» Articles » PMID: 2245311

Voluntary Activation of Human Motor Axons in the Absence of Muscle Afferent Feedback. The Control of the Deafferented Hand

Overview
Journal Brain
Specialty Neurology
Date 1990 Oct 1
PMID 2245311
Citations 68
Authors
Affiliations
Soon will be listed here.
Abstract

The ability to activate human motoneurons supplying individual intrinsic muscles of the hand was examined during acute deafferentation of the muscles. Tungsten microelectrodes were inserted percutaneously into motor fascicles of the ulnar nerve of 5 subjects, which was then blocked distally with local anaesthetic. In 4 subjects unitary action potentials were recorded from 16 motor axons, which were identified with respect to their target muscles. In the complete absence of muscle afferent feedback, subjects could voluntarily recruit motoneurons, grade their discharge and sustain a constant level of activity. Significant facilitation of motor efforts was provided by cutaneous feedback from the digits via the median nerve. During attempted maximal voluntary efforts the mean discharge frequencies of single motor axons were significantly lower than those of normally-innervated motor units. This finding suggests that peripheral afferents have a net facilitatory influence on motoneurons. However, during prolonged (20-30 s) maximal voluntary efforts the deafferented motoneurons did not display the progressive decline in discharge frequency shown by normally-innervated motor units during contractile fatigue, a finding consistent with two possible explanations: disfacilitation or reflex inhibition of the motoneuron pool by peripheral afferents. The results also indicate that the otherwise intact nervous system can perform some simple motor tasks with no proprioceptive input other than knowledge of the motor commands. Other factors may contribute to the poor motor performance reported for patients with severe sensory deficits.

Citing Articles

Molecular, Morphological and Electrophysiological Differences between Alpha and Gamma Motoneurons with Special Reference to the Trigeminal Motor Nucleus of Rat.

Kang Y, Saito M, Toyoda H Int J Mol Sci. 2024; 25(10).

PMID: 38791305 PMC: 11121624. DOI: 10.3390/ijms25105266.


Linking cortex and contraction-Integrating models along the corticomuscular pathway.

Haggie L, Schmid L, Rohrle O, Besier T, McMorland A, Saini H Front Physiol. 2023; 14:1095260.

PMID: 37234419 PMC: 10206006. DOI: 10.3389/fphys.2023.1095260.


Unilateral Handgrip Holds to Failure Result in Sex-Dependent Contralateral Facilitation.

Voskuil C, Dinyer-McNeely T, Succi P, Campbell M, Abel M, Bergstrom H Int J Exerc Sci. 2022; 15(4):782-796.

PMID: 35992504 PMC: 9362884. DOI: 10.70252/IODX7794.


Human muscle spindles are wired to function as controllable signal-processing devices.

Dimitriou M Elife. 2022; 11.

PMID: 35829705 PMC: 9278952. DOI: 10.7554/eLife.78091.


Supra-threshold vibration applied to the foot soles enhances jump height under maximum effort.

Moon J, Pathak P, Kim S, Roh S, Roh C, Shim Y PLoS One. 2022; 17(4):e0266597.

PMID: 35385540 PMC: 8985973. DOI: 10.1371/journal.pone.0266597.