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多功能运动神经元及其周围回路的解剖结构和活动模式。

Anatomy and activity patterns in a multifunctional motor neuron and its surrounding circuits.

机构信息

Division of Biology and Biological Engineering, California Institute of Technology, Pasadena, United States.

Division of Biological Sciences, University of California, San Diego, San Diego, United States.

出版信息

Elife. 2021 Feb 15;10:e61881. doi: 10.7554/eLife.61881.

Abstract

Dorsal Excitor motor neuron DE-3 in the medicinal leech plays three very different dynamical roles in three different behaviors. Without rewiring its anatomical connectivity, how can a motor neuron dynamically switch roles to play appropriate roles in various behaviors? We previously used voltage-sensitive dye imaging to record from DE-3 and most other neurons in the leech segmental ganglion during (fictive) swimming, crawling, and local-bend escape (Tomina and Wagenaar, 2017). Here, we repeated that experiment, then re-imaged the same ganglion using serial blockface electron microscopy and traced DE-3's processes. Further, we traced back the processes of DE-3's presynaptic partners to their respective somata. This allowed us to analyze the relationship between circuit anatomy and the activity patterns it sustains. We found that input synapses important for all the behaviors were widely distributed over DE-3's branches, yet that functional clusters were different during (fictive) swimming vs. crawling.

摘要

在医用水蛭中,背侧激发运动神经元 DE-3 在三种不同的行为中扮演着三种非常不同的动态角色。在不改变其解剖连接的情况下,一个运动神经元如何动态切换角色,在各种行为中发挥适当的作用?我们之前使用电压敏感染料成像技术,在(虚拟)游泳、爬行和局部弯曲逃逸期间,记录医用水蛭的节段性神经节中的 DE-3 和大多数其他神经元(Tomina 和 Wagenaar,2017)。在这里,我们重复了这个实验,然后使用连续块面电子显微镜对同一神经节进行重新成像,并追踪 DE-3 的过程。此外,我们还追踪了 DE-3 的突触前伙伴的过程,直到它们各自的体。这使我们能够分析电路解剖结构与它维持的活动模式之间的关系。我们发现,所有行为都很重要的输入突触广泛分布在 DE-3 的分支上,但在(虚拟)游泳和爬行期间,功能簇是不同的。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/1072/7954528/674af7af2846/elife-61881-fig1.jpg

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