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猫中枢前庭神经元对头部倾斜的反应。I. 最大敏感性方向。

Responses to head tilt in cat central vestibular neurons. I. Direction of maximum sensitivity.

作者信息

Schor R H, Miller A D, Tomko D L

出版信息

J Neurophysiol. 1984 Jan;51(1):136-46. doi: 10.1152/jn.1984.51.1.136.

Abstract

Responses to head tilt were recorded from vestibular neurons in and around the lateral vestibular nucleus (LVN) of the decerebrate cat. Each animal had all six semicircular canals rendered nonfunctional by a plugging procedure. Each cell was studied by slowly tilting the cat, using one or both of two paradigms. In the first method, sinusoidal tilts (0.05 or 0.1 Hz) were used to produce bidirectional stimuli in up to 12 pairs of directions, including left/right (roll tilt) and fore/aft (pitch). The second method imposed a constant 10 degree tilt; the direction of the tilt was rotated around the animal by an appropriate combination of roll and pitch motions. Neurons responded by maximally increasing their discharge frequency in a particular direction of head tilt from the horizontal. Each cell's response could be described by a vector in the animal's horizontal plane whose orientation is given by the direction of the most effective stimulus and whose length represents the neuron's maximal sensitivity to tilt. The two methods of stimulation yielded equivalent response vectors. Response vectors were obtained for 100 neurons. The distribution of vector directions for these vestibular neurons was not uniform; there was a conspicuous absence of neurons with fore/aft-directed vectors. The sensitivity of these cells (length of the response vector) ranged from 10 to 230 impulses X s-1 X g-1 (median 50). Neurons whose vectors lay in the ipsilateral half-plane (which would be excited by ear-down tilt) tended to be less sensitive than those with contralateral vectors. Neurons excited by ear-up tilt tended to be located ventrally in the LVN, while those excited by ear-down tilt were more evenly distributed. There was no other obvious correlation of vector orientation with the anatomical locus of the cell in the LVN. The directional selectivity of the responses of these neurons to head tilts are similar to those previously reported tin utricular afferents. The broad distribution of response vector orientations provides an appropriate substrate for vestibulospinal reflexes to a wide variety of head tilts.

摘要

记录了去大脑猫外侧前庭核(LVN)及其周围前庭神经元对头部倾斜的反应。通过堵塞手术使每只动物的所有六个半规管均失去功能。使用两种范式中的一种或两种,通过缓慢倾斜猫来研究每个细胞。在第一种方法中,正弦倾斜(0.05或0.1Hz)用于在多达12对方向上产生双向刺激,包括左/右(侧倾)和前/后(俯仰)。第二种方法施加恒定的10度倾斜;倾斜方向通过侧倾和俯仰运动的适当组合在动物周围旋转。神经元通过在从水平方向开始的特定头部倾斜方向上最大程度地增加其放电频率来做出反应。每个细胞的反应可以用动物水平面中的一个向量来描述,该向量的方向由最有效刺激的方向给出,其长度代表神经元对倾斜的最大敏感性。两种刺激方法产生了等效的反应向量。获得了100个神经元的反应向量。这些前庭神经元的向量方向分布不均匀;明显缺乏具有前后指向向量的神经元。这些细胞的敏感性(反应向量的长度)范围为10至230个脉冲×秒-1×克-1(中位数为50)。向量位于同侧半平面(将被耳向下倾斜激发)的神经元往往比具有对侧向量的神经元敏感性低。被耳向上倾斜激发的神经元倾向于位于LVN的腹侧,而被耳向下倾斜激发的神经元分布更均匀。向量方向与LVN中细胞的解剖位置没有其他明显的相关性。这些神经元对头部倾斜反应的方向选择性与先前报道的椭圆囊传入纤维的方向选择性相似。反应向量方向的广泛分布为各种头部倾斜的前庭脊髓反射提供了合适的基础。

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