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November 1, 1966Acta Physiologica Scandinavica66 citations

Length at Inactivated Contractile Elements, Length‐tension Diagram Active State and Tone of Vascular Smooth Muscle

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LLLennart LundholmLinköping UniversityEMElla Mohme‐LundholmLinköping University

Key Result

Vascular muscle developed a maximal tension of 2,100 gwt/cm2 cross section at the length of inactivated contractile elements, with maximal isotonic shortening to 25% of relaxed length.

Key Points

  • This research aims to explore the mechanical properties and length-tension relationship in vascular smooth muscle under controlled conditions.
  • Vascular muscle was subjected to total energy production blockade using monoiodoacetic acid under anaerobic conditions.
  • Length-tension diagrams were developed for untreated and adrenaline-treated vessels, measuring maximal tension and isotonic shortening.
  • Maximal tension achieved was 2.100 gwt/cm² cross section, corresponding to L0 in skeletal muscle.
  • Vascular muscle shortened maximally to 25% of its relaxed length, similar to isotonic behaviors seen in skeletal muscle.
  • The series-elastic component in vascular muscle was found to be 15-20% greater than in skeletal muscle.

Structured PICO

P
Population
Vascular smooth muscle
I
Intervention
Total blockade of energy production with monoiodoacetic acid under anaerobic conditions; adrenaline treatment
C
Comparator
Untreated vessels
O
Outcome
Length-tension diagram and mechanical properties (maximal tension, maximal isotonic shortening)surrogate

Vascular smooth muscle exhibits maximal isometric tension and isotonic shortening of similar magnitude to skeletal muscle, with spontaneous tension largely ascribed to an active state.

Abstract

Abstract Analysis of the mechanical properties of vascular muscle is complicated by the fact that normally it is contracted to a certain degree and has no constant resting length. By total blockade of the energy production of the muscle with monoiodoacetic acid under anaerobic conditions the vessel length at inactivated contractile elements could be measured. With the aid of this length the length‐tension diagram of the vascular muscle in untreated and adrenaline‐treated vessels was studied. The muscle developed a maximal tension (2.100gwt/cm 2 cross section) at this length, which therefore probably corresponded to L 0 in skeletal muscle. The vascular muscle shortened maximally to 25 per cent of the relaxed length. Both the development of maximal isometric tension and the maximal isotonic shortening were of the same magnitude in vascular as in skeletal muscle. The series‐elastic component (15–20 per cent) was, on the other hand, greater in vascular than in skeletal muscle. No rigor mortis was noted in the vascular muscle. The spontaneous tension of the vascular muscle and tension increase induced by adrenaline could be largely ascribed to an active state. The question of whether a “tonic” or “catch” mechanism is present in vascular muscle, independent of the active state, is discussed.

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Cite This Study

Lundholm et al. (1966) studied Vascular smooth muscle mechanics. Monoiodoacetic acid and adrenaline vs. Untreated vessels was evaluated on Length-tension diagram and maximal tension. Vascular muscle developed a maximal tension of 2,100 gwt/cm2 cross section at the length of inactivated contractile elements, with maximal isotonic shortening to 25% of relaxed length.

synapsesocial.com/papers/6a21e4e3de966c0841b92a4dhttps://doi.org/10.1111/j.1748-1716.1966.tb03436.x
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