Fallon J B, Carr R W, Gregory J E, Proske U
Department of Physiology, Monash University, Victoria 3168, Clayton, Australia.
Brain Res. 2001 Jan 12;888(2):348-355. doi: 10.1016/s0006-8993(00)03115-2.
This is a study of the summation of responses of primary endings of muscle spindles to combined static and dynamic fusimotor stimulation in the soleus muscle of the anaesthetised cat. Summation, expressed as a summation coefficient, K, was measured under a variety of conditions including (1) at several, fixed muscle lengths using steady rates of stimulation, (2) using ramp-shaped increases in stimulation rates, (3) during passive stretches after muscle conditioning, and (4) during combined stretch plus stimulation. The predominant effect observed was occlusion, that is, the combined response was less than the sum of the two individual responses. The calculated mean K value for responses at fixed length was 0.156 (+/-0.005 S.E.M.). It was hypothesised that summation arose from electrotonic spread of generator current between the afferent terminals, either directly, or as a result of mechanical interactions between the contracting intrafusal fibres. Summation for responses from pairs of static fusimotor fibres gave a larger mean K value, 0.340 (+/-0.020 S.E.M.). These findings were interpreted in terms of a model of the muscle spindle where responses to dynamic fusimotor stimulation arise at one impulse generating site, and static fusimotor responses arise at another.
这是一项关于麻醉猫比目鱼肌中肌梭初级末梢对静态和动态融合运动刺激组合反应总和的研究。以总和系数K表示的总和,在多种条件下进行测量,包括:(1)在几个固定肌肉长度下使用稳定刺激率;(2)使用刺激率呈斜坡状增加的情况;(3)在肌肉预处理后的被动拉伸过程中;(4)在拉伸加刺激的组合过程中。观察到的主要效应是总和抑制,即组合反应小于两个单独反应之和。固定长度下反应的计算平均K值为0.156(±0.005标准误)。据推测,总和是由于发生器电流在传入末梢之间通过电紧张性扩布产生的,这种扩布要么是直接的,要么是由于收缩的梭内纤维之间的机械相互作用导致的。来自成对静态融合运动纤维反应的总和给出了更大的平均K值,为0.340(±0.020标准误)。这些发现是根据肌梭模型来解释的,在该模型中,对动态融合运动刺激的反应在一个冲动产生位点产生,而静态融合运动反应在另一个位点产生。