When the muscles are put into action, what is termed
their contractility is called into play — that is, the force which
was dormant before is roused into activity. This is effected
through the nervous system, and it is the will which emanates
from the brain and is carried along certain nerves to accom-
plish definite actions. During the contraction of a muscle
its individual fibres change in form, producing an alteration
in the shape of the whole muscle ; thus it becomes shorter
and thicker. At the same time, while it is in action more
blood' flows through it, hence we see that one of the bene-
ficial effects of exercise is to stimulate the circulation
through the muscular system. It has also been ascertained
by experiments, that the venous blood which comes from a
muscle in action is darker in colour than that from a
muscle in repose. "When the circulation is quickened by
88 THE ART OF LIVINa IN AUSTRALIA.
movement, and the blood stream hastened, the vigour of
the body is increased, because the used up material is all
the quicker taken away, and a freshly created supply of
nutrition brought to every part.
The rate of breathing is accelerated whenever the body
is engaged in muscular exertion, and with this quickened
breathing there is an increased amount of oxygen drawn in,
and an increased amount of carbonic acid gas and water
exhaled by the breath. The oxygen which is absorbed
from the air into the blood is stored in the red corpuscles
of the latter, by which it is carried to every part of the
body. The venous blood which returns from every portion
of the system comes back as a dark crimson, instead of
being bright scarlet like the arterial blood. It contains
carbonic acid, and returns it to the lungs, where it is
exhaled by the breath. The oxygen is necessary to existence,
while the carbonic acid is injurious. The effect of exercise,
then, in any form, is thus to distribute healthy blood more
rapidly through the system, while it removes the injurious
matters quite as speedily.
The effect of active exercise on the heart, as it is well
known, is to make it beat faster ; by this the blood is
driven through the body at a quicker rate than usual. Some-
times, when the effort is unusually severe, there is a disturb-
ance of the regular balance between the heart and the lungs.
There is thus produced an irregular or unequal action of the
former, causing what is known as " loss of wind," which is,
however, soon restored by resting.
There is an excessive flow of blood to the surface of the
body, causing it to redden, and at the same time the perspira-
tion is greatly increased. It is on account of this latter
moisture opening up the pores of the skjn that the good
effects of exercise are chiefly due. The perspiration con-
sists mainly of water containing different salts and organic
EXERCISE. 89
matters. It is found by experiment that the amount of
water passing through the lungs and skin is usually doubled
even with moderate exertion.
Page 66
Presented as published in 1893. Historical recipes may not meet modern food-safety standards. Cook from the modern interpretation, not the original instructions.
AI-modernized reading of the original text
When the muscles are put into action, what is termed their contractility is called into play — that is, the force which was dormant before is roused into activity. This is effected through the nervous system, and it is the will which emanates from the brain and is carried along certain nerves to accomplish definite actions. During the contraction of a muscle its individual fibres change in form, producing an alteration in the shape of the whole muscle ; thus it becomes shorter and thicker. At the same time, while it is in action more blood flows through it, hence we see that one of the beneficial effects of exercise is to stimulate the circulation through the muscular system. It has also been ascertained by experiments, that the venous blood which comes from a muscle in action is darker in colour than that from a muscle in repose. "When the circulation is quickened by
movement, and the blood stream hastened, the vigour of the body is increased, because the used up material is all the quicker taken away, and a freshly created supply of nutrition brought to every part.
The rate of breathing is accelerated whenever the body is engaged in muscular exertion, and with this quickened breathing there is an increased amount of oxygen drawn in, and an increased amount of carbonic acid gas and water exhaled by the breath. The oxygen which is absorbed from the air into the blood is stored in the red corpuscles of the latter, by which it is carried to every part of the body. The venous blood which returns from every portion of the system comes back as a dark crimson, instead of being bright scarlet like the arterial blood. It contains carbonic acid, and returns it to the lungs, where it is exhaled by the breath. The oxygen is necessary to existence, while the carbonic acid is injurious. The effect of exercise, then, in any form, is thus to distribute healthy blood more rapidly through the system, while it removes the injurious matters quite as speedily.
The effect of active exercise on the heart, as it is well known, is to make it beat faster ; by this the blood is driven through the body at a quicker rate than usual. Sometimes, when the effort is unusually severe, there is a disturbance of the regular balance between the heart and the lungs. There is thus produced an irregular or unequal action of the former, causing what is known as " loss of wind," which is, however, soon restored by resting.
There is an excessive flow of blood to the surface of the body, causing it to redden, and at the same time the perspiration is greatly increased. It is on account of this latter moisture opening up the pores of the skjn that the good effects of exercise are chiefly due. The perspiration consists mainly of water containing different salts and organic
matters. It is found by experiment that the amount of water passing through the lungs and skin is usually doubled even with moderate exertion.