Let any man, who has but touched the study of physiology, consider
what is involved in even the most superficial observation of the
simplest facts of the nervous system: for instance, the ordinary
nerve-muscle preparation that is taught to every medical student, or
the microscopic structure of the spinal cord, or the Wallerian method.
Or let him consider how the physiology of the nervous system has been
founded on the lower forms of life: the work of Romanes and others on
the Medusa and the Echinodermata, and Huxley's work in biology, and
the endless chain of forces that are alike in man and in jelly-fishes.
Then let him try to estimate the output of hard thinking, for the
advance from lower to higher structures, and up to man; the vigilant
criticism of all theories and foregone conclusions, the incessant
self-judgment and wearisome doubts and disputes all the way,
elusiveness of facts, and vagueness of words. And the results thus
wrung out of science had still to be stated in terms of practice, and
tested by the facts of medicine, surgery, and pathology, and used in
every hospital in the civilised world, not only for the saving of
life, but also for the diagnosis and medical or surgical treatment of
innumerable varieties of disease or injury of the brain, the cord, or
the nerves. Sir Michael Foster, in a short summary of the problems of
physiology, puts clearly these consummate difficulties of the
physiology of the nervous system:--
"In the first place there are what may be called general
problems, such as, How the food, after its preparation and
elaboration into blood, is built up into the living substance of
the several tissues? How the living substance breaks down into
the dead waste? How the building up and breaking down differ in
the different tissues in such a way that energy is set free in
different modes, the muscular tissue contracting, the nervous
tissue thrilling with a nervous impulse, the secreting tissue
doing chemical work, and the like? To these general questions
the answers which we can at present give can hardly be called
answers at all.
"In the second place there are what may be called special
problems, such as, What are the various steps by which the blood
is kept replenished with food and oxygen, and kept free from an
accumulation of water; and how is the activity of the digestive,
respiratory, and excretory organs, which effect this, regulated
and adapted to the stress of circumstances? What are the details
of the vascular mechanism by which each and every tissue is for
ever bathed with fresh blood, and how is that working delicately
adapted to all the varied changes of the body? And, _compared
with which all other problems are insignificant and preparatory
only_, how do nervous impulses so flit to and fro within the
nervous system as to issue in the movements which make up what
we sometimes call the life of man?"
Public-domain text, read in full here on John Shaqi.
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