神经科学
感觉系统
光遗传学
电动机系统
生物
人口
计算机科学
社会学
人口学
作者
Han SJ Cheong,Kaitlyn Nicole Boone,Marryn M. Bennett,Farzaan Salman,Jacob D. Ralston,Hatch Kd,Raven F. Allen,Alec M. Phelps,Andrew Cook,Jasper S. Phelps,Mert Erginkaya,Wei-Chung Allen Lee,Gwyneth M Card,Kevin C. Daly,Andrew M. Dacks
出处
期刊:Current Biology
[Elsevier]
日期:2024-02-22
卷期号:34 (5): 1059-1075.e5
被引量:11
标识
DOI:10.1016/j.cub.2024.01.071
摘要
Natural behaviors are a coordinated symphony of motor acts that drive reafferent (self-induced) sensory activation. Individual sensors cannot disambiguate exafferent (externally induced) from reafferent sources. Nevertheless, animals readily differentiate between these sources of sensory signals to carry out adaptive behaviors through corollary discharge circuits (CDCs), which provide predictive motor signals from motor pathways to sensory processing and other motor pathways. Yet, how CDCs comprehensively integrate into the nervous system remains unexplored. Here, we use connectomics, neuroanatomical, physiological, and behavioral approaches to resolve the network architecture of two pairs of ascending histaminergic neurons (AHNs) in Drosophila, which function as a predictive CDC in other insects. Both AHN pairs receive input primarily from a partially overlapping population of descending neurons, especially from DNg02, which controls wing motor output. Using Ca
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