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刺激猫的小脑小结对前庭神经元反应的影响。

The effects of stimulating the cerebellar nodulus in the cat on the responses of vestibular neurons.

作者信息

Precht W, Volkind R, Maeda M, Giretti M L

机构信息

Department of Neurobiology, Max Planck Institut for Brain Research, Frankfurt, West Germany.

出版信息

Neuroscience. 1976 Aug;1(4):301-12. doi: 10.1016/0306-4522(76)90057-9.

Abstract

In a first series of experiments, recordings were obtained from cat abducens and trochlear motorneurons and from axons of secondary vestibular neurons terminating in these motor nuclei, and the effects of cerebellar nodulus stimulation on utricular- and canal-evoked responses in these neurons were studied. Ultricular activation of vestibular axons recorded in the ipsilateral VIth and contralateral IVth nuclei was probably monosynaptically inhibited by nodular stimulation provided conditioning-test intervals were in the range between 0-10 ms and the test stimuli were close to threshold intensities. Of the vestibular axons activated by stimulation of the semicircular canal nerves only those evoked by the horizontal canal stimulation and recorded in the ipsilateral VIth nucleus were weakly inhibited. When the vestibular stimuli were strong enough to produce clear field potentials in the motor nuclei and/or postsynaptic potentials in motorneurons, nodular stimulation had practically no effect on their amplitudes. It is concluded that inhibition of vestibuloocular transmission is weak as compared to floccular inhibition studied previously. In a second series of experiments, recordings were obtained from vestibular neurons which were activated antidromically and/or transsynaptically by stimulation of the contralateral fastigial nucleus, and the effects of ipsilateral nodular stimulation on these responses were studied. It was found that nodular stimulation inhibited both antidromic as well as transsynaptic fastigial activations of vestibular neurons. Most of these vestibular neurons were located in the descending vestibular nucleus and received polysynaptic vestibular and spinal inputs. It is concluded that in addition to its weak inhibitory effect on vestibuloocular transmission the nodulus exerts a powerful inhibition on vestibular neurons transmitting vestibular and spinal inputs to cerebellar nuclei and/or cortex. It is suggested that the nodulus controls cerebellar projecting vestibular neurons which carry vestibular and spinal information to the cerebellum. The vestibular, proprioceptive and visual information which is present in the nodulus may aid the role of the nodulus in controlling body posture.

摘要

在第一组实验中,从猫的展神经和滑车神经运动神经元以及终止于这些运动核的次级前庭神经元的轴突记录信号,研究了小脑蚓小结刺激对这些神经元中椭圆囊和半规管诱发反应的影响。在同侧展神经核和对侧滑车神经核记录到的前庭轴突的椭圆囊激活,可能在条件刺激 - 测试刺激间隔为0 - 10毫秒且测试刺激接近阈强度时,被蚓小结刺激单突触抑制。仅由水平半规管刺激激活并在同侧展神经核记录到的前庭轴突受到微弱抑制。当前庭刺激强度足以在运动核中产生清晰的场电位和/或在运动神经元中产生突触后电位时,蚓小结刺激对其幅度几乎没有影响。得出的结论是,与先前研究的绒球抑制相比,前庭眼反射传递的抑制较弱。在第二组实验中,从通过刺激对侧顶核被逆向激活和/或经突触激活的前庭神经元记录信号,研究同侧蚓小结刺激对这些反应的影响。发现蚓小结刺激抑制前庭神经元的逆向以及经突触的顶核激活。这些前庭神经元大多位于前庭下核,并接受多突触前庭和脊髓输入。得出的结论是,除了对前庭眼反射传递有微弱抑制作用外,蚓小结对向前庭核和/或皮质传递前庭和脊髓输入的前庭神经元有强大抑制作用。有人提出,蚓小结控制向小脑投射的前庭神经元,这些神经元将前庭和脊髓信息传递到小脑。蚓小结中存在的前庭、本体感觉和视觉信息可能有助于蚓小结在控制身体姿势中的作用。

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