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去大脑、未麻痹猫的颈部肌梭活动:前庭刺激的动力学及影响

Neck muscle spindle activity in the decerebrate, unparalyzed cat: dynamics and influence of vestibular stimulation.

作者信息

Kasper J, Wilson V J, Yamagata Y, Yates B J

机构信息

Rockefeller University, New York, New York 10021.

出版信息

J Neurophysiol. 1989 Oct;62(4):917-23. doi: 10.1152/jn.1989.62.4.917.

Abstract
  1. Using floating electrodes, we recorded from neck-muscle spindle afferents in the C2 dorsal root ganglion of the decerebrate cat. Nerves to dorsal neck muscles were cut so that the afferents presumably originated mainly from ventral and ventrolateral perivertebral muscles and sternocleidomastoid. One goal of our experiments was to study possible vestibular influence exerted on these spindles via the fusimotor system. Unparalyzed preparations were therefore used. 2. Stimuli consisted of sinusoidal rotations in vertical planes. Neck tilt stretched neck muscles, whereas whole-body tilt stimulated vestibular receptors. 3. For each afferent we first determined the most effective direction of neck tilt, then used stimuli oriented close to this direction to study response dynamics, particularly gain of responses to stimuli of different amplitudes (0.5-7.5 degrees). 4. Three-quarters of the afferents failed to respond to 0.5 degrees, 0.2-Hz neck rotations. Stimuli that were effective usually elicited responses that had low gain and were linear over the whole range of amplitudes. Only a few afferents had behavior typical of spindle primary afferents: high-gain responses to small sinusoidal stimuli, gain decreasing as stimulus amplitude increases. This prevalence of static spindle responses in the unparalyzed cat is in striking contrast to results obtained on neck-muscle spindles in paralyzed, decerebrate cats, and on hindlimb extensor muscle spindles in decerebrate, unparalyzed cats. 5. Paralysis produced by injection of Flaxedil changed the behavior of 2/4 spindle afferents tested, causing the appearance of high-gain responses to 0.5 degrees stimuli and of nonlinear behavior.(ABSTRACT TRUNCATED AT 250 WORDS)
摘要
  1. 我们使用漂浮电极,在去大脑猫的C2背根神经节中记录颈部肌肉纺锤体传入神经的信号。切断支配颈部背侧肌肉的神经,使得这些传入神经大概主要起源于腹侧和腹外侧椎旁肌以及胸锁乳突肌。我们实验的一个目标是研究通过肌梭运动系统对这些纺锤体可能产生的前庭影响。因此使用了未麻痹的标本。2. 刺激包括垂直平面内的正弦旋转。颈部倾斜会拉伸颈部肌肉,而全身倾斜会刺激前庭感受器。3. 对于每一个传入神经,我们首先确定颈部倾斜的最有效方向,然后使用接近这个方向的刺激来研究反应动力学,特别是对不同幅度(0.5 - 7.5度)刺激的反应增益。4. 四分之三的传入神经对0.5度、0.2赫兹的颈部旋转没有反应。有效的刺激通常会引发低增益且在整个幅度范围内呈线性的反应。只有少数传入神经具有纺锤体初级传入神经的典型行为:对小幅度正弦刺激有高增益反应,增益随着刺激幅度增加而降低。在未麻痹的猫中这种静态纺锤体反应的普遍情况与在麻痹的去大脑猫的颈部肌肉纺锤体以及去大脑未麻痹猫的后肢伸肌纺锤体上获得的结果形成了鲜明对比。5. 注射弗来西德产生的麻痹改变了所测试的4个纺锤体传入神经中的2个的行为,导致出现对0.5度刺激的高增益反应以及非线性行为。(摘要截选至250字)

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