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动还是不动?肢体固定时运动前皮质腹侧在运动监测中的功能作用。

To Move or Not to Move? Functional Role of Ventral Premotor Cortex in Motor Monitoring During Limb Immobilization.

机构信息

Psychology Department, University of Turin, Turin, Italy.

MoMiLab, IMT School for Advanced Studies Lucca, Lucca, Italy.

出版信息

Cereb Cortex. 2019 Jan 1;29(1):273-282. doi: 10.1093/cercor/bhy134.

DOI:10.1093/cercor/bhy134
PMID:29893773
Abstract

Anatomo-clinical evidence from motor-awareness disorders after brain-damages suggests that the premotor cortex (PMC) is involved in motor-monitoring of voluntary actions. Indeed, PMC lesions prevent patients from detecting the mismatch between intended, but not executed, movements with the paralyzed limb. This functional magnetic resonance imaging study compared, in healthy subjects, free movements against blocked movements, precluded by a cast. Cast-related corticospinal excitability changes were investigated by using transcranial magnetic stimulation. Immediately after the immobilization, when the cast prevented the execution of left-hand movements, the contralateral right (ventral) vPMC showed both increased hemodynamic activity and increased functional connectivity with the hand area in the right somatosensory cortex, suggesting a vPMC involvement in detecting the mismatch between planned and executed movements. Crucially, after 1 week of immobilization, when the motor system had likely learned that no movement could be executed and, therefore, predictions about motor consequences were changed, vPMC did not show the enhanced activity as if no incongruence has to be detected. This can be interpreted as a consequence of the plastic changes induced by long-lasting immobilization, as also proved by the cast-related corticospinal excitability modulation in our subjects. The present findings highlight the crucial role of vPMC in the anatomo-functional network generating the human motor-awareness.

摘要

脑损伤后运动意识障碍的解剖-临床证据表明,运动前皮质(PMC)参与了对自愿运动的运动监测。事实上,PMC 损伤使患者无法检测到与瘫痪肢体的意图但未执行的运动之间的不匹配。这项功能磁共振成像研究在健康受试者中比较了自由运动与被石膏固定所阻止的运动,石膏固定限制了左手的运动。通过经颅磁刺激研究了与石膏相关的皮质脊髓兴奋性变化。在固定后的立即阶段,当石膏阻止了左手的运动时,对侧右侧(腹侧)PMCv 显示出更高的血流动力学活动和与右侧体感皮层手部区域的更高功能连接性,表明 PMCv 参与了检测计划和执行运动之间的不匹配。至关重要的是,在固定 1 周后,运动系统可能已经学会了无法进行运动,因此对运动后果的预测发生了变化,PMCv 没有表现出增强的活动,就好像没有必须要检测到不匹配一样。这可以解释为长期固定引起的可塑性变化的结果,这也被我们的研究对象中与石膏相关的皮质脊髓兴奋性调制所证明。本研究结果强调了 PMCv 在产生人类运动意识的解剖-功能网络中的关键作用。

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