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August 1, 1968The Journal of Physiology208 citationsOpen Access

The energetics of tortoise muscle

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RWR. C. Woledge

Key Result

Tortoise skeletal muscle demonstrated greater efficiency than frog muscle at converting free energy into work, with a lower maintenance heat rate and shortening heat constant.

Structured PICO

P
Population
Tortoise skeletal muscle
I
Intervention
Tetanic contractions
C
Comparator
Frog muscle
O
Outcome
Mechanical behaviour and heat production (force-velocity relation, shortening heat constant, maintenance heat rate, efficiency)surrogate

Tortoise skeletal muscle demonstrates greater efficiency in converting free energy into work compared to frog muscle, associated with distinct force-velocity and heat production characteristics.

Abstract

A study has been made of the mechanical behaviour and the heat production of tortoise skeletal muscle during tetanic contractions.2. The relation between force (P) and velocity (v) is more curved than that of frog muscle. It can be fitted by Hill's equation (v/v(max) = (1 - P/P(0))/(1 + P/a)) using a value of P(0)/a considerably less than for frog muscle.3. The value of the shortening heat constant is less than in frog muscle. It is about a half of a. No evidence was found that the value depended on the load.4. The maintenance heat rate is much less than in frog muscle and, as in frog muscle, is roughly equal to a.b (where b = v(max).a/P(0)). The maintenance heat rate does not diminish during a long tetanus as it does in frog muscle.5. The ratio of work/(work + initial heat) is greater in tortoise muscle than in frog muscle. As in frog muscle, the recovery heat is about equal to (work + initial heat). It follows that tortoise muscle is more efficient than frog muscle at converting free energy into work.6. Possible theoretical bases for connexions between the shape of the force-velocity curve of a muscle and its efficiency are discussed.

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Cite This Study

R. C. Woledge (1968) studied Tortoise skeletal muscle physiology. Tortoise skeletal muscle vs. Frog muscle was evaluated on Mechanical behaviour and heat production during tetanic contractions. Tortoise skeletal muscle demonstrated greater efficiency than frog muscle at converting free energy into work, with a lower maintenance heat rate and shortening heat constant.

synapsesocial.com/papers/6a0feef0600bce7eadfcac27https://doi.org/10.1113/jphysiol.1968.sp008582
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Also Consider

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

  1. 1The ‘instantaneous’ elasticity of active muscle1953 · 57 citations
  2. 2The effect of load on the heat of shortening of muscle1964 · 261 citations
  3. 3ATPase Activity of Myosin Correlated with Speed of Muscle Shortening1967 · 1,981 citations
  4. 4An analysis of the initial heat production in the voluntary muscle of the tortoise1926 · 7 citations
  5. 5THE DESIGN OF MUSCLES1956 · 36 citations