Biozentrum, Department of Cell Biology, University of Basel, Basel 4056, Switzerland; Friedrich Miescher Institute for Biomedical Research, Basel 4058, Switzerland.
Biozentrum, Department of Cell Biology, University of Basel, Basel 4056, Switzerland; Friedrich Miescher Institute for Biomedical Research, Basel 4058, Switzerland.
Cell. 2014 Jan 30;156(3):537-48. doi: 10.1016/j.cell.2013.12.014.
Accurate motor-task execution relies on continuous comparison of planned and performed actions. Motor-output pathways establish internal circuit collaterals for this purpose. Here we focus on motor collateral organization between spinal cord and upstream neurons in the brainstem. We used a newly developed mouse genetic tool intersectionally with viruses to uncover the connectivity rules of these ascending pathways by capturing the transient expression of neuronal subpopulation determinants. We reveal a widespread and diverse network of spinal dual-axon neurons, with coincident input to forelimb motor neurons and the lateral reticular nucleus (LRN) in the brainstem. Spinal information to the LRN is not segregated by motor pool or neurotransmitter identity. Instead, it is organized according to the developmental domain origin of the progenitor cells. Thus, excerpts of most spinal information destined for action are relayed to supraspinal centers through exquisitely organized ascending connectivity modules, enabling precise communication between command and execution centers of movement.
准确的运动任务执行依赖于对计划动作和执行动作的持续比较。运动输出通路为此建立内部回路侧支。在这里,我们关注脊髓和脑干上游神经元之间的运动侧支组织。我们使用新开发的小鼠遗传工具与病毒交叉,通过捕获神经元亚群决定因素的瞬时表达来揭示这些上行通路的连接规则。我们揭示了一个广泛而多样的脊髓双轴突神经元网络,与前肢运动神经元和脑干中的外侧网状核 (LRN) 有一致的输入。脊髓向 LRN 的信息不是根据运动池或神经递质身份进行分离的。相反,它是根据祖细胞的发育域起源组织的。因此,大多数 destined for action 的脊髓信息片段通过精心组织的上行连接模块传递到皮质中枢,从而使运动的命令和执行中心之间能够进行精确的通信。