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猴子体感皮层对因冷却而暂时受损的运动皮层的代偿性运动功能。

Compensatory motor function of the somatosensory cortex for the motor cortex temporarily impaired by cooling in the monkey.

作者信息

Sasaki K, Gemba H

出版信息

Exp Brain Res. 1984;55(1):60-8. doi: 10.1007/BF00240498.

Abstract

The motor cortex was temporarily impaired by local cooling during repeated execution of visually initiated hand movements in monkeys. The effects of cooling were examined by recording premovement cortical field potentials in the forelimb motor and somatosensory cortices and by measuring reaction time and force exerted by the movement. The cortex was cooled by perfusing cold water (about 1 degree C) through a metal chamber placed on the cortical epidural surface. Cooling of the forelimb motor area lowered temperature of the cortex under the chamber to 20-29 degrees C within 4-5 min. Recording electrodes for cortical field potentials were implanted chronically on the surface and at 2.5-3.0 mm depth of various cortical areas including that being cooled. Spread of cooling to surrounding cortical areas was prevented by placing chambers perfused with warm water (38-39 degrees C) on the areas. Cooling of the forelimb motor area greatly reduced its premovement cortical field potentials, followed by prolonged reaction times of weakened contralateral wrist muscles. Simultaneous recording from the primary somatosensory cortex revealed an enhancement of its premovement field potentials. All changes were completely reversible by rewarming of the motor cortex. Concomitant cooling of the motor and somatosensory cortices entirely paralysed the contralateral wrist muscles. These results suggest that the motor function of the somatosensory cortex becomes predominant and compensates for dysfunction of the motor cortex when it is temporarily impaired.

摘要

在猴子反复执行视觉引发的手部动作过程中,通过局部冷却使运动皮层暂时受损。通过记录前肢运动皮层和体感皮层的运动前皮层场电位,并测量运动反应时间和运动施加的力,来研究冷却的影响。通过将冷水(约1摄氏度)灌注到置于皮层硬膜外表面的金属腔室来冷却皮层。前肢运动区的冷却在4 - 5分钟内将腔室下方皮层的温度降至20 - 29摄氏度。用于皮层场电位记录的电极长期植入包括正在冷却区域在内的各个皮层区域的表面和2.5 - 3.0毫米深度处。通过在周围区域放置灌注温水(38 - 39摄氏度)的腔室,防止冷却扩散到周围皮层区域。前肢运动区的冷却极大地降低了其运动前皮层场电位,随后对侧腕部肌肉的反应时间延长且力量减弱。同时记录初级体感皮层发现其运动前场电位增强。运动皮层复温后,所有变化完全可逆。运动皮层和体感皮层同时冷却会使对侧腕部肌肉完全麻痹。这些结果表明,当运动皮层暂时受损时,体感皮层的运动功能占主导并补偿运动皮层的功能障碍。

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