Cullen Kathleen E, Minor Lloyd B
Aerospace Medical Research Unit, Department of Physiology, McGill University, Montreal, Quebec, Canada H3G 1Y6.
J Neurosci. 2002 Jun 1;22(11):RC226. doi: 10.1523/JNEUROSCI.22-11-j0002.2002. Epub 2002 May 23.
The vestibular receptors in the labyrinth receive innervation from centrifugally projecting efferent fibers. The influence of these efferents on information processing by vestibular afferents in primates has not been determined. One commonly held notion is that efferent activation during large-amplitude, active head movements would result in an increase in the resting discharge rate and in a reduction of the rotational sensitivity of afferents. Such an effect would increase the dynamic range of afferents involved in the encoding of head movements. To test this hypothesis, we recorded from afferents innervating the semicircular canals in alert macaques during passive head-on-body rotations and during active head movements that included gaze shifts and gaze pursuit. Extracellular, single-unit recordings were obtained from 24 afferent fibers innervating the horizontal, superior, and posterior canals. Based on the normalized coefficient of variation of the interspike interval for these units, our sample contained six regularly discharging, six intermediate, and 12 irregularly discharging afferents. Responses were analyzed using a least squares regression to determine the bias discharge rate of each unit and sensitivity to head velocity and acceleration. We found no difference in bias discharge rate or rotational sensitivity of the afferent responses for the different stimulus conditions tested. Our results indicate that semicircular canal afferents encode information about head rotation similarly for self generated and passively applied head-on-body movements.
内耳迷路中的前庭感受器接受离心投射的传出纤维的支配。这些传出纤维对灵长类动物前庭传入神经信息处理的影响尚未确定。一个普遍的观点是,在大幅度主动头部运动期间传出神经激活会导致静息放电率增加以及传入神经的旋转敏感性降低。这样的效应会增加参与头部运动编码的传入神经的动态范围。为了验证这一假设,我们在清醒猕猴进行被动头身旋转以及包括眼动转移和追随性眼动的主动头部运动期间,记录了支配半规管的传入神经的活动。从支配水平、上和后半规管的24条传入纤维获得了细胞外单单位记录。根据这些单位峰间间隔的归一化变异系数,我们的样本包含6条规则放电、6条中间型和12条不规则放电的传入神经。使用最小二乘法回归分析反应,以确定每个单位的偏置放电率以及对头部速度和加速度的敏感性。我们发现在所测试的不同刺激条件下,传入反应的偏置放电率或旋转敏感性没有差异。我们的结果表明,对于自我产生的和被动施加的头身运动,半规管传入神经对头部旋转信息的编码方式相似。