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光遗传学神经调节

Optogenetic neuromodulation.

作者信息

Henderson Jaimie M, Federici Thais, Boulis Nicholas

机构信息

Department of Neurosurgery, Stanford University Medical Center, Stanford, California 94305, USA.

出版信息

Neurosurgery. 2009 May;64(5):796-804; discussion 804. doi: 10.1227/01.NEU.0000339171.87593.6A.

Abstract

Modulation of the nervous system by electrical or chemical means (neuromodulation) is becoming increasingly sophisticated, with application to a growing number of neurological diseases. However, both chemical and electrical neuromodulation are limited in their specificity. Electrical stimulation, for example, indiscriminately activates different neuronal populations within the electrical field, leading to side effects that can limit efficacy. The delivery of genes that encode proteins capable of conveying light sensitivity to neurons has provided a tool that may overcome some of the limitations of traditional neuromodulation techniques. Activation or inhibition of specific neuronal populations with different wavelengths of light opens up possibilities for modulating neural circuits with previously unimagined levels of precision. We briefly review this new technology, illustrating its advantages and potential applications.

摘要

通过电或化学手段对神经系统进行调节(神经调节)正变得越来越复杂,其应用于越来越多的神经系统疾病。然而,化学和电神经调节在特异性方面都存在局限性。例如,电刺激会不加区分地激活电场内的不同神经元群体,导致可能限制疗效的副作用。向神经元传递编码能够赋予光敏感性的蛋白质的基因,提供了一种可能克服传统神经调节技术某些局限性的工具。用不同波长的光激活或抑制特定神经元群体,为以前所未有的精度调节神经回路开辟了可能性。我们简要回顾这项新技术,说明其优点和潜在应用。

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