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来自运动皮层和体感皮层的皮质脊髓神经元在运动学习过程中表现出不同的时间活动动态。

Corticospinal neurons from motor and somatosensory cortices exhibit different temporal activity dynamics during motor learning.

作者信息

Macías Martín, Lopez-Virgen Verónica, Olivares-Moreno Rafael, Rojas-Piloni Gerardo

机构信息

Instituto de Neurobiología, Universidad Nacional Autónoma de México, Querétaro, Mexico.

出版信息

Front Hum Neurosci. 2022 Nov 25;16:1043501. doi: 10.3389/fnhum.2022.1043501. eCollection 2022.

Abstract

The ability to learn motor skills implicates an improvement in accuracy, speed and consistency of movements. Motor control is related to movement execution and involves corticospinal neurons (CSp), which are broadly distributed in layer 5B of the motor and somatosensory cortices. CSp neurons innervate the spinal cord and are functionally diverse. However, whether CSp activity differs between different cortical areas throughout motor learning has been poorly explored. Given the importance and interaction between primary motor (M1) and somatosensory (S1) cortices related to movement, we examined the functional roles of CSp neurons in both areas. We induced the expression of GCaMP7s calcium indicator to perform photometric calcium recordings from layer 5B CSp neurons simultaneously in M1 and S1 cortices and track their activity while adult mice learned and performed a cued lever-press task. We found that during early learning sessions, the population calcium activity of CSp neurons in both cortices during movement did not change significantly. In late learning sessions the peak amplitude and duration of calcium activity CSp neurons increased in both, M1 and S1 cortices. However, S1 and M1 CSp neurons display a different temporal dynamic during movements that occurred when animals learned the task; both M1 and S1 CSp neurons activate before movement initiation, however, M1 CSp neurons continue active during movement performance, reinforcing the idea of the diversity of the CSp system and suggesting that CSp neuron activity in M1 and S1 cortices throughout motor learning have different functional roles for sensorimotor integration.

摘要

学习运动技能的能力意味着运动的准确性、速度和一致性得到提高。运动控制与运动执行相关,涉及皮质脊髓神经元(CSp),这些神经元广泛分布在运动和体感皮层的5B层。CSp神经元支配脊髓且功能多样。然而,在整个运动学习过程中,不同皮质区域之间的CSp活动是否存在差异,目前尚未得到充分研究。鉴于初级运动皮层(M1)和体感皮层(S1)之间与运动相关的重要性和相互作用,我们研究了这两个区域中CSp神经元的功能作用。我们诱导GCaMP7s钙指示剂的表达,以便在成年小鼠学习并执行线索杠杆按压任务时,同时对M1和S1皮层的5B层CSp神经元进行光度钙记录,并追踪它们的活动。我们发现,在早期学习阶段,运动期间两个皮层中CSp神经元的群体钙活动没有显著变化。在后期学习阶段,M1和S1皮层中CSp神经元钙活动的峰值幅度和持续时间均增加。然而,在动物学习任务时发生的运动过程中,S1和M1的CSp神经元表现出不同的时间动态;M1和S1的CSp神经元在运动开始前都会激活,然而,M1的CSp神经元在运动执行过程中持续活跃,这强化了CSp系统多样性的观点,并表明在整个运动学习过程中,M1和S1皮层中的CSp神经元活动在感觉运动整合方面具有不同的功能作用。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/796f/9732016/46f5a8b85c3a/fnhum-16-1043501-g001.jpg

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