神经科学
初级运动皮层
运动皮层
迷走神经电刺激
神经可塑性
感觉系统
配对
心理学
皮质(解剖学)
运动前皮质
刺激
迷走神经
医学
解剖
背
物理
超导电性
量子力学
作者
Benjamin Porter,Navid Khodaparast,Tabbassum Fayyaz,Ryan J. Cheung,Shariq Ahmed,Will A. Vrana,Robert L. Rennaker,Michael P. Kilgard
出处
期刊:Cerebral Cortex
[Oxford University Press]
日期:2011-11-10
卷期号:22 (10): 2365-2374
被引量:173
标识
DOI:10.1093/cercor/bhr316
摘要
Although sensory and motor systems support different functions, both systems exhibit experience-dependent cortical plasticity under similar conditions. If mechanisms regulating cortical plasticity are common to sensory and motor cortices, then methods generating plasticity in sensory cortex should be effective in motor cortex. Repeatedly pairing a tone with a brief period of vagus nerve stimulation (VNS) increases the proportion of primary auditory cortex responding to the paired tone (Engineer ND, Riley JR, Seale JD, Vrana WA, Shetake J, Sudanagunta SP, Borland MS, Kilgard MP. 2011. Reversing pathological neural activity using targeted plasticity. Nature. 470:101–104). In this study, we predicted that repeatedly pairing VNS with a specific movement would result in an increased representation of that movement in primary motor cortex. To test this hypothesis, we paired VNS with movements of the distal or proximal forelimb in 2 groups of rats. After 5 days of VNS movement pairing, intracranial microstimulation was used to quantify the organization of primary motor cortex. Larger cortical areas were associated with movements paired with VNS. Rats receiving identical motor training without VNS pairing did not exhibit motor cortex map plasticity. These results suggest that pairing VNS with specific events may act as a general method for increasing cortical representations of those events. VNS movement pairing could provide a new approach for treating disorders associated with abnormal movement representations.
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