Wilkinson Katherine A
Department of Biological Sciences, San José State University, San Jose, CA, USA.
Curr Opin Physiol. 2021 Feb;19:135-140. doi: 10.1016/j.cophys.2020.10.002. Epub 2020 Oct 14.
The muscle spindle is an important sense organ for motor control and proprioception. Specialized intrafusal fibers are innervated by both stretch sensitive afferents and γ motor neurons that control the length of the spindle and tune the sensitivity of the muscle spindle afferents to both dynamic movement and static length. γ motor neurons share many similarities with other skeletal motor neurons, making it challenging to identify and specifically record or stimulate them. This short review will discuss recent advances in genetic and molecular biology techniques, electrophysiological recording, optical imaging, computer modelling, and stem cell culture techniques that have the potential to help answer important questions about fusimotor function in motor control and disease.
肌梭是运动控制和本体感觉的重要感觉器官。特殊的梭内肌纤维由对拉伸敏感的传入神经和γ运动神经元支配,γ运动神经元控制肌梭的长度,并调节肌梭传入神经对动态运动和静态长度的敏感性。γ运动神经元与其他骨骼肌运动神经元有许多相似之处,这使得识别并特异性记录或刺激它们具有挑战性。这篇简短的综述将讨论遗传和分子生物学技术、电生理记录、光学成像、计算机建模以及干细胞培养技术的最新进展,这些技术有可能帮助解答有关运动控制和疾病中梭外肌运动功能的重要问题。