The orientation of muscle fibres in the myomeres of fishes

Author:

Alexander R. McN.

Abstract

The superficial red muscle fibres of gnathostome fishes run more or less longitudinally, but the deeper muscle fibres are arranged in complex three-dimensional patterns in which some of them make angles of 30° or more with the long axis of the fish. There are two basic patterns, of which one is found in all the myomeres of selachians, primitive bony fishes,AnguillaandSalmo. In the other teleosts which were examined this pattern is restricted to the last few myomeres, and a quite different pattern is found more anteriorly.In a fish with muscle fibres running longitudinally the lateral fibres would be able to contract far more than those near the vertebral column. However, from mathematical analyses included in this paper it appears that both the patterns which have been found should result in all the white fibres in a myomere contracting to a fairly similar extent when the fish bends. This seems likely to be advantageous because a muscle fibre of given intrinsic speed produces maximum power output at one particular rate of contraction.A given rate of contraction of the muscle fibres results in faster bending if the fibres are arranged in the typical teleost pattern than if they are arranged in the selachian pattern.The selachian pattern is probably retained in the caudal peduncles of teleosts because the faster bending is obtained only at the expense of weaker bending moments. The caudal peduncle is slender and would be less able to transmit large forces to the caudal fin if the teleost pattern of muscle fibres were continued to its posterior end.

Publisher

Cambridge University Press (CUP)

Subject

Aquatic Science

Reference28 articles.

1. Phyletic studies of teleostean fishes with a provisional classification of living forms;Greenwood;BulL Am. Mus. nat. Hist.,1966

2. The dimensions of animals and their muscular dynamics;Hill;Sci. Progr.,1950

3. Role of Red and White Muscles in the Swimming of the Skipjack Tuna

4. The comparative morphology of the vertebrate spinal column. Its form as related to function

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