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Efferent-Mediated Responses in Vestibular Nerve Afferents of the Alert Macaque

机译:猕猴前庭神经传入神经传出介导的反应

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摘要

The peripheral vestibular organs have long been known to receive a bilateral efferent innervation from the brain stem. However, the functional role of the efferent vestibular system has remained elusive. In this study, we investigated efferent-mediated responses in vestibular afferents of alert behaving primates (macaque monkey). We found that efferent-mediated rotational responses could be obtained from vestibular nerve fibers innervating the semicircular canals after conventional afferent responses were nulled by placing the corresponding canal plane orthogonal to the plane of motion. Responses were type III, i.e., excitatory for rotational velocity trapezoids (peak velocity, 320°/s) in both directions of rotation, consistent with those previously reported in the decerebrate chinchilla. Responses consisted of both fast and slow components and were larger in irregular (∼10 spikes/s) than in regular afferents (∼2 spikes/s). Following unilateral labyrinthectomy (UL) on the side opposite the recording site, similar responses were obtained. To confirm the vestibular source of the efferent-mediated responses, the ipsilateral horizontal and posterior canals were plugged following the UL. Responses to high-velocity rotations were drastically reduced when the superior canal (SC), the only intact canal, was in its null position, compared with when the SC was pitched 50° upward from the null position. Our findings show that vestibular afferents in alert primates show efferent-mediated responses that are related to the discharge regularity of the afferent, are of vestibular origin, and can be the result of both afferent excitation and inhibition.
机译:早就知道周围的前庭器官会从脑干接受双侧传出的神经支配。然而,传出的前庭系统的功能作用仍然难以捉摸。在这项研究中,我们调查了灵长类灵长类动物(猕猴)前庭传入的传出介导的反应。我们发现传出介导的旋转反应可通过常规的传入反应通过垂直于运动平面放置相应的导管平面无效而从神经支配半圆管的前庭神经纤维获得。响应为III型,即在两个旋转方向上都对梯形旋转速度(峰值速度,320°/ s)具有兴奋性,与先前在小脑龙猫中报道的一致。响应包括快速和慢速响应,不规则响应(〜10峰值/秒)比常规传入响应(〜2峰值/秒)更大。在与记录部位相对的一侧进行单侧迷路切除术(UL)后,获得了类似的反应。为了确认传出的反应的前庭来源,在UL之后插入同侧水平管和后管。当唯一的完整运河上运河(SC)位于其零位时,与SC从零位向上倾斜50°时相比,对高速旋转的反应大大降低。我们的发现表明,灵长类灵长类动物的前庭传入显示出与传出的放电规律相关的传出介导的反应,属于前庭起源,并且可能是传入激发和抑制的结果。

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