Cullen Kathleen E, Wei Rui-Han
Department of Biomedical Engineering, Johns Hopkins University, Baltimore, MD, United States.
Department of Otolaryngology, Johns Hopkins University School of Medicine, Baltimore, MD, United States.
Front Neurosci. 2021 Jun 23;15:684800. doi: 10.3389/fnins.2021.684800. eCollection 2021.
The role of the mammalian vestibular efferent system in everyday life has been a long-standing mystery. In contrast to what has been reported in lower vertebrate classes, the mammalian vestibular efferent system does not appear to relay inputs from other sensory modalities to the vestibular periphery. Furthermore, to date, the available evidence indicates that the mammalian vestibular efferent system does not relay motor-related signals to the vestibular periphery to modulate sensory coding of the voluntary self-motion generated during natural behaviors. Indeed, our recent neurophysiological studies have provided insight into how the peripheral vestibular system transmits head movement-related information to the brain in a context independent manner. The integration of vestibular and extra-vestibular information instead only occurs at next stage of the mammalian vestibular system, at the level of the vestibular nuclei. The question thus arises: what is the physiological role of the vestibular efferent system in mammals? We suggest that the mammalian vestibular efferent system does not play a significant role in short-term modulation of afferent coding, but instead plays a vital role over a longer time course, for example in calibrating and protecting the functional efficacy of vestibular circuits during development and aging in a role analogous the auditory efferent system.
哺乳动物前庭传出系统在日常生活中的作用一直是个长期存在的谜团。与低等脊椎动物类群中所报道的情况不同,哺乳动物前庭传出系统似乎并未将来自其他感觉模态的输入传递至前庭外周。此外,迄今为止,现有证据表明,哺乳动物前庭传出系统并未将与运动相关的信号传递至前庭外周,以调节自然行为过程中产生的自主自我运动的感觉编码。事实上,我们最近的神经生理学研究已经深入了解了外周前庭系统如何以上下文无关的方式将头部运动相关信息传递至大脑。前庭信息与前庭外信息的整合仅发生在哺乳动物前庭系统的下一阶段,即前庭核水平。因此问题出现了:哺乳动物前庭传出系统的生理作用是什么?我们认为,哺乳动物前庭传出系统在传入编码的短期调制中并不起重要作用,而是在更长的时间进程中发挥至关重要的作用,例如在发育和衰老过程中校准和保护前庭回路的功能效能,其作用类似于听觉传出系统。