首页> 美国卫生研究院文献>The Journal of Physiology >Actions on gamma-motoneurones elicited by electrical stimulation of joint afferent fibres in the hind limb of the cat.
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Actions on gamma-motoneurones elicited by electrical stimulation of joint afferent fibres in the hind limb of the cat.

机译:电刺激猫后肢关节传入纤维引起的对γ-运动神经元的作用。

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摘要

Effects on seventy-one single lumbar gamma-motoneurones, evoked by graded electrical stimulation of fibres running in the posterior articular nerve of the ipsilateral knee joint (p.a.n.), were studied by micro-electrode recording in twenty-one cats anaesthetized with alpha-chloralose. Sixty-seven of the gamma-cells were classified indirectly as dynamic (thirty-seven) or static (thirty) using the method of mesencephalic stimulation (cf. Appelberg, Hulliger, Johansson & Sojka, 1982). A high general responsiveness (i.e. number of cells with effectumber of cells tested) was found for the whole sample of gamma-cells (91.9% for dynamic and 93.3% for static cells). The thresholds for the effects were related to the stimulation intensity at which the early negative cord dorsum potential appeared (T). For all subpopulations of gamma-cells (dynamic and static, flexor and extensor cells) excitatory as well as inhibitory effects were observed at 0.9-1.1 T, probably corresponding to 1.1-1.4 times the threshold for evoking a compound action potential in p.a.n. (cf. Discussion). In addition, a considerable number of high-threshold effects were found. Some cells were influenced only from low-threshold joint afferents, some only from high-threshold joint afferents and some cells were influenced from both low- and high-threshold joint afferents. No statistically significant differences in thresholds were found between dynamic and static cells. Among flexor gamma-cells excitatory effects were found to predominate, while for extensor gamma-cells excitation and inhibition occurred with about equal frequency. The shortest latencies for excitatory effects on dynamic gamma-motoneurones were compatible with a trisynaptic pathway, while the routes for excitation of static units and for inhibition of both types of gamma-cells seemed to be longer. The possible functional significance of the findings is discussed. The findings seem to support the idea, as suggested by Freeman & Wyke (1967b), that the joint receptors may contribute to the 'co-ordination of muscle tone in posture and movement' via the gamma-loop. It is furthermore suggested that the latter mechanism may serve to regulate joint stiffness and joint stability.
机译:通过对二十只经α-氯醛糖麻醉的猫进行微电极记录,研究了对同侧膝关节(pan)后关节神经(潘)中纤维的分级电刺激诱发的对71个单腰γ-运动神经元的影响。 。使用中脑刺激的方法,将67个γ细胞间接分为动态(37个)或静态(30个)(参见Appelberg,Hulliger,Johansson和Sojka,1982年)。对于整个γ-细胞样品发现高的总体响应性(即具有效果的细胞数量/测试的细胞数量)(动态细胞为91.9%,静态细胞为93.3%)。影响的阈值与早期负脐带背电位出现的刺激强度有关(T)。对于γ-细胞的所有亚群(动态和静态,屈肌和伸肌细胞),在0.9-1.1 T观察到兴奋性和抑制作用,可能相当于在p.a.n中引起复合动作电位阈值的1.1-1.4倍。 (请参见讨论)。另外,发现了大量的高阈值效应。一些细胞仅受低阈值关节传入的影响,一些细胞仅受高阈值关节传入的影响,一些细胞受到低阈值和高阈关节传入的影响。在动态和静态单元格之间没有发现阈值的统计学显着差异。在屈肌γ细胞中,兴奋性作用占主导,而对于伸肌γ细胞,兴奋和抑制作用的发生频率大致相等。对动态γ-运动神经元兴奋作用的最短等待时间与三突触途径相容,而激发静态单位和抑制两种类型的γ-细胞的途径似乎更长。讨论结果的可能的功能意义。正如Freeman&Wyke(1967b)所建议的那样,这一发现似乎支持了这种想法,即关节受体可能通过伽马环促进“姿势和运动中的肌张力的协调”。此外,建议后者可以用来调节关节的刚度和关节的稳定性。

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