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自发运动的乳头前猫后肢伸肌之间的异质性反馈。

Heterogenic feedback between hindlimb extensors in the spontaneously locomoting premammillary cat.

作者信息

Ross Kyla T, Nichols T Richard

机构信息

Department of Biomedical Engineering, Georgia Institute of Technology, 313 Ferst Dr., Atlanta, GA 30332, USA.

出版信息

J Neurophysiol. 2009 Jan;101(1):184-97. doi: 10.1152/jn.90338.2008. Epub 2008 Nov 12.

Abstract

Electrophysiological studies in anesthetized animals have revealed that pathways carrying force information from Golgi tendon organs in antigravity muscles mediate widespread inhibition among other antigravity muscles in the feline hindlimb. More recent evidence in paralyzed or nonparalyzed decerebrate cats has shown that some inhibitory pathways are suppressed and separate excitatory pathways from Golgi tendon organ afferents are opened on the transition from steady force production to locomotor activity. To obtain additional insight into the functions of these pathways during locomotion, we investigated the distribution of force-dependent inhibition and excitation during spontaneous locomotion and during constant force exertion in the premammillary decerebrate cat. We used four servo-controlled stretching devices to apply controlled stretches in various combinations to the gastrocnemius muscles (G), plantaris muscle (PLAN), flexor hallucis longus muscle (FHL), and quadriceps muscles (QUADS) during treadmill stepping and the crossed-extension reflex (XER). We recorded the force responses from the same muscles and were therefore able to evaluate autogenic (intramuscular) and heterogenic (intermuscular) reflexes among this set of muscles. In previous studies using the intercollicular decerebrate cat, heterogenic inhibition among QUADS, G, FHL, and PLAN was bidirectional. During treadmill stepping, heterogenic feedback from QUADS onto G and G onto PLAN and FHL remained inhibitory and was force-dependent. However, heterogenic inhibition from PLAN and FHL onto G, and from G onto QUADS, was weaker than during the XER. We propose that pathways mediating heterogenic inhibition may remain inhibitory under some forms of locomotion on a level surface but that the strengths of these pathways change to result in a proximal to distal gradient of inhibition. The potential contributions of heterogenic inhibition to interjoint coordination and limb stability are discussed.

摘要

对麻醉动物的电生理研究表明,在抗重力肌肉中,从高尔基腱器官传递力信息的通路介导了猫后肢其他抗重力肌肉之间的广泛抑制。最近在瘫痪或未瘫痪的去大脑猫身上的证据表明,在从稳定力产生向运动活动转变时,一些抑制性通路受到抑制,而来自高尔基腱器官传入神经的独立兴奋性通路被打开。为了进一步深入了解这些通路在运动过程中的功能,我们研究了前乳头去大脑猫在自发运动和持续用力过程中力依赖性抑制和兴奋的分布情况。我们使用四个伺服控制的拉伸装置,在跑步机行走和交叉伸展反射(XER)过程中,以各种组合方式对腓肠肌(G)、跖肌(PLAN)、拇长屈肌(FHL)和股四头肌(QUADS)施加受控拉伸。我们记录了同一组肌肉的力反应,因此能够评估这组肌肉之间的自体(肌内)和异体(肌间)反射。在先前使用间丘去大脑猫的研究中,QUADS、G、FHL和PLAN之间的异体抑制是双向的。在跑步机行走过程中,从QUADS到G以及从G到PLAN和FHL的异体反馈仍然是抑制性的,并且是力依赖性的。然而,从PLAN和FHL到G以及从G到QUADS的异体抑制比在交叉伸展反射期间弱。我们提出,介导异体抑制的通路在水平表面上的某些运动形式下可能仍然具有抑制作用,但这些通路的强度会发生变化,从而导致抑制作用从近端到远端呈梯度变化。文中讨论了异体抑制对关节间协调和肢体稳定性的潜在贡献。

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