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猫前庭诱发颈部反射的频率响应分析。II. 颈传入神经和多突触下行通路的功能意义。

Frequency-response analysis of vestibular-induced neck reflex in cat. II. Functional significance of cervical afferents and polysynaptic descending pathways.

作者信息

Ezure K, Sasaki S, Uchino Y, Wilson V J

出版信息

J Neurophysiol. 1978 Mar;41(2):459-71. doi: 10.1152/jn.1978.41.2.459.

Abstract
  1. Three major inputs to cervical motoneurons were analyzed with frequency-response methods in decerebrate and unanesthetized cats: the afferent system including the gamma-loop, the vestibulospinal tract, and some polysynaptic tract that transmits vestibular influences in the vestibulocollic reflex. 2. The dorsal roots C1-C4 were cut in order to open the feedback loop through the gamma-fiber spindle-afferent system. No effects were observed on the gain and the phase lag of motor-unit response. However, the DC components of the response were consistently decreased by deafferentation both in motor-unit and compound EMG responses. Firing of muscle spindle afferents was modulated during oscillation of the turntable. The majority of responses of spindle afferents was in phase with the simultaneously recorded extrafusal motor activity. These results indicate the existence of alpha-gamma coactivation in the vestibulocollic reflex. 3. Intracellular recording from cervical motoneurons showed that monosynaptic EPSP's were induced by dorsal root stimulation. By far the larger EPSP's, however, were observed with latencies of 10-15 ms, showing the existence of more powerful polysynaptic routes. It is postulated that the cervical afferent system controls the gain of the reflex by changing the number of motor units participating in the vestibulocollic reflex through some polysynaptic pathways, and that the afferent system scarcely changes, the gain or phase lag of individual motor units through a short stretch reflex loop. 4. The medial vestibulospinal tract in the MLF was interrupted, but no effects were detected on the dynamic characteristics of the frequency response. This shows the existence of other effective descending pathways which function as an integrator. 5. Remarkable phase advances were induced by intravenous infusion of Nembutal. This suggests that the Nembutal decreased the activity of the polysynaptic pathways and that the neural integrator, composed of polysynaptic networks, was prevented from fulfilling its ordinary function.
摘要
  1. 运用频率响应方法,在去大脑和未麻醉的猫身上分析了颈运动神经元的三种主要输入:包括γ环路的传入系统、前庭脊髓束以及在前庭颈反射中传递前庭影响的一些多突触通路。2. 切断颈1至颈4背根,以打开通过γ纤维肌梭传入系统的反馈环路。未观察到对运动单位反应的增益和相位滞后有影响。然而,在运动单位和复合肌电图反应中,去传入神经后反应的直流成分均持续降低。在转台振荡期间,肌梭传入神经的放电受到调制。肌梭传入神经的大多数反应与同时记录的梭外肌运动活动同步。这些结果表明在前庭颈反射中存在α-γ共同激活。3. 对颈运动神经元进行细胞内记录显示,背根刺激可诱发单突触兴奋性突触后电位(EPSP)。然而,潜伏期为10 - 15毫秒时观察到的EPSP要大得多,这表明存在更强大的多突触通路。据推测,颈传入系统通过一些多突触通路改变参与前庭颈反射的运动单位数量来控制反射增益,并且传入系统几乎不会通过短的牵张反射环路改变单个运动单位的增益或相位滞后。4. 内侧纵束中的内侧前庭脊髓束被切断,但未检测到对频率响应动态特性的影响。这表明存在其他作为整合器起作用的有效下行通路。5. 静脉注射戊巴比妥可诱发明显的相位超前。这表明戊巴比妥降低了多突触通路的活性,并且由多突触网络组成的神经整合器无法发挥其正常功能。

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