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科学家绘制出前肢运动阶段在大脑皮层和延髓之间的结构和功能图谱
作者:小柯机器人 发布时间:2023/1/8 16:25:00

瑞士巴塞尔大学Silvia Arber研究团队绘制出前肢运动阶段在大脑皮层和延髓之间的结构和功能图谱。相关论文于2023年1月5日发表在《细胞》杂志上。

研究人员揭示了小鼠前皮层(AC)和延髓之间精细的解剖和功能图谱。不同的皮层区域产生三维突触列,覆盖侧髓,在位置上与突触后神经元的背腹位置相匹配,调谐到不同的前肢动作阶段。虽然内侧AC(MAC)终止于腹侧,并与前肢伸长调谐的神经元相连,其沉默会损害伸长,但外侧AC(LAC)影响背侧定位的食物处理调谐的神经元,其沉默会损害处理。皮层髓质神经元还通过分离的通道相互作用逻辑将串联延伸到其他皮层下结构。这些研究结果揭示了皮层位置、其功能和特定的前肢行动调谐髓质神经元之间的精确排列,从而阐明了这两个关键结构之间及其他方面的相互作用原则。
 
据介绍,大脑皮层通过对许多神经系统区域广泛的自上而下投射来影响运动。熟练的前肢运动需要延髓的脑干回路;然而,皮层与这些神经元相互作用的逻辑仍未得到探索。
 
附:英文原文

Title: Structural and functional map for forelimb movement phases between cortex and medulla

Author: Wuzhou Yang, Harsh Kanodia, Silvia Arber

Issue&Volume: 2023/01/05

Abstract: The cortex influences movement by widespread top-down projections to many nervous system regions. Skilled forelimb movements require brainstem circuitry in the medulla; however, the logic of cortical interactions with these neurons remains unexplored. Here, we reveal a fine-grained anatomical and functional map between anterior cortex (AC) and medulla in mice. Distinct cortical regions generate three-dimensional synaptic columns tiling the lateral medulla, topographically matching the dorso-ventral positions of postsynaptic neurons tuned to distinct forelimb action phases. Although medial AC (MAC) terminates ventrally and connects to forelimb-reaching-tuned neurons and its silencing impairs reaching, lateral AC (LAC) influences dorsally positioned neurons tuned to food handling, and its silencing impairs handling. Cortico-medullary neurons also extend collaterals to other subcortical structures through a segregated channel interaction logic. Our findings reveal a precise alignment between cortical location, its function, and specific forelimb-action-tuned medulla neurons, thereby clarifying interaction principles between these two key structures and beyond.

DOI: 10.1016/j.cell.2022.12.009

Source: https://www.cell.com/cell/fulltext/S0092-8674(22)01522-7

期刊信息
Cell:《细胞》,创刊于1974年。隶属于细胞出版社,最新IF:66.85
官方网址:https://www.cell.com/