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……中定向转向背后的神经序列

Neural Sequences Underlying Directed Turning in .

作者信息

Kramer Talya S, Wan Flossie K, Pugliese Sarah M, Atanas Adam A, Hiser Alex W, Luo Jinyue, Bueno Eric, Flavell Steven W

机构信息

Picower Institute for Learning & Memory, Department of Brain & Cognitive Sciences, Massachusetts Institute of Technology, Cambridge, MA, USA.

MIT Biology Graduate Program, Massachusetts Institute of Technology, Cambridge, MA, USA.

出版信息

bioRxiv. 2024 Aug 11:2024.08.11.607076. doi: 10.1101/2024.08.11.607076.

Abstract

Complex behaviors like navigation rely on sequenced motor outputs that combine to generate effective movement. The brain-wide organization of the circuits that integrate sensory signals to select and execute appropriate motor sequences is not well understood. Here, we characterize the architecture of neural circuits that control olfactory navigation. We identify error-correcting turns during navigation and use whole-brain calcium imaging and cell-specific perturbations to determine their neural underpinnings. These turns occur as motor sequences accompanied by neural sequences, in which defined neurons activate in a stereotyped order during each turn. Distinct neurons in this sequence respond to sensory cues, anticipate upcoming turn directions, and drive movement, linking key features of this sensorimotor behavior across time. The neuromodulator tyramine coordinates these sequential brain dynamics. Our results illustrate how neuromodulation can act on a defined neural architecture to generate sequential patterns of activity that link sensory cues to motor actions.

摘要

像导航这样的复杂行为依赖于一系列运动输出,这些输出组合起来以产生有效的运动。将感官信号整合起来以选择并执行适当运动序列的全脑范围的神经回路组织尚未得到充分理解。在这里,我们描述了控制嗅觉导航的神经回路结构。我们识别出导航过程中的纠错转向,并使用全脑钙成像和细胞特异性扰动来确定其神经基础。这些转向作为伴有神经序列的运动序列发生,其中特定的神经元在每次转向期间以固定的顺序激活。这个序列中的不同神经元对感官线索做出反应,预测即将到来的转向方向,并驱动运动,在不同时间点将这种感觉运动行为的关键特征联系起来。神经调质酪胺协调这些连续的脑动力学。我们的结果说明了神经调节如何作用于特定的神经结构,以产生将感官线索与运动动作联系起来的连续活动模式。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/1eca/11326294/87112c2bb98e/nihpp-2024.08.11.607076v1-f0001.jpg

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