[Effect of motor stimulation and stretching on afferent activity of the neuromuscular spindle isolated from the frog].

Archivio di fisiologia Pub Date : 1979-06-30
M Corda, T Pantaleo, F Calamai
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Abstract

The arrangement of muscle spindles in m. ext. long. dig. IV has been examined by microdissection. It is confirmed that spindle systems generally appear to consist of individual receptors. Stimulation effects of fast motor fibres (conduction velocities greater than 12 m/sec) on the spindles of the same muscle were studied. Receptors were isolated with their nerves and the appropriate spinal roots, the latter ones were used for stimulating efferent fibres and recording sensory discharges. Single shocks to the ventral root filaments caused afferent responses ranging from a single action potential to a train of impulses. During repetitive stimulation (train of stimuli at frequency of 10 to 150/sec) a marked increase in afferent activity was found. Afferent activity could be driven by the frequency of stimuli ("driving") and the stimulus/action potentials ratio varied from 1:1 to 1:3 or more. The rate of sensory discharge depended on the frequency of stimuli: the maximum effect, was attained at 30 to 50 stimuli/sec and, in the most responsive receptors, up to 80 stimuli/sec. Slight increases of the initial lengths of the receptors caused facilitation of sensory responses to motor stimulation. Moreover, impairing effects, which appear during sustained or high-frequency stimulation, possibly related to fatigue in intrafusal neuromuscular transmission, could be relieved by increasing the initial length. The repetitive stimulation of fast fusimotor fibres increased both dynamic and static responses and also raised the afferent activity after a period of stretching, when usually a depression occurs; these effects varied according to the preparation, its initial tension and the frequency of stimulation. The main feature of the examined motor fibres, when stimulated, is the constant excitatory action on muscle spindle static response. Results are discussed. It is suggested that the different characteristics of intrafusal muscle fibres, the receptor initial tension and the frequency of motor units discharges, may together affect muscle spindles static or dynamic performance.

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[运动刺激和拉伸对青蛙分离的神经肌肉纺锤体传入活动的影响]。
肌纺锤体的排列。挖。经显微解剖检查。证实纺锤体系统通常由单个受体组成。研究了快速运动纤维(传导速度大于12 m/sec)对同一肌肉纺锤体的刺激作用。受体与其神经和相应的脊髓根分离,后者用于刺激传出纤维并记录感觉放电。对腹侧根细丝的单次冲击引起从单一动作电位到一系列脉冲的传入反应。在重复刺激(频率为10到150次/秒的刺激训练)期间,传入活动显著增加。传入活动可以由刺激频率驱动(“驱动”),刺激/动作电位比从1:1到1:3不等。感觉放电的速率取决于刺激的频率:在30到50个刺激/秒时达到最大效果,在最敏感的受体中,达到80个刺激/秒。受体初始长度的轻微增加引起对运动刺激的感觉反应的促进。此外,在持续或高频刺激期间出现的损伤效应,可能与灌胃神经肌肉传递中的疲劳有关,可以通过增加初始长度来缓解。快速梭状运动纤维的重复刺激增加了动态和静态反应,并且在一段时间的拉伸后也增加了传入活动,而通常会出现萧条;这些影响根据制备,其初始张力和刺激频率而变化。被检查的运动纤维的主要特征,当受到刺激时,是对肌肉纺锤体静态反应的持续兴奋作用。对结果进行了讨论。提示肌内肌纤维的不同特性、受体初始张力和运动单元放电频率可能共同影响肌梭的静态或动态性能。
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[Effect of motor stimulation and stretching on afferent activity of the neuromuscular spindle isolated from the frog]. [Effects of acetylcholine and succinylcholine on isolated frog neuromuscular spindle]. The variation of characteristics of twitch and tetanic contractions with sarcomere length in isolated muscle fibres of the frog. [Current developments on the physiology of the cardiac atrial pacemaker an excitation conduction of the left atrium]. [Giulio Cesare Pupilli. Milan, 5 October 1893-Pescia, 17 August 1973].
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