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红核-延髓脊髓通路。一种已知可影响动态肌梭运动神经元的下行系统,以及在控制屈肌反射传入通路中它与远端皮肤传入神经的相互作用。

The rubro-bulbospinal path. A descending system known to influence dynamic fusimotor neurones and its interaction with distal cutaneous afferents in the control of flexor reflex afferent pathways.

作者信息

Jeneskog T, Johansson H

出版信息

Exp Brain Res. 1977 Feb 16;27(2):161-79. doi: 10.1007/BF00237696.

Abstract

The inhibitory effect of electrical stimulation in the near-rubral region on polysynaptic segmental as well as ascending pathways activated by the flexor reflex afferents (FRA) in hind limb nerves was studied in chloralose anaesthetized cats. The effective stimulating region totally coincided with the one from which a D zone climbing fibre response may be elicited in the contralateral cerebellar cortex. The descending path was dependent upon an intact dorsolateral spinal funiculus, where also a characteristic volley could be recorded with a surface electrode on short train central stimulation. The suppressive action on the transmission through the FRA pathways was evoked in the absence of a lower lumbar dorsal root potential, and it was concluded that the effect was exerted by postsynaptic inhibition. It was suggested that this descending path, the effects of which resemble those elicited from the dorsal reticulospinal system, is identical to the rubro-bulbospinal path, previously known to influence dynamic fusimotor neurones. The transmission through the FRA pathways was also suppressed by conditioning stimulation of ipsilateral, low threshold distal cutaneous afferents. The time course of this effect was the same as that with central conditioning stimulation. Facilitatory interaction was revealed with double conditioning and it was suggested that the descending path and the distal cutaneous afferents converge upon a common group of interneurones, which postsynaptically inhibit an early (possibly the first one) interneurone in the FRA pathways. As low threshold distal cutaneous afferents supply the primary peripheral input via climbing fibres to the cerebello-cortical D zone, it was concluded that the different stimuli (central or peripheral) which activate a common group of inferior olivary neurones destined for the D zone also activate a common group of segmental inhibitory interneurones. The results are discussed in relation to current concepts of segmental motor control, and it is suggested that the mechanisms studied could be involved in the regulation of stepping.

摘要

在水合氯醛麻醉的猫中,研究了近红核区域电刺激对后肢神经中屈肌反射传入纤维(FRA)激活的多突触节段性以及上行通路的抑制作用。有效刺激区域与对侧小脑皮质中可引出D区攀爬纤维反应的区域完全重合。下行通路依赖于完整的背外侧脊髓索,在短串中枢刺激时,也可用表面电极在该部位记录到特征性的波群。在没有腰下部背根电位的情况下,对通过FRA通路的传导产生抑制作用,得出该作用是由突触后抑制发挥的结论。有人提出,这条下行通路的作用类似于从背侧网状脊髓系统引出的作用,与先前已知影响动态肌梭运动神经元的红核 - 延髓脊髓通路相同。同侧低阈值远端皮肤传入纤维的条件刺激也抑制了通过FRA通路的传导。这种效应的时间进程与中枢条件刺激时相同。双条件刺激显示出易化相互作用,有人提出下行通路和远端皮肤传入纤维汇聚于一组共同的中间神经元,这些中间神经元在突触后抑制FRA通路中早期(可能是第一个)的中间神经元。由于低阈值远端皮肤传入纤维通过攀爬纤维为小脑皮质D区提供主要的外周输入,得出激活共同一组投射到D区的下橄榄核神经元的不同刺激(中枢或外周)也激活共同一组节段性抑制中间神经元的结论。结合当前节段性运动控制的概念对结果进行了讨论,有人提出所研究的机制可能参与了步态的调节。

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