» Articles » PMID: 2391663

Effects of Muscle History on the Stretch Reflex in Cat and Man

Overview
Journal J Physiol
Specialty Physiology
Date 1990 May 1
PMID 2391663
Citations 26
Authors
Affiliations
Soon will be listed here.
Abstract

1. This is a report of experiments on cat and man which demonstrate effects of a muscle's previous history of contraction and length changes on the size of the stretch reflex. 2. In adult human subjects the size of the tendon jerk was measured in ankle extensor muscles by tapping the Achilles tendon. Muscle conditioning consisted of a maximum voluntary contraction with the foot dorsiflexed or plantarflexed by 30 deg from the test position, after which the subject was asked to relax while the foot was held still for several seconds before being returned to the test position and a tendon tap given. After a contraction of the lengthened muscle the tendon jerk was smaller than after a contraction of the shortened muscle. 3. The experiment was then repeated, but instead of a tendon jerk an H (Hoffmann) reflex was elicited by transcutaneous electrical stimulation of the tibial nerve in the popliteal fossa. The reflex after a conditioning contraction of the lengthened muscle was larger than after a contraction of the shortened muscle. In other words muscle conditioning produced opposite effects on the tendon jerk and H reflex. 4. These findings were confirmed in cats anaesthetized with chloralose. After a conditioning contraction of triceps surae at a length 5 mm longer than the test length (hold-long) a quick tendon stretch produced a smaller reflex response than following a conditioning contraction with the muscle 5 mm shorter than the test length (hold-short). The reverse trend was seen with a reflex elicited by direct electrical stimulation of the muscle nerve, which stimulates the H reflex. 5. One consequence of a conditioning contraction is that it leads to an alteration of the level of resting discharge of muscle spindles. We propose that the larger tendon jerk after a contraction of the shortened muscle is the result of changes in stretch sensitivity of muscle spindles. The reverse effect on the H reflex we attribute to a rise in the level of resting discharge of muscle spindles, which, we propose, leads to reflex inhibition of motoneurones. 6. We support this conclusion with evidence from an experiment in which the size of the conditioning step was systematically altered. Even quite small hold-short conditioning steps led to depression of the H reflex in man and the monosynaptic reflex in cats. Recordings from single afferents showed that such small steps were also accompanied by a detectable rise in spindle resting discharge.(ABSTRACT TRUNCATED AT 400 WORDS)

Citing Articles

Reduction and recovery of self-sustained muscle activity after fatiguing plantar flexor contractions.

Blazevich A, Mesquita R, Pinto R, Pulverenti T, Ratel S Eur J Appl Physiol. 2024; 124(6):1781-1794.

PMID: 38340155 PMC: 11130039. DOI: 10.1007/s00421-023-05403-0.


Impact of Voluntary Muscle Activation on Stretch Reflex Excitability in Individuals With Hemiparetic Stroke.

Patterson J, Dewald J, Drogos J, Gurari N Front Neurol. 2022; 13:764650.

PMID: 35359658 PMC: 8964046. DOI: 10.3389/fneur.2022.764650.


Five minutes static stretching influences neural responses at spinal level in the background of unchanged corticospinal excitability.

Budini F, Kemper D, Christova M, Gallasch E, Rafolt D, Tilp M J Musculoskelet Neuronal Interact. 2019; 19(1):30-37.

PMID: 30839301 PMC: 6454261.


Experimental investigations of control principles of involuntary movement: a comprehensive review of the Kohnstamm phenomenon.

De Havas J, Gomi H, Haggard P Exp Brain Res. 2017; 235(7):1953-1997.

PMID: 28374088 PMC: 5486926. DOI: 10.1007/s00221-017-4950-3.


Serotonin affects movement gain control in the spinal cord.

Wei K, Glaser J, Deng L, Thompson C, Stevenson I, Wang Q J Neurosci. 2014; 34(38):12690-700.

PMID: 25232107 PMC: 4166156. DOI: 10.1523/JNEUROSCI.1855-14.2014.


References
1.
Brown M, Goodwin G, Matthews P . After-effects of fusimotor stimulation on the response of muscle spindle primary afferent endings. J Physiol. 1969; 205(3):677-94. PMC: 1348576. DOI: 10.1113/jphysiol.1969.sp008990. View

2.
GILLIES J, Lance J, Neilson P, Tassinari C . Presynaptic inhibition of the monosynaptic reflex by vibration. J Physiol. 1969; 205(2):329-39. PMC: 1348605. DOI: 10.1113/jphysiol.1969.sp008968. View

3.
Smith J, Hutton R, Eldred E . Postcontraction changes in sensitivity of muscle afferents to static and dynamic stretch. Brain Res. 1974; 78(2):193-202. DOI: 10.1016/0006-8993(74)90546-0. View

4.
HUNT C, Ottoson D . Initial burst of primary endings of isolated mammalian muscle spindles. J Neurophysiol. 1976; 39(2):324-30. DOI: 10.1152/jn.1976.39.2.324. View

5.
Eldred E, Hutton R, Smith J . Nature of the persisting canges in afferent discharge from muscle following its contraction. Prog Brain Res. 1976; 44:157-70. DOI: 10.1016/S0079-6123(08)60731-1. View