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PMID: 658188 Published · ppublish English Journal Article Research Support, U.S. Gov't, P.H.S.

Spinal mechanisms of the functional stretch reflex.

Experimental brain research ·Vol. 32 ·No. 1 ·1978-05-12 ·Pages 55-68

Ghez C, Shinoda Y

Abstract

A sudden and rapid angular displacement of the limb evokes, in human and monkey subjects, a segmented pattern of electromyographic activity in muscles which are stretched. While the first segment is acknowledged to represent a tendon jerk, it has been proposed that the second segment, occurring with a shorter latency than a reaction time, is mediated by a transcortical loop. The present experiments were conducted in cats to determine the properties of muscle responses to torque perturbations analogous to those used in the monkey, and to determine if the integrity of supraspinal pathways is required for the individual response segments to occur. Torque perturbations which flexed the forearm evoked a segmented response in the electromyogram of the cat triceps muscle. This response typically consisted of three early segments with latencies of 10, 30 and 60 msec which were similar to the M1, M2, and M3 segments described in the monkey. The M3 and occasionally M2 components were depressed when the cat followed rather than resisted the perturbation. A torque pulse of 10 msec duration was sufficient to elicit a near maximal M1 response while torque pulses in excess of 20 msec were required to evoke the M2 response. To determine if any of these components required mediation by the cerebral cortex, experiments were conducted in decerebrate and spinal cats. Similar torque perturbations produced segmented electromyographic responses in the triceps muscles which were indistinguishable in their timing from those observed in intact cats. The torque required to produce the segmented responses was comparable as well. All three segments were dependent upon the activation of receptors in the homonymous muscle and did not require cutaneous input. These observations show that receptor properties and/or spinal mechanisms involved in the stretch reflex are sufficient to produce a segmented response similar to that observed in intact animals.

MeSH Terms
Animals Cats Cerebral Cortex/physiology Electromyography Evoked Potentials Forelimb/innervation Mechanoreceptors/physiology Muscle Contraction Muscles/innervation Neural Pathways/physiology Reaction Time/physiology Reflex/physiology Spinal Cord/physiology
Authors & Affiliations
2 authors, click to expand affiliations / ORCID
Ghez C
Shinoda Y
References (28)
28 references, click to expand
  1. Improvement in linearity and regulation of stiffness that results from actions of stretch reflex.
    J Neurophysiol. 1976 Jan;39(1):119-42 PMID: 1249597
  2. Electronically controlled load for monkey manipulandum.
    Electroencephalogr Clin Neurophysiol. 1973 Jul;35(1):95-7 PMID: 4123270
  3. Evidence that the secondary as well as the primary endings of the muscle spindles may be responsible for the tonic stretch reflex of the decerebrate cat.
    J Physiol. 1969 Oct;204(2):365-93 PMID: 4241929
  4. EMG studies of stretch reflexes in man.
    Electroencephalogr Clin Neurophysiol. 1967;:Suppl 25:74-9 PMID: 4165797
  5. Activity of red nucleus neurons associated with a skilled forelimb movement in the cat.
    Brain Res. 1977 Aug 12;131(2):383-8 PMID: 890468
  6. Involuntary activity in biceps following the sudden application of velocity to the abducted forearm.
    J Physiol. 1955 Feb 28;127(2):23-5P PMID: 14354685
  7. Long-loop reflexes in the tranquilized monkey.
    Exp Brain Res. 1977 Apr 21;27(5):491-500 PMID: 15852
  8. Discharge of red nucleus neurons during voluntary muscle contraction: activity patterns and correlations with isometric force.
    J Physiol (Paris). 1978;74(3):283-5 PMID: 722601
  9. Observations on the control of stepping and hopping movements in man.
    J Physiol. 1971 Dec;219(3):709-27 PMID: 5157598
  10. Regulatory actions of human stretch reflex.
    J Neurophysiol. 1976 Sep;39(5):925-35 PMID: 978238
  11. Servo action in human voluntary movement.
    Nature. 1972 Jul 21;238(5360):140-3 PMID: 4558452
  12. [Amplitude and variability of monosynaptic reflexes before a voluntary movement].
    Physiol Behav. 1971 Oct;7(4):495-508 PMID: 4331879
  13. Precentral unit activity following torque pulse injections into elbow movements.
    Brain Res. 1975 Aug 29;94(2):219-36 PMID: 807297
  14. The sensitivity of muscle spindle afferents to small sinusoidal changes of length.
    J Physiol. 1969 Feb;200(3):723-43 PMID: 4237132
  15. Latency measurements compatible with a cortical pathway for the stretch reflex in man.
    J Physiol. 1973 Apr;230(1):58P-59P PMID: 4702450
  16. Analysis of muscle receptor connections by spike-triggered averaging. 2. Spindle group II afferents.
    J Neurophysiol. 1976 Nov;39(6):1393-402 PMID: 136501
  17. Modulation of the functional stretch reflex by the segmental reflex pathway.
    Exp Brain Res. 1976 Jun 18;25(3):247-54 PMID: 821767
  18. The influence of prior instruction to the subject on an apparently involuntary neuro-muscular response.
    J Physiol. 1956 Apr 27;132(1):17-8P PMID: 13320395
  19. Gating of motor cortex reflexes by prior instruction.
    Brain Res. 1974 May 17;71(2-3):479-94 PMID: 4219749
  20. Transition in sensitivity of spindle receptors that occurs when muscle is stretched more than a fraction of a millimeter.
    J Neurophysiol. 1975 May;38(3):673-89 PMID: 123952
  21. Motor cortex reflexes associated with learned movement.
    Science. 1973 Feb 2;179(4072):501-3 PMID: 4196171
  22. Reflex and intended responses in motor cortex pyramidal tract neurons of monkey.
    J Neurophysiol. 1976 Sep;39(5):1069-80 PMID: 824410
  23. Anticipatory activity of motor cortex neurons in relation to direction of an intended movement.
    J Neurophysiol. 1976 Sep;39(5):1062-8 PMID: 824409
  24. [Variations of the amplitude of monosynaptic reflexes before a voluntary movement].
    Physiol Behav. 1971 Jan;6(1):65-9 PMID: 5125459
  25. Increases in reflex excitability of monkey masseter motoneurons before a jaw-bite reaction-time response.
    J Neurophysiol. 1975 Jul;38(4):981-9 PMID: 1159476
  26. The Ferrier lecture, 1968. Motor apparatus of the baboon's hand.
    Proc R Soc Lond B Biol Sci. 1969 May 20;173(1031):141-74 PMID: 4389426
  27. The effect of postcentral cortical lesions on motor responses to sudden upper limb displacements in monkeys.
    Brain Res. 1975 Oct 10;96(1):108-13 PMID: 809104
  28. The influence of group II muscle afferents and low threshold skin afferents on dynamic fusimotor neurones to the triceps surae of the cat.
    Brain Res. 1977 Aug 19;132(1):153-8 PMID: 142539
Article Info
Journal
Experimental brain research
Abbr.
Exp Brain Res
ISSN
0014-4819
Published
1978-05-12
Pages
55-68
Language
English
Region
Germany
NLM ID
0043312
Subset
IM
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