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成年猫头鹰猴在行为控制的触觉刺激后初级体感皮层的功能重组

Functional reorganization of primary somatosensory cortex in adult owl monkeys after behaviorally controlled tactile stimulation.

作者信息

Jenkins W M, Merzenich M M, Ochs M T, Allard T, Guíc-Robles E

机构信息

Coleman Laboratory, University of California, San Francisco 94143-0732.

出版信息

J Neurophysiol. 1990 Jan;63(1):82-104. doi: 10.1152/jn.1990.63.1.82.

Abstract
  1. Multiple microelectrode maps of the hand representation within and across the borders of cortical area 3b were obtained before, immediately after, or several weeks after a period of behaviorally controlled hand use. Owl monkeys were conditioned in a task that produced cutaneous stimulation of a limited sector of skin on the distal phalanges of one or more fingers. 2. Analysis of microelectrode mapping experiment data revealed that 1) stimulated skin surfaces were represented over expanded cortical areas. 2) Most of the cutaneous receptive fields recorded within these expanded cortical representational zones were unusually small. 3) The internal topography of representation of the stimulated and immediately surrounding skin surfaces differed greatly from that recorded in control experiments. Representational discontinuities emerged in this map region, and "hypercolumn" distances in this map sector were grossly abnormal. 4) Borders between the representations of individual digits and digit segments commonly shifted. 5) The functionally defined rostral border of area 3b shifted farther rostralward, manifesting either an expansion of the cutaneous area 3b fingertip representation into cortical field 3a or an emergence of a cutaneous input zone in the caudal aspect of this normally predominantly deep-receptor representational field. 6) Significant lateralward translocations of the borders between the representations of the hand and face were recorded in all cases. 7) The absolute locations--and in some cases the areas or magnifications--of representations of many skin surfaces not directly involved in the trained behavior also changed significantly. However, the most striking areal, positional, and topographic changes were related to the representations of the behaviorally stimulated skin in every studied monkey. 3. These experiments demonstrate that functional cortical remodeling of the S1 koniocortical field, area 3b, results from behavioral manipulations in normal adult owl monkeys. We hypothesize that these studies manifest operation of the basic adaptive cortical process(es) underlying cortical contributions to perception and learning.
摘要
  1. 在行为控制的手部使用期之前、之后立即或数周后,获取了皮质区3b边界内及边界处手部表征的多个微电极图谱。猫头鹰猴接受了一项任务训练,该任务会对一个或多个手指远端指骨上有限的皮肤区域产生皮肤刺激。2. 微电极图谱实验数据分析表明:1)受刺激的皮肤表面在扩大的皮质区域中得到表征。2)在这些扩大的皮质表征区域内记录到的大多数皮肤感受野异常小。3)受刺激皮肤表面及其紧邻周围皮肤表面的表征内部拓扑结构与对照实验中记录的有很大差异。在该图谱区域出现了表征不连续,并且该图谱扇区中的“超柱”距离严重异常。4)各个手指和手指节段表征之间的边界通常会发生移动。5)功能定义的3b区嘴侧边界向嘴侧进一步移动,这要么表现为3b区皮肤指尖表征向皮质区3a扩展,要么表现为在这个通常主要是深部感受器表征区域的尾侧出现一个皮肤输入区。6)在所有情况下都记录到了手部和面部表征之间边界的显著侧向移位。7)许多未直接参与训练行为的皮肤表面表征的绝对位置——在某些情况下还有面积或放大倍数——也发生了显著变化。然而,在每只研究的猴子中,最显著的面积、位置和拓扑变化都与行为刺激皮肤的表征有关。3. 这些实验表明,正常成年猫头鹰猴的行为操作会导致初级体感皮质(S1)颗粒皮质区3b的功能性皮质重塑。我们假设这些研究揭示了皮质对感知和学习做出贡献的基本适应性皮质过程的运作。

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