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成年猴子初级体感皮层的可塑性与中风后感觉运动技能的恢复平行。

Plasticity of primary somatosensory cortex paralleling sensorimotor skill recovery from stroke in adult monkeys.

作者信息

Xerri C, Merzenich M M, Peterson B E, Jenkins W

机构信息

Keck Center and Coleman Laboratory, University of California at San Francisco, San Francisco, California 94143-0732, USA.

出版信息

J Neurophysiol. 1998 Apr;79(4):2119-48. doi: 10.1152/jn.1998.79.4.2119.

Abstract

Adult owl and squirrel monkeys were trained to master a small-object retrieval sensorimotor skill. Behavioral observations along with positive changes in the cortical area 3b representations of specific skin surfaces implicated specific glabrous finger inputs as important contributors to skill acquisition. The area 3b zones over which behaviorally important surfaces were represented were destroyed by microlesions, which resulted in a degradation of movements that had been developed in the earlier skill acquisition. Monkeys were then retrained at the same behavioral task. They could initially perform it reasonably well using the stereotyped movements that they had learned in prelesion training, although they acted as if key finger surfaces were insensate. However, monkeys soon initiated alternative strategies for small object retrieval that resulted in a performance drop. Over several- to many-week-long period, monkeys again used the fingers for object retrieval that had been used successfully before the lesion, and reacquired the sensorimotor skill. Detailed maps of the representations of the hands in SI somatosensory cortical fields 3b, 3a, and 1 were derived after postlesion functional recovery. Control maps were derived in the same hemispheres before lesions, and in opposite hemispheres. Among other findings, these studies revealed the following 1) there was a postlesion reemergence of the representation of the fingertips engaged in the behavior in novel locations in area 3b in two of five monkeys and a less substantial change in the representation of the hand in the intact parts of area 3b in three of five monkeys. 2) There was a striking emergence of a new representation of the cutaneous fingertips in area 3a in four of five monkeys, predominantly within zones that had formerly been excited only by proprioceptive inputs. This new cutaneous fingertip representation disproportionately represented behaviorally crucial fingertips. 3) There was an approximately two times enlargement of the representation of the fingers recorded in cortical area 1 in postlesion monkeys. The specific finger surfaces employed in small-object retrieval were differentially enlarged in representation. 4) Multiple-digit receptive fields were recorded at a majority of emergent, cutaneous area 3a sites in all monkeys and at a substantial number of area 1 sites in three of five postlesion monkeys. Such fields were uncommon in area 1 in control maps. 5) Single receptive fields and the component fields of multiple-digit fields in postlesion representations were within normal receptive field size ranges. 6) No significant changes were recorded in the SI hand representations in the opposite (untrained, intact) control hemisphere. These findings are consistent with "substitution" and "vicariation" (adaptive plasticity) models of recovery from brain damage and stroke.

摘要

成年猫头鹰猴和松鼠猴被训练掌握一项小型物体抓取的感觉运动技能。行为观察以及特定皮肤表面在皮层3b区表征的积极变化表明,特定无毛手指的输入是技能习得的重要因素。对行为上重要的皮肤表面进行表征的3b区被微损伤破坏,这导致了在早期技能习得中发展起来的动作退化。然后让猴子重新训练相同的行为任务。它们最初可以使用在损伤前训练中学到的刻板动作相当好地完成任务,尽管它们表现得好像关键手指表面没有感觉一样。然而,猴子很快就开始采用其他小型物体抓取策略,这导致了表现下降。在长达数周甚至数月的时间里,猴子再次使用损伤前成功使用过的手指进行物体抓取,并重新获得了感觉运动技能。在损伤后功能恢复后,绘制了体感皮层1区、3a区和3b区手部表征的详细图谱。对照图谱是在损伤前同一半球以及对侧半球绘制的。除其他发现外,这些研究还揭示了以下几点:1)在五只猴子中的两只中,参与行为的指尖表征在3b区的新位置出现了损伤后重新出现的情况,而在五只猴子中的三只中,3b区完整部分手部表征的变化较小。2)在五只猴子中的四只中,3a区出现了显著的新的皮肤指尖表征,主要出现在以前仅由本体感觉输入激发的区域内。这种新的皮肤指尖表征不成比例地代表了行为上关键的指尖。3)损伤后猴子的皮层1区记录到的手指表征大约扩大了两倍。小型物体抓取中使用的特定手指表面在表征上有差异地扩大。4)在所有猴子的大多数新出现的皮肤3a区位点以及五只损伤后猴子中的三只的大量1区位点记录到了多位感受野。在对照图谱的1区中,这种感受野并不常见。5)损伤后表征中的单个感受野和多位感受野的组成部分在正常感受野大小范围内。6)在对侧(未训练、完整)对照半球的体感皮层手部表征中未记录到显著变化。这些发现与脑损伤和中风恢复的“替代”和“变异”(适应性可塑性)模型一致。

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