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犬在自然及学习性姿势重新调整并伴有肢体抬高过程中的体感诱发电位

Somatosensory evoked potentials during natural and learning rearrangements of posture accompanied by limb elevation in dogs.

作者信息

Gavrilenko T, Frolov A G, Ioffe M E, Ganchev G N, Aleksandrov A V, Pavlova O G

机构信息

Institute of Higher Nervous Activity and Neurophysiology, Russian Academy of Sciences, Moscow.

出版信息

Neurosci Behav Physiol. 2002 Nov-Dec;32(6):617-24. doi: 10.1023/a:1020461728429.

Abstract

Changes in the functional state of the sensorimotor cortex associated with reorganization of the natural pattern of postural rearrangement before limb elevation (the "diagonal" patten and of an artificial rearrangement (the "unilateral" pattern) were studied in dogs. The state of cortical structures on postural rearrangement was assessed in terms of the pattern of somatosensory evoked potentials produced in response to stimulation of the forelimb during postural preparation of the animal for elevating the hindlimb (acquired avoidance response to a sound signal). Evoked potentials during the natural postural preparation (the "diagonal" pattern) were compared with those during the altered pattern of postural preparation (the "unilateral" pattern), this preparation taking place prior to elevation of the limb. Controls consisted of evoked potentials in the resting state. Decreases were seen in the latencies and amplitudes of most components of evoked potentials during postural rearrangement. In general, changes in evoked potentials were less marked in the "unilateral" pattern than in the "diagonal" pattern, though the differences were significant only for the amplitude of the first negative component. Changes in evoked potentials were similar regardless of whether the supporting forces of the limb to which the test stimulus was applied increased or decreased during postural rearrangement. It is suggested that differences in evoked potentials may reflect changes in the interaction between neuronal populations within the sensorimotor cortex during reorganization of the pattern of postural rearrangement associated with learning.

摘要

在犬类中研究了与肢体抬高前姿势重新排列的自然模式(“对角线”模式)和人工重新排列(“单侧”模式)重组相关的感觉运动皮层功能状态的变化。根据在动物准备抬高后肢(对声音信号的习得性回避反应)期间,对前肢进行刺激时产生的体感诱发电位模式,评估姿势重新排列时皮层结构的状态。将自然姿势准备(“对角线”模式)期间的诱发电位与姿势准备改变模式(“单侧”模式)期间的诱发电位进行比较,这种准备在肢体抬高之前进行。对照组为静息状态下的诱发电位。姿势重新排列期间,诱发电位大多数成分的潜伏期和波幅均降低。总体而言,“单侧”模式下诱发电位的变化比“对角线”模式下的变化不太明显,不过差异仅在第一个负向成分的波幅方面具有显著性。无论在姿势重新排列期间施加测试刺激的肢体支撑力是增加还是减少,诱发电位的变化都是相似的。这表明诱发电位的差异可能反映了与学习相关的姿势重新排列模式重组期间,感觉运动皮层内神经元群体之间相互作用的变化。

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