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The neurobiological basis of memory ...
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Jackson, Pamela A.
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The neurobiological basis of memory = a system of attribute and process analysis /
紀錄類型:
書目-電子資源 : Monograph/item
正題名/作者:
The neurobiological basis of memory/ edited by Pamela A. Jackson ... [et al.].
其他題名:
a system of attribute and process analysis /
其他作者:
Jackson, Pamela A.
出版者:
Cham :Springer International Publishing : : 2016.,
面頁冊數:
xxv, 428 p. :ill., digital ;24 cm.
內容註:
Attribute Memory Model and Behavioral Neurophysiology of Memory -- Prefrontal Cortex and Basal Ganglia Attributes Underlying Behavioral Flexibility -- Balancing the Contributions of Multiple Neural Systems During Learning and Memory -- ATTRIBUTE THEORY OF MEMORY APPLIED TO MODELS OF NEUROLOGICAL DISORDERS: -- Memory Disruption Following Traumatic Brain Injury -- Altered Neural Synchronies Underlying Cognitive Deficits in a Transgenic Mouse Model of Huntington's Disease -- Applying the Attribute Model to Develop Behavioral Tasks that Phenocopy Human Clinical Phenotypes using Mouse Disease Models: An Endophenotyping Approach -- PERSONAL:The Life and Science of Raymond P. Kesner -- Recollections of, and Letters to, Ray Kesner.
Contained By:
Springer eBooks
標題:
Memory. -
電子資源:
http://dx.doi.org/10.1007/978-3-319-15759-7
ISBN:
9783319157597$q(electronic bk.)
The neurobiological basis of memory = a system of attribute and process analysis /
The neurobiological basis of memory
a system of attribute and process analysis /[electronic resource] :edited by Pamela A. Jackson ... [et al.]. - Cham :Springer International Publishing :2016. - xxv, 428 p. :ill., digital ;24 cm.
Attribute Memory Model and Behavioral Neurophysiology of Memory -- Prefrontal Cortex and Basal Ganglia Attributes Underlying Behavioral Flexibility -- Balancing the Contributions of Multiple Neural Systems During Learning and Memory -- ATTRIBUTE THEORY OF MEMORY APPLIED TO MODELS OF NEUROLOGICAL DISORDERS: -- Memory Disruption Following Traumatic Brain Injury -- Altered Neural Synchronies Underlying Cognitive Deficits in a Transgenic Mouse Model of Huntington's Disease -- Applying the Attribute Model to Develop Behavioral Tasks that Phenocopy Human Clinical Phenotypes using Mouse Disease Models: An Endophenotyping Approach -- PERSONAL:The Life and Science of Raymond P. Kesner -- Recollections of, and Letters to, Ray Kesner.
This exciting volume offers an up-to-date tour of current trends in the neurobiology of memory while saluting Raymond Kesner's pioneering contributions to the field as a theorist and researcher, teacher and mentor. Starting with his signature chapter introducing the Attribute Model of Memory, the first half of the book focuses on the central role of the hippocampus in processing dimensions of space and time, and branches out to memory system interactions across brain structures. Later chapters apply the attribute model to multiple functions of memory in learning, and to specific neurological contexts, including Huntington's disease, traumatic brain injury, and Fragile X. As a bonus, the book concludes with an essay on Kesner's life and work, and reminiscences by colleagues. Among the topics covered: How the hippocampus supports the spatial and temporal attributes of memory. Self-regulation of memory processing centers of the brain. Multiple memory systems: the role of Kesner's Attribute Model in understanding the neurobiology of memory. Pattern separation: a key processing deficit associated with aging? Prefrontal cortex and basal ganglia attributes underlying behavioral flexibility. Memory disruption following traumatic brain injury. Cognitive neuroscientists, neuropsychologists, gerontologists, psychiatrists, and neurobiologists will find The Neurobiological Basis of Memory both enlightening and inspiring--much like Kesner himself.
ISBN: 9783319157597$q(electronic bk.)
Standard No.: 10.1007/978-3-319-15759-7doiSubjects--Topical Terms:
522110
Memory.
LC Class. No.: QP406
Dewey Class. No.: 612.82
The neurobiological basis of memory = a system of attribute and process analysis /
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Attribute Memory Model and Behavioral Neurophysiology of Memory -- Prefrontal Cortex and Basal Ganglia Attributes Underlying Behavioral Flexibility -- Balancing the Contributions of Multiple Neural Systems During Learning and Memory -- ATTRIBUTE THEORY OF MEMORY APPLIED TO MODELS OF NEUROLOGICAL DISORDERS: -- Memory Disruption Following Traumatic Brain Injury -- Altered Neural Synchronies Underlying Cognitive Deficits in a Transgenic Mouse Model of Huntington's Disease -- Applying the Attribute Model to Develop Behavioral Tasks that Phenocopy Human Clinical Phenotypes using Mouse Disease Models: An Endophenotyping Approach -- PERSONAL:The Life and Science of Raymond P. Kesner -- Recollections of, and Letters to, Ray Kesner.
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This exciting volume offers an up-to-date tour of current trends in the neurobiology of memory while saluting Raymond Kesner's pioneering contributions to the field as a theorist and researcher, teacher and mentor. Starting with his signature chapter introducing the Attribute Model of Memory, the first half of the book focuses on the central role of the hippocampus in processing dimensions of space and time, and branches out to memory system interactions across brain structures. Later chapters apply the attribute model to multiple functions of memory in learning, and to specific neurological contexts, including Huntington's disease, traumatic brain injury, and Fragile X. As a bonus, the book concludes with an essay on Kesner's life and work, and reminiscences by colleagues. Among the topics covered: How the hippocampus supports the spatial and temporal attributes of memory. Self-regulation of memory processing centers of the brain. Multiple memory systems: the role of Kesner's Attribute Model in understanding the neurobiology of memory. Pattern separation: a key processing deficit associated with aging? Prefrontal cortex and basal ganglia attributes underlying behavioral flexibility. Memory disruption following traumatic brain injury. Cognitive neuroscientists, neuropsychologists, gerontologists, psychiatrists, and neurobiologists will find The Neurobiological Basis of Memory both enlightening and inspiring--much like Kesner himself.
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