Mathews Miranda A, Camp Aaron J, Murray Andrew J
Sensory Systems and Integration Laboratory, Bosch Institute, Discipline of Biomedical Science, University of SydneySydney, NSW, Australia.
Sainsbury Wellcome Centre for Neural Circuits and Behaviour, University College LondonLondon, United Kingdom.
Front Physiol. 2017 Aug 2;8:552. doi: 10.3389/fphys.2017.00552. eCollection 2017.
Efferent circuits within the nervous system carry nerve impulses from the central nervous system to sensory end organs. Vestibular efferents originate in the brainstem and terminate on hair cells and primary afferent fibers in the semicircular canals and otolith organs within the inner ear. The function of this efferent vestibular system (EVS) in vestibular and motor coordination though, has proven difficult to determine, and remains under debate. We consider current literature that implicate corollary discharge from the spinal cord through the efferent vestibular nucleus (EVN), and hint at a potential role in overall vestibular plasticity and compensation. Hypotheses range from differentiating between passive and active movements at the level of vestibular afferents, to EVS activation under specific behavioral and environmental contexts such as arousal, predation, and locomotion. In this review, we summarize current knowledge of EVS circuitry, its effects on vestibular hair cell and primary afferent activity, and discuss its potential functional roles.
神经系统内的传出回路将神经冲动从中枢神经系统传导至感觉末梢器官。前庭传出神经起源于脑干,终止于内耳半规管和耳石器官中的毛细胞及初级传入纤维。然而,这个传出前庭系统(EVS)在前庭和运动协调中的功能已被证明难以确定,仍存在争议。我们考量了当前的文献,这些文献表明脊髓通过传出前庭核(EVN)进行的伴随放电,并暗示其在整体前庭可塑性和代偿中可能发挥的作用。假说范围从在前庭传入水平区分被动和主动运动,到在诸如觉醒、捕食和运动等特定行为和环境背景下EVS的激活。在这篇综述中,我们总结了关于EVS回路的当前知识、其对前庭毛细胞和初级传入活动的影响,并讨论了其潜在的功能作用。