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R S Hutton

Publications and source records attributed to R S Hutton.

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Postcontractile motoneuronal discharge produced by muscle afferent activation.

Muscle afferent activity is markedly enhanced following isometric contractions in hindlimb musculature of various vertebrates. Such increased and persistent postcontractile sensory discharge (PCSD) consists for the most part of potentiated firing of muscle spindle primary afferents. To determine if a positive feedback function is served, involving recruitment of homonymous and synergistic motor units, 62 motoneurons were isolated in L7 ventral root filaments, categorized according to their reflex response to triceps surae stretch, and monitored before and after isometric contraction for variations in spike frequency. Motoneurons found reflexly coupled to triceps surae stretch receptors significantly increased (P less than .01) their firing frequency during PCSD. Tonic motoneurons, believed to be primarily of alpha origin, accounted for most of the observations. This latter finding is consistent with known effects of spindle afferent input on motoneuronal recruitment. Functionally, this autogenetic control circuit should enhance "muscle stifness" and stabilize the muscle against minor perturbations.

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Persisting changes in sensory and motor activity of a muscle following its reflex activation.

A study was made to see if contractions induced by reflex action were followed by an elevation in muscle afferent activity comparable to the post-contraction sensory discharge (PCSD) that occurs after stimulation of the ventral roots. In lightly anesthetized cats, extension reflexes of the triceps surae muscle in the otherwise denervated leg were induced by contralateral stimulation of the popliteal nerve or footpad. The reflex response was followed by an elevated afferent discharge, which disappeared after a brief stretch, as is characteristic also of the PCSD. Crossed-extension responses in fusimotor activity unaccompanied by contraction of the gross muscle were also succeeded by an elevation in sensory discharge and an increased sensitivity to a vibratory stimulus applied to the tendon. Pinna reflexes had a similar effect. In the presence of the elevated discharge, alpha-motoneurons demonstrated increased sensitivity to vibration stimuli. It is suggested that the increase in spindle sensitivity may help stabilize the muscle against minor pertubations in length, at least when background fusimotor activity is relatively quiet.

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