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猫小腿三头肌中异源性反射的受体机制。

Receptor mechanisms underlying heterogenic reflexes among the triceps surae muscles of the cat.

作者信息

Nichols T R

机构信息

Department of Physiology, Emory University, Atlanta, Georgia 30322, USA.

出版信息

J Neurophysiol. 1999 Feb;81(2):467-78. doi: 10.1152/jn.1999.81.2.467.

Abstract

The soleus (S), medial gastrocnemius (MG), and lateral gastrocnemius (LG) muscles of the cat are interlinked by rapid spinal reflex pathways. In the decerebrate state, these heterogenic reflexes are either excitatory and length dependent or inhibitory and force dependent. Mechanographic analysis was used to obtain additional evidence that the muscle spindle primary ending and the Golgi tendon organ provide the major contributions to these reflexes, respectively. The tendons of the triceps surae muscles were separated and connected to independent force transducers and servo-controlled torque motors in unanesthetized, decerebrate cats. The muscles were activated as a group using crossed-extension reflexes. Electrical stimulation of the caudal cutaneous sural nerve was used to provide a particularly strong activation of MG and decouple the forces of the triceps surae muscles. During either form of activation, the muscles were stretched either individually or in various combinations to determine the strength and characteristics of autogenic and heterogenic feedback. The corresponding force responses, including both active and passive components, were measured during the changing background tension. During activation of the entire group, the excitatory, heterogenic feedback linking the three muscles was found to be strongest onto LG and weakest onto MG, in agreement with previous results concerning the strengths of heteronymous Ia excitatory postsynaptic potentials among the triceps surae muscles. The inhibition, which is known to affect only the soleus muscle, was dependent on active contractile force and was detected essentially as rapidly as length dependent excitation. The inhibition outlasted the excitation and was blocked by intravenous strychnine. These results indicate that the excitatory and inhibitory effects are dominated by feedback from primary spindle receptors and Golgi tendon organs. The interactions between these two feedback pathways potentially can influence both the mechanical coupling between ankle and knee.

摘要

猫的比目鱼肌(S)、内侧腓肠肌(MG)和外侧腓肠肌(LG)通过快速的脊髓反射通路相互连接。在去大脑状态下,这些异源性反射要么是兴奋性的且与长度相关,要么是抑制性的且与力量相关。采用力学分析来获取更多证据,表明肌梭初级末梢和高尔基腱器官分别对这些反射起主要作用。在未麻醉的去大脑猫中,将小腿三头肌的肌腱分离并连接到独立的力传感器和伺服控制的扭矩电机上。利用交叉伸展反射将这些肌肉作为一组进行激活。电刺激腓肠后皮神经以特别强烈地激活内侧腓肠肌并解耦小腿三头肌的力量。在任何一种激活形式下,分别或组合拉伸这些肌肉,以确定自生反馈和异源反馈的强度及特征。在背景张力变化期间测量相应的力反应,包括主动和被动成分。在整个肌肉组被激活时,发现连接这三块肌肉的兴奋性异源反馈在外侧腓肠肌上最强,在内侧腓肠肌上最弱,这与先前关于小腿三头肌之间异名Ia兴奋性突触后电位强度的结果一致。已知仅影响比目鱼肌的抑制作用取决于主动收缩力,并且其检测速度与长度依赖性兴奋基本一样快。抑制作用持续时间长于兴奋作用,并被静脉注射士的宁阻断。这些结果表明,兴奋和抑制作用主要由初级梭形感受器和高尔基腱器官的反馈所主导。这两种反馈途径之间的相互作用可能会影响踝关节和膝关节之间的机械耦合。

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