Animal Locomotion; or, walking, swimming, and flying: With a dissertation on aëronauticsPettigrew, James Bell
Science
Animal Locomotion; or, walking, swimming, and flying: With a dissertation on aëronautics
Pettigrew, James Bell
Aeronautics; Animal locomotion
A careful examination of these
carneous masses or muscles will show that they run longitudinally,
transversely, and obliquely, the longitudinal and transverse muscles
crossing each other at nearly right angles, the oblique ones tending to
cross at various angles, as in the letter X. The crossing is seen to
most advantage in the deep muscles.
[18] Lectures “On the Physiology of the Circulation in Plants, in the
Lower Animals, and in Man,” by the Author.--Edinburgh Medical Journal
for September 1872.
In order to understand the twisting which occurs to a greater or less
extent in the bodies and extremities (when present) of all vertebrated
animals, it is necessary to reduce the bony and muscular systems
to their simplest expression. If motion is desired in a dorsal,
ventral, or lateral direction only, a dorsal and ventral or a right
and left lateral set of longitudinal muscles acting upon straight
bones articulated by an ordinary ball-and-socket joint will suffice.
In this case the dorsal, ventral, and right and left lateral muscles
form _muscular cycles_; contraction or shortening on the one aspect
of the cycle being accompanied by relaxation or elongation on the
other, the bones and joints forming as it were the diameters of the
cycles, and oscillating in a backward, forward, or lateral direction
in proportion to the degree and direction of the muscular movements.
Here the motion is confined to two planes intersecting each other at
right angles. When, however, the muscular system becomes more highly
differentiated, both as regards the number of the muscles employed,
and the variety of the directions pursued by them, the bones and
joints also become more complicated. Under these circumstances, the
bones, as a rule, are twisted upon themselves, and their articular
surfaces present various degrees of spirality to meet the requirements
of the muscular system. Between the straight longitudinal muscles,
therefore, arranged in dorsal and ventral, and right and left lateral
sets, and those which run in a more or less transverse direction, and
between the simple joint whose motion is confined to one plane and the
ball-and-socket joints whose movements are universal, every degree of
obliquity is found in the direction of the muscles, and every possible
modification in the disposition of the articular surfaces. In the fish
the muscles are for the most part arranged in dorsal, ventral, and
lateral sets, which run longitudinally; and, as a result, the movements
of the trunk, particularly towards the tail, are from side to side
and sinuous. As, however, oblique fibres are also present, and the
tendons of the longitudinal muscles in some instances cross obliquely
towards the tail, the fish has also the power of tilting or twisting
its trunk (particularly the lower half) as well as the caudal fin. In
a mackerel which I examined, the oblique muscles were represented by
the four lateral masses occurring between the dorsal, ventral, and
Public-domain text, read in full here on John Shaqi.
Reviews
Reviews
No reviews yet
Be the first to share your thoughts on this work.
Join the Discussion
Join the discussion
Sign in to leave a comment or review.
Sign InorCreate an account