The commonwealth of cells : $b Some popular essays on human physiologySpurrell, H. G. F. (Herbert George Flaxman)
Science
The commonwealth of cells : $b Some popular essays on human physiology
Spurrell, H. G. F. (Herbert George Flaxman)
Human physiology
We have now traced out a general idea of life. We have seen that its
basis rests upon a chemical structure which, to maintain its identity,
must be always changing. We have seen that to do this it must keep
breaking down its substance, and giving off the products, and taking
hold of extraneous materials, and building them in, not only to repair
the loss, but in order to grow; and that to do that it has to be more or
less modified in parts, in order that the main bulk may be brought within
reach of its food, and be then able to convert it into the most useful
form. And, lastly, we have seen that just as several specialized forms of
plasm together make up a cell, so several kinds of cells, each with some
peculiarity exaggerated, aggregate, and, supplying one another’s needs,
compose a body.
Having now roughly sketched out the scheme upon which such a body works,
we can go on to a more detailed examination of the division of the
labour, and the way in which each department supplies, and is dependent
upon, the others. If we were to do this thoroughly, it would take a great
deal of time and space, for the physiology of a potato plant, though
essentially the same, presents many differences from that of a horse;
but the physiology of the great human interest is also that of the most
complicated animal, namely, man, so it is on him that we shall focus our
attention.
Protoplasm is more easily studied the more specialized is the animal it
composes. When all the events of life are taking place in a speck of
matter, invisible without a microscope, it is impossible to analyze the
changes which it is working in its surroundings, or to infer those which
are going on in itself. But when large numbers of cells are examined
collectively, we can deal with what they take in and what they give out
in sufficient bulk to arrive at a fairly accurate determination. The
study is rendered still easier in an animal with extremely specialized
organs, like man, in which food is nearly all taken in by the mouth, and
thus kept quite distinct from what is eliminated; the latter, again,
being mostly given off by the kidneys is kept equally distinct. Moreover,
the intermediate changes being performed in different organs still
further simplifies investigation of the vital process; for the physical
effects are also more easily studied when exaggerated in a particular
part of the animal. The electrical changes in a single cell might long
have remained unsuspected had we not been able to observe those in a
muscle with the galvanometer.
Public-domain text, read in full here on John Shaqi.
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