But in a larger or a more complex organism the study of growth, and of
the rate of growth, presents us with a variety of problems, and the
whole phenomenon becomes a factor of great morphological importance. We
no longer find that it tends to be uniform in all directions, nor have
we any right to expect that it should. The resistances which it meets
with will no longer be uniform. In one direction but not in others it
will be opposed by the important resistance of gravity; and within the
growing system itself all manner of structural differences will come
into play, setting up unequal resistances to growth by the varying
rigidity or viscosity of the material substance in one direction or
another. At the same time, the actual sources of growth, the chemical
and osmotic forces which lead to the intussusception of new matter, are
not uniformly distributed; one tissue or one organ may well manifest a
tendency to increase while another does not; a series of bones, their
intervening cartilages, and their surrounding muscles, may all be
capable of very different rates of increment. The differences of form
which are the resultants of these differences in rate of growth are
especially manifested during that part of life when growth itself is
rapid: when the organism, as we say, is undergoing its _development_.
When growth in general has become slow, the relative differences in
rate between different parts of the organism may still exist, and
may be made manifest by careful observation, but in many, or perhaps
in most cases, the resultant change of form does not strike the eye.
Great as are the differences between the rates of growth in different
parts of an organism, the marvel is that the ratios between them are
so nicely balanced as they actually are, and so capable, accordingly,
of keeping for long periods of time the form of the growing organism
all but unchanged. There is the nicest possible balance of forces and
resistances in every part of the complex body; and when this normal
equilibrium is disturbed, then we get abnormal growth, in the shape of
tumours, exostoses, and malformations of every kind. {61}
_The rate of growth in Man._
Man will serve us as well as another organism for our first
illustrations of rate of growth; and we cannot do better than go for
our first data concerning him to Quetelet’s _Anthropométrie_[94], an
epoch-making book for the biologist. For not only is it packed with
information, some of it still unsurpassed, in regard to human growth
and form, but it also merits our highest admiration as the first great
essay in scientific statistics, and the first work in which organic
variation was discussed from the point of view of the mathematical
theory of probabilities.
[Illustration: Fig. 3. Curve of Growth in Man, from birth to 20 yrs
(♂); from Quetelet’s Belgian data. The upper curve of stature from
Bowditch’s Boston data.]
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