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路径模式化作为脊椎动物运动神经回路中的一种组织原则。

Hodological patterning as an organizing principle in vertebrate motor circuitry.

作者信息

Glover Joel C

机构信息

Department of Molecular Medicine, Institute of Basic Medical Sciences, University of Oslo, Oslo, Norway.

出版信息

Front Neuroanat. 2025 Jan 8;18:1510944. doi: 10.3389/fnana.2024.1510944. eCollection 2024.

Abstract

Hodological patterning refers to developmental mechanisms that link the location of neurons in the brain or spinal cord to specific axonal trajectories that direct connectivity to synaptic targets either within the central nervous system or in the periphery. In vertebrate motor circuits, hodological patterning has been demonstrated at different levels, from the final motor output of somatic and preganglionic autonomic neurons targeting peripheral motoneurons and ganglion cells, to premotor inputs from spinal and brainstem neuron populations targeting the somatic motoneurons and preganglionic autonomic neurons, to cortical neurons that delegate movement commands to the brainstem and spinal neurons. In many cases molecular profiling reveals potential underlying mechanisms whereby selective gene expression creates the link between location and axon trajectory. At the cortical level, somatotopic organization suggests a potential underlying hodological patterning, but this has not been proven. This review describes examples of hodological patterning in motor circuits and covers current knowledge about how this patterning arises.

摘要

路径模式化是指将大脑或脊髓中神经元的位置与特定轴突轨迹联系起来的发育机制,这些轴突轨迹指导中枢神经系统内或外周与突触靶点的连接。在脊椎动物的运动回路中,路径模式化已在不同层面得到证实,从靶向外周运动神经元和神经节细胞的躯体和节前自主神经元的最终运动输出,到靶向躯体运动神经元和节前自主神经元的脊髓和脑干神经元群体的运动前输入,再到将运动指令传递给脑干和脊髓神经元的皮质神经元。在许多情况下,分子谱分析揭示了潜在的机制,即选择性基因表达在位置和轴突轨迹之间建立联系。在皮质层面,躯体定位组织提示了潜在的路径模式化,但尚未得到证实。本综述描述了运动回路中路径模式化的例子,并涵盖了关于这种模式化如何产生的当前知识。

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