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PMID: 5963733 Published · ppublish English Journal Article

Onset of contractility in cardiac muscle.

The Journal of physiology ·Vol. 184 ·No. 3 ·1966-06-00 ·Pages 560-80

Brady AJ

Abstract

1. A technique is described whereby (i) quick stretches and releases of controlled velocity, amplitude and time of onset can be applied to muscle. (ii) Releases from isometric to isotonic contraction can be performed at controlled delays relative to the stimulus, and displayed on a delayed expanded oscilloscope sweep. An isotonic lever system with an equivalent mass of 12.8 mg is described.2. Quick stretch of rabbit or cat papillary muscle after excitation does not result in a level of tension equal to or greater than normal peak isometric tension appropriate to the stretched length. Stretches applied during the first half of the rising phase of tension development give responses nearly identical to the same stretches applied before the stimulus (indicating that Starling's Law of the heart holds until this time). Stretches applied in the later phase of tension development or during relaxation result in diminished peak isometric tensions or accelerated relaxation.3. The rate of tension development following quick releases of isometrically contracting muscle to zero tension is not maximal until the releases are made 150-200 msec after excitation.4. Shortening velocity with light afterloads is not initially maximal nor constant for an appreciable period of time. The shortening velocity with heavy afterloads reaches its maximum more rapidly when the load is not lifted within the first 200 msec of a contraction which, if maintained isometric, would have required 400-500 msec to reach peak tension. With these heavier loads, a period of 100-200 msec of constant shortening velocity may occur.5. Freeloaded isotonic contractions show an inflexion in their shortening curves occurring 150-200 msec after excitation.6. Maximum rate of isotonic shortening following releases from isometric to isotonic contraction with a given load is not maximal until the releases occur about 200 msec after the stimulus.7. It is concluded that contractility in cardiac muscle is relatively slow in its onset with maximum capacity to shorten occurring about midway through the rising phase of isometric tension development.

MeSH Terms
Animals Cats Electric Stimulation Electrophysiology Heart/physiology Muscle Contraction/physiology Rabbits Ventricular Function
Authors & Affiliations
1 authors, click to expand affiliations / ORCID
Brady A J
References (8)
8 references, click to expand
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    Z Biol. 1956;108(6):401-11 PMID: 13393083
  2. Time and displacement dependence of cardiac contractility: problems in defining the active state and force-velocity relations.
    Fed Proc. 1965 Nov-Dec;24(6):1410-20 PMID: 5853158
  3. PHYSICAL FACTORS IN THE ANALYSIS OF THE ACTIONS OF DRUGS ON MYOCARDIAL CONTRACTILITY.
    Pharmacol Rev. 1963 Sep;15:531-99 PMID: 14064357
  4. The mechanical properties of relaxing muscle.
    J Physiol. 1960 Jun;152:30-47 PMID: 14407245
  5. Movements of Ca in beating ventricles of the frog heart.
    J Physiol. 1963 Jul;167:551-80 PMID: 13938486
  6. SERIES ELASTIC AND CONTRACTILE ELEMENTS IN HEART MUSCLE: CHANGES IN MUSCLE LENGTH.
    Am J Physiol. 1964 Dec;207:1330-8 PMID: 14251940
  7. Studies on the endoplasmic reticulum. III. Its form and distribution in striated muscle cells.
    J Biophys Biochem Cytol. 1957 Mar 25;3(2):269-300 PMID: 13438910
  8. A study of inotropic mechanisms in the papillary muscle preparation.
    J Gen Physiol. 1959 Jan 20;42(3):533-51 PMID: 13620884
Article Info
Journal
The Journal of physiology
Abbr.
J Physiol
ISSN
0022-3751
Published
1966-06-00
Pages
560-80
Language
English
Region
England
NLM ID
0266262
PMCID
PMC1357599
Subset
IM
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