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Current theories about human memory have been shaped by clinical observations and animal experiments. This doctrine holds that the medial temporal lobe subserves one memory system for explicit or declarative memories, while the basal ganglia subserves a separate memory system for implicit or procedural memories, including habits. Cortical areas outside the medial temporal lobe are said to function in perception, motor control, attention, or other aspects of executive function, but not in memory.'The Evolution of Memory Systems' advances dramatically different ideas on all counts. It proposes that several memory systems arose during evolution and that they did so for the same general reason: to transcend problems and exploit opportunities encountered by specific ancestors at particular times and places in the distant past.Instead of classifying cortical areas in terms of mutually exclusive perception, executive, or memory functions, the authors show that all cortical areas contribute to memory and that they do so in their own ways-using specialized neural representations. The book also presents a proposal on the evolution of explicit memory. According to this idea, explicit (declarative) memory depends on interactions between a phylogenetically ancient navigation system and a representational system that evolved in humans to represent one's self and others. As a result, people embed representations of themselves into the events they experience and the facts they learn, which leads to the perception of participating in events and knowing facts.'The Evolution of Memory Systems' is an important new work for students and researchers in neuroscience, psychology, and biology.
This book investigates the evolutionary origins and functional organization of memory systems, challenging the traditional doctrine that memory is confined to specific brain regions like the medial temporal lobe. The authors, Elisabeth A. Murray, Kim S. Graham, and Steven Wise, utilize a synthesis of comparative anatomy, clinical observation, and evolutionary theory to argue that memory systems evolved as adaptive responses to specific environmental challenges faced by ancestral species. They propose a framework where all cortical areas contribute to memory through specialized neural representations, rather than adhering to rigid classifications of perception or executive function.
What You Will Find
Experts in the field recognize this text as a significant challenge to established neurobiological paradigms regarding memory localization. Readers frequently note the academic density of the prose, making it a specialized resource for advanced students and researchers in neuroscience and psychology.
Page Count:
528
Publication Date:
2017-12-05
Publisher:
Oxford University Press
ISBN-10:
0198817134
ISBN-13:
9780198817130
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