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丘脑和皮质同步可塑性潜在的电路机制。

Potential circuit mechanisms underlying concurrent thalamic and cortical plasticity.

作者信息

Nicolelis M A, Katz D, Krupa D J

机构信息

Department of Neurobiology, Duke University Medical Center, Durham, NC 27710, USA.

出版信息

Rev Neurosci. 1998 Jul-Dec;9(3):213-24. doi: 10.1515/revneuro.1998.9.3.213.

Abstract

During the last two decades, plastic reorganization of both sensory and motor representations in the adult central nervous system has been demonstrated following a large variety of manipulations, ranging from partial lesions of the sensory receptor surface to modifications in sensory experience (see /14/ for review). Yet, little is known about the neural circuit mechanisms underlying such reorganization process. Despite the difficulty in addressing this issue, recent studies have provided some insights into this fundamental question. Altogether, these studies suggest that the process of plastic reorganization is a system-wide phenomenon, involving both cortical and subcortical representations. Contrary to classical beliefs, recent work also suggests that the final outcome of the reorganization process is not necessarily beneficial, since it can lead to abnormal perceptual experiences /31/, such as the phantom limb sensation, and even pain /31,32/. In this review, we focus on recent insights into the possible circuit mechanisms underlying sensory plasticity and discuss the potential implications of these findings. We then present physiological evidence supporting the view that the process of plasticity observed at the cortical level may reflect simultaneous changes in many subcortical structures.

摘要

在过去二十年中,成人中枢神经系统中感觉和运动表征的可塑性重组已在多种操作后得到证实,这些操作范围从感觉受体表面的部分损伤到感觉体验的改变(综述见/14/)。然而,对于这种重组过程背后的神经回路机制却知之甚少。尽管解决这个问题存在困难,但最近的研究为这个基本问题提供了一些见解。总体而言,这些研究表明可塑性重组过程是一种全系统现象,涉及皮层和皮层下表征。与传统观念相反,最近的研究还表明,重组过程的最终结果不一定是有益的,因为它可能导致异常的感知体验/31/,例如幻肢感觉,甚至疼痛/31,32/。在这篇综述中,我们聚焦于对感觉可塑性潜在回路机制的最新见解,并讨论这些发现的潜在影响。然后我们展示生理学证据,支持在皮层水平观察到的可塑性过程可能反映许多皮层下结构同时发生变化的观点。

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