Here, in this present study of "pancreatic diabetes," by Dr. Vaughan
Harley and others, are facts as important as any that Bernard made
out: in no way contradicting his work, but adding to it. The pancreas
is no longer taken to be only a sort of salivary gland out of place:
over and above the secretion that it pours into the intestines, it has
an "internal secretion," a constituent of the blood: it belongs not
only to the digestive system, but also, like the thyroid gland and the
suprarenal capsules, to the whole chemistry of the blood and the
tissues. So far has physiology come, unaided by anatomy, from the
fantastic notions of Lindanus and the men of his time: and has come
every inch of the way by the help of experiments on animals. Professor
Starling's observations, on the chemical influence of the duodenal
mucous membrane on the flow of pancreatic fluid, have advanced the
subject still further.
VI
THE GROWTH OF BONE
The work of du Hamel proved that the periosteum is one chief agent in
the growth of bone. Before him, this great fact of physiology was
unknown; for the experiments made by Anthony de Heide (1684), who
studied the production of callus in the bones of frogs, were wholly
useless, and serve only to show that men in his time had no clear
understanding of the natural growth of bone. De Heide says of his
experiments:--
"From these experiments it appears--_forsan probatur_--that
callus is generated by extravasated blood, whose fluid particles
being slowly exhaled, the residue takes the form of the bone:
which process may be further advanced by deciduous halitus from
the ends of the broken bone."
And Clopton Havers, in his _Osteologia Nova_ (London, 1691), goes so
far the wrong way that he attributes to the periosteum not the
production of bone, but the prevention of over-production; the
periosteum, he says, is put round the shaft of a bone to compress it,
lest it grow too large.
Du Hamel's discovery (1739-1743) came out of a chance observation,
made by John Belchier,[4] that the bones of animals fed near
dye-works were stained with the dye. Belchier therefore put a bird on
food mixed with madder, and found that its bones had taken up the
stain. Then du Hamel studied the whole subject by a series of
experiments. To estimate the advance that he gave to physiology,
contrast de Heide's fanciful language with the title of one of du
Hamel's papers--_Quatrième Mémoire sur les Os, dans lequel on se
propose de rapporter de nouvelles preuves qui établissent que les os
croissent en grosseur par l'addition de couches osseuses qui tirent
leur origine du périoste, comme le corps ligneux des Arbres augmente
en grosseur par l'addition de couches ligneuses qui se forment dans
l'écorce._ Or take an example of du Hamel's method:--
Public-domain text, read in full here on John Shaqi.
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