Cortical Plasticity, Excitatory-Inhibitory Balance, and Sensory Perception

被引:83
作者
Carcea, Ioana [1 ,2 ,3 ]
Froemke, Robert C. [2 ,3 ]
机构
[1] NYU, Sch Med, Mol Neurobiol Program,Helen & Martin Kimmel Ctr B, Skirball Inst Biomol Med,Dept Physiol & Neurosci, New York, NY 10012 USA
[2] NYU, Sch Med, Dept Otolaryngol, New York, NY USA
[3] NYU, Ctr Neural Sci, New York, NY 10003 USA
来源
CHANGING BRAINS APPLYING BRAIN PLASTICITY TO ADVANCE AND RECOVER HUMAN ABILITY | 2013年 / 207卷
关键词
neuromodulation; sensory cortex; synaptic plasticity; excitatory-inhibitory balance; perception; BASAL FOREBRAIN NEURONS; PRIMARY AUDITORY-CORTEX; LOCUS-COERULEUS NEURONS; EXPERIENCE-DEPENDENT PLASTICITY; CRITICAL PERIOD PLASTICITY; SINGLE-CELL RESPONSES; CAT VISUAL-CORTEX; NUCLEUS BASALIS; CEREBRAL-CORTEX; PIRIFORM CORTEX;
D O I
10.1016/B978-0-444-63327-9.00003-5
中图分类号
Q189 [神经科学];
学科分类号
071006 ;
摘要
Experience shapes the central nervous system throughout life. Structural and functional plasticity confers a remarkable ability on the brain, allowing neural circuits to adequately adapt to dynamic environments. This process can require selective adjustment of many excitatory and inhibitory synapses in an organized manner, in such a way as to enhance representations of behaviorally important sensory stimuli while preserving overall network excitability. The rules and mechanisms that orchestrated these changes across different synapses and throughout neuronal ensembles are beginning to be understood. Here, we review the evidence connecting synaptic plasticity to functional plasticity and perceptual learning, focusing on the roles of various neuromodulatory systems in enabling plasticity of adult neural circuits. However, the challenge remains to appropriately leverage these systems and forms of plasticity to persistently improve perceptual abilities and behavioral performance.
引用
收藏
页码:65 / 90
页数:26
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