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December 1, 1964American Journal of Physiology-Legacy Content199 citations

Series elastic and contractile elements in heart muscle: changes in muscle length

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ESEdmund H. Sonnenblick

Key Points

  • The study aims to understand how changes in muscle length affect the interaction between contractile and elastic components in heart muscle.
  • Analyzed isometric force generation using the cat papillary muscle.

Structured PICO

P
Population
Cat papillary muscle
I
Intervention
Changes in muscle length (analysis of isometric force generation)
O
Outcome
Stiffness of the series elastic component (SE) and its relation to developed force of contraction or loadsurrogate

The study demonstrates that the series elastic component in heart muscle is closely associated with the contractile element system itself, rather than just external attachments.

Abstract

Isometric force generation, the result of the interaction of an actively shortening contractile element (CE) with a passive series elastic component (SE), has been analyzed in heart muscle using the cat papillary muscle. The stiffness of the SE (Δ load/Δ extension or d p/d l) was shown to be a linear function of developed force of contraction or load ( P). The load-extension curve of the SE was thus exponential in form, the SE being stretched an amount equivalent to 8–10% of initial muscle length during the development of maximum isometric force (600 g/cm 2 ). The load-extension curve of the SE was also obtained from the curve relating initial velocity of shortening to time after stimulation. This latter relation and the linear relation of SE stiffness to force were found to be independent of initial muscle length. These results were interpreted to suggest that increases in muscle length bring about an increase in the number of series elastic components as well as contractile elements arranged in parallel. The series elastic component thus cannot be relegated entirely to external attachments of the muscle (e.g., tendon), but must be closely associated with the contractile element system itself.

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Cite This Study

Edmund H. Sonnenblick (1964) studied this question.

synapsesocial.com/papers/6a168a752fcf950e0004fe13https://doi.org/10.1152/ajplegacy.1964.207.6.1330
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Also Consider

Synapse has enriched 5 closely related papers on similar clinical questions. Consider them for comparative context:

  1. 1Series Elasticity in Heart Muscle1967 · 157 citations
  2. 2The Series Elasticity of Cardiac Muscle in Hyperthyroidism, Ventricular Hypertrophy, and Heart Failure1968 · 48 citations
  3. 3A three-element model describes excised cat papillary muscle elasticity1975 · 30 citations
  4. 4Vascular Muscle Series Elastic Element Stiffness during Isometric Contraction1974 · 13 citations
  5. 5THE EFFECTS OF PARALLEL AND SERIES ELASTIC COMPONENTS ON THE ACTIVE CAT SOLEUS FORCE-LENGTH RELATIONSHIP2009 · 54 citations