The Body at Work: A Treatise on the Principles of PhysiologyHill, Alex
Science
The Body at Work: A Treatise on the Principles of Physiology
Hill, Alex
Physiology
Red blood-corpuscles, properly so called, are found only in vertebrate
animals, although invertebrate animals, from worms upwards, possess
genuine blood, and in some of them it contains hæmoglobin, or a
similar pigment in the form of globules. These might be likened to
the non-nucleated corpuscles of mammals, but it must be remembered
that the non-nucleated cells of mammals have been evolved from the
nucleated blood-corpuscles of birds, reptiles, amphibians, and fishes.
Below fishes red blood-cells are not found. Hæmoglobin is usually
dissolved in the blood of invertebrate animals. It is impossible to
trace any relationship between the coloured globules of invertebrates
and the blood-cells of fishes. The coloured globules must be regarded
as deposits or accretions of hæmoglobin held together by a proteid
substance.
The nucleated red corpuscles of submammalian vertebrates multiply by
cell division while circulating in the blood-stream. A good subject
in which to look for dividing corpuscles is the blood of a newt in
spring-time, when rapidly increasing activity calls for an additional
supply. There is nothing to distinguish the method of division of a
nucleated blood-corpuscle from that of any other cell.
The life-story of the red blood-corpuscles of mammals is one of the
most fascinating that the histologist has to tell. He wishes that
he could tell it with assurance; but, unfortunately, there are many
uncertainties, due to conflicting testimony, in its earlier chapters.
It is unlikely that a blood-corpuscle lives for long. A month or six
weeks is probably the term of its existence. The rapidity with which
the stock is replenished after bleeding shows that there must be ample
provision in the body for making blood-corpuscles. The rate at which
they disappear after they have been added in excess shows that there
is an equally effective mechanism for destroying them. If half as many
again as the animal already possesses be injected into its veins, the
number is reduced to its normal limit in about ten days. It is clear
that they can be made and can be destroyed with great facility, and
it seems a legitimate inference that production and destruction are
constantly taking place. Regarding the way in which they are destroyed
there is no uncertainty. We shall refer to this subject when describing
the functions of the spleen. But how are they made? We can sketch their
history in outline, but the evidence is conflicting with regard to all
matters of detail.
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