their own special utility.Feature
学科分类Springer Protocols Handbooks
图书封面Titlebook: Animal Models of Acute Neurological Injuries II; Injury and Mechanist Jun Chen,Xiao-Ming Xu,John H. Zhang Book 2012 Springer Science+Busine
影响因子.The successful previous volume on this topic provided a detailed benchwork manual for the most commonly used animal models of acute neurological injuries including cerebral ischemia, hemorrhage, vasospasm, and traumatic brain and spinal cord injuries.  .Animal Models of Acute Neurological Injuries II: Injury and Mechanistic Assessments. aims to collect chapters on assessing these disorders from cells and molecules to behavior and imaging. These comprehensive assessments are the key for understanding disease mechanisms as well as developing novel therapeutic strategies to ameliorate or even prevent damages to the nervous system.  .Volume 1. examines general assessments in morphology, physiology, biochemistry and molecular biology, neurobehavior, and neuroimaging, as well as extensive sections on subarachnoid hemorrhage, cerebral vasospasm, and intracerebral hemorrhage.  Designed to provide both expert guidance and step-by-step procedures, chapters serve to increase understanding in what, why, when, where, and how a particular assessment is used.. .Accessible and essential, .Animal Models of Acute Neurological Injuries II: Injury and Mechanistic Assessments. will be useful for train
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Electrophysiological Evaluation of Synaptic Plasticity in Injured CNSrning and memory deficit and epilepsy. Field potential recording (FPR) and whole-cell patch clamp recording are electrophysiological techniques frequently used for evaluating synaptic plasticity. The FPR technique can measure synaptic activity generated from a population of activated neurons while p
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