神经科学
生物
神经元回路
功能(生物学)
运动功能
电动机控制
电动机系统
计算机科学
进化生物学
医学
物理医学与康复
作者
Paschalis Kratsios,Niccolò Zampieri,Robert A. Carrillo,Kota Mizumoto,Lora B. Sweeney,Polyxeni Philippidou
标识
DOI:10.1523/jneurosci.1238-24.2024
摘要
Motor circuits represent the main output of the central nervous system and produce dynamic behaviors ranging from relatively simple rhythmic activities like swimming in fish and breathing in mammals to highly sophisticated dexterous movements in humans. Despite decades of research, the development and function of motor circuits remain poorly understood. Breakthroughs in the field recently provided new tools and tractable model systems that set the stage to discover the molecular mechanisms and circuit logic underlying motor control. Here, we describe recent advances from both vertebrate (mouse, frog) and invertebrate (nematode, fruit fly) systems on cellular and molecular mechanisms that enable motor circuits to develop and function and highlight conserved and divergent mechanisms necessary for motor circuit development.
科研通智能强力驱动
Strongly Powered by AbleSci AI