首页> 美国卫生研究院文献>Journal of Anatomy and Physiology >Correlated histological and physiological observations on a case of common sensory output and motor input of the bag1 fibre and a chain fibre in a cat tenuissimus spindle
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Correlated histological and physiological observations on a case of common sensory output and motor input of the bag1 fibre and a chain fibre in a cat tenuissimus spindle

机译:猫Tenuissimus纺锤体中bag1纤维和链状纤维的共同感觉输出和运动输入情况下相关的组织学和生理学观察

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摘要

In muscle spindles of the cat, independent control of dynamic and static components of the response of the primary sensory ending to stretch is provided by separate motor inputs to the various kinds of intrafusal muscle fibre: dynamic axons (γ or β) to the bag1 fibres and static axons to the bag2 (typically γ only) and chain (γ or β) fibres. Nonlinear summation of separately evoked effects during combined stimulation of dynamic and static motor axons appears to be due to mutual resetting by antidromic invasion of separate encoding sites, leading to partial occlusion of the momentarily lesser response by the greater. The encoding sites are thought to be located within the primary ending's preterminal branches which from first-order level are normally segregated to the bag1 fibre and to the bag2 and chain fibres. Here we describe the analysis of a special case that arose in a histophysiological study which had shown that the degree of occlusion was related to the minimum number of nodes between the putative encoding sites. Three-dimensional reconstruction of the primary ending revealed that the terminals of one chain fibre were derived entirely from the first-order branch that supplied the bag1 fibre, including one terminal that was shared directly with the bag1 (sensory cross-terminal). The other first-order branch supplied the bag2 and remaining chain fibres as normal. The degree of occlusion seen during simultaneous stimulation of a dynamic β axon and a static γ axon indicated that the encoding sites were separated by both first-order branches. Schematic reconstruction of the motor innervation revealed that the static γ axon was most unlikely to have supplied the chain fibre which shared sensory terminals with the bag1, but that these fibres also shared a motor input with histological characteristics of β type. Ramp-frequency stimulation of the dynamic β axon at constant length evoked a driving effect which persisted after fatiguing the extrafusal component and was therefore explicable on the basis of the observed pattern of motor innervation, though the identity of the axon could not be conclusively proved. Individually, instances of shared sensory terminals and motor input of bag1 and chain fibres are rare in the cat; their combination in a single spindle with correlated physiology is described here for the first time. The observation is considered in relation to the importance of dynamic and static segregation in motor control, since it may imply that there is a lower limit to the degree of segregation that the developmental programme can provide.
机译:在猫的肌肉纺锤中,主要的感觉端对拉伸的响应的动态和静态成分的独立控制是通过对各种融合神经内肌纤维的单独运动输入来提供的:对袋1纤维的动态轴突(γ或β)以及到bag2(通常仅γ)和链(γ或β)纤维的静态轴突。在动态和静态运动轴突的联合刺激过程中,单独诱发的效应的非线性求和似乎是由于对分开的编码位点的反驱使相互复位,导致瞬间较小的响应被较大程度的部分遮挡。编码位点被认为位于初级末端的末端末端分支中,该末端通常从一阶分离到bag1纤维,bag2和链状纤维。在这里,我们描述了对一个组织生理学研究中出现的特殊情况的分析,该情况表明,遮挡程度与假定编码位点之间的最小结节数有关。一次末端的三维重建显示,一条链状纤维的末端完全来源于提供bag1纤维的一阶分支,包括一个直接与bag1共享的末端(感官交叉末端)。另一个一阶分支正常提供了bag2和其余的链纤维。在同时刺激动态β轴突和静态γ轴突时看到的遮挡程度表明,编码位点被两个一级分支隔开。运动神经支配的示意图重建显示,静态γ轴突最不可能提供与bag1共享感觉末端的链纤维,但是这些纤维还共享具有β型组织学特征的运动输入。恒定长度的动态β轴突的斜坡频率刺激引起了驱动作用,该作用在疲劳附加成分之后仍然存在,因此根据观察到的运动神经支配模式可以得到解释,尽管不能最终证明轴突的身份。在个别情况下,在猫中很少有共享感官终端和bag1以及链纤维的电机输入的情况。首次描述了它们在具有相关生理特性的单个纺锤中的组合。考虑到该观察与动态和静态隔离在电机控制中的重要性有关,因为它可能暗示了开发程序可以提供的隔离程度有一个下限。

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