A History of Science — Volume 4Williams, Henry Smith
History
A History of Science — Volume 4
Williams, Henry Smith
Science -- History
It was but a step from this scientific classification of tissues to a
similar classification of the diseases affecting them, and this was one
of the greatest steps towards placing medicine on the plane of an exact
science. This subject of these branches completely fascinated Bichat,
and he exclaimed, enthusiastically: "Take away some fevers and nervous
trouble, and all else belongs to the kingdom of pathological anatomy."
But out of this enthusiasm came great results. Bichat practised as he
preached, and, believing that it was only possible to understand disease
by observing the symptoms carefully at the bedside, and, if the disease
terminated fatally, by post-mortem examination, he was so arduous in his
pursuit of knowledge that within a period of less than six months he had
made over six hundred autopsies--a record that has seldom, if ever,
been equalled. Nor were his efforts fruitless, as a single example will
suffice to show. By his examinations he was able to prove that diseases
of the chest, which had formerly been classed under the indefinite name
"peripneumonia," might involve three different structures, the pleural
sac covering the lungs, the lung itself, and the bronchial tubes, the
diseases affecting these organs being known respectively as pleuritis,
pneumonia, and bronchitis, each one differing from the others as to
prognosis and treatment. The advantage of such an exact classification
needs no demonstration.
LISTER AND THE PERFECTED MICROSCOPE
At the same time when these broad macroscopical distinctions were being
drawn there were other workers who were striving to go even deeper into
the intricacies of the animal mechanism with the aid of the microscope.
This undertaking, however, was beset with very great optical
difficulties, and for a long time little advance was made upon the work
of preceding generations. Two great optical barriers, known technically
as spherical and chromatic aberration--the one due to a failure of the
rays of light to fall all in one plane when focalized through a lens,
the other due to the dispersive action of the lens in breaking the
white light into prismatic colors--confronted the makers of microscopic
lenses, and seemed all but insuperable. The making of achromatic lenses
for telescopes had been accomplished, it is true, by Dolland in the
previous century, by the union of lenses of crown glass with those of
flint glass, these two materials having different indices of refraction
and dispersion. But, aside from the mechanical difficulties which arise
when the lens is of the minute dimensions required for use with the
microscope, other perplexities are introduced by the fact that the use
of a wide pencil of light is a desideratum, in order to gain sufficient
illumination when large magnification is to be secured.
Public-domain text, read in full here on John Shaqi.
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