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皮质表征可塑性的突触机制:重组浣熊初级体感皮层中的体感和皮质-皮质兴奋性突触后电位

Synaptic mechanisms of cortical representational plasticity: somatosensory and corticocortical EPSPs in reorganized raccoon SI cortex.

作者信息

Zarzecki P, Witte S, Smits E, Gordon D C, Kirchberger P, Rasmusson D D

机构信息

Department of Physiology, Queen's University, Kingston, Ontario, Canada.

出版信息

J Neurophysiol. 1993 May;69(5):1422-32. doi: 10.1152/jn.1993.69.5.1422.

Abstract
  1. Reorganizations of representational maps have been described for a variety of sensory and motor regions of cerebral neocortex in several species. The purpose of this study was to investigate synaptic mechanisms of the reorganizations of primary somatosensory cortex that follow removal of a digit or the joining of two digits into a syndactyly. We examined neurons in the cortical representation of digit 4 (d4). Intracellular recording was used to compare somatosensory and corticocortical excitatory postsynaptic potentials (EPSPs) in normal raccoons, with EPSPs recorded in two experimental groups of animals surviving for a mean of 22 wk after removal of d4, or union of d4 with digit 3 (d3). 2. In normal animals with d4 intact, EPSPs were evoked from this on-focus digit in 100% of cortical neurons. EPSPs were evoked from d3 and digit 5 (off-focus digits) in only a minority of neurons in normal raccoons. The incidence of somatosensory EPSPs from off-focus digits increased dramatically after removal of d4 or its union with d3. Latencies of EPSPs evoked from off-focus digits decreased after d4 removal, so that they were as short as latencies from d4 in normal animals. In contrast, for the group of animals with d3-d4 syndactyly, latencies of EPSPs from off-focus digits were not shorter than responses from these digits in normal animals. 3. Corticocortical EPSPs were no more common in animals with d4 removed than in intact animals. Furthermore, corticocortical EPSPs after d4 removal did not differ in their latencies, amplitudes, half-widths, or integrated amplitudes. The only detected change was that corticocortical EPSPs had faster rising phases after removal of d4. In contrast, after d3-d4 syndactyly, corticocortical EPSPs were more common than in normal animals. 4. Digit removal and digital syndactyly had distinctive effects on somatosensory and corticocortical EPSPs. These results do not identify unique synaptic mechanisms for cortical representational plasticity, nor do they specify the involved CNS site(s). Several synaptic mechanisms consistent with the results are considered in the DISCUSSION, including synaptic proliferation to form new synaptic connections and enhanced effectiveness of existing corticocortical synapses.
摘要
  1. 已经在几个物种的大脑新皮层的多种感觉和运动区域中描述了表征图谱的重组。本研究的目的是调查在去除一个手指或将两个手指并指后初级体感皮层重组的突触机制。我们检查了手指4(d4)的皮层表征中的神经元。细胞内记录用于比较正常浣熊中体感和皮质皮质兴奋性突触后电位(EPSP),以及在去除d4或d4与手指3(d3)并指后平均存活22周的两个实验组动物中记录的EPSP。2. 在d4完整的正常动物中,100%的皮层神经元可从这个聚焦手指诱发EPSP。在正常浣熊中,只有少数神经元可从d3和手指5(非聚焦手指)诱发EPSP。去除d4或其与d3并指后,来自非聚焦手指的体感EPSP发生率显著增加。去除d4后,从非聚焦手指诱发的EPSP潜伏期缩短,使其与正常动物中来自d4的潜伏期一样短。相比之下,对于d3 - d4并指的动物组,来自非聚焦手指的EPSP潜伏期并不比正常动物中这些手指的反应短。3. 去除d4的动物中皮质皮质EPSP并不比完整动物中更常见。此外,去除d4后的皮质皮质EPSP在潜伏期、振幅、半高宽或积分振幅方面没有差异。唯一检测到的变化是去除d4后皮质皮质EPSP的上升相更快。相比之下,d3 - d4并指后,皮质皮质EPSP比正常动物中更常见。4. 手指去除和并指对体感和皮质皮质EPSP有独特影响。这些结果既没有确定皮质表征可塑性的独特突触机制,也没有指定所涉及的中枢神经系统部位。讨论中考虑了几种与结果一致的突触机制,包括突触增殖以形成新的突触连接和现有皮质皮质突触有效性的增强。

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