Anatomy, Comparative; Embryology, Human; Evolution; Human beings -- Origin
This fact is so important that few should be unaware of its extreme
significance; yet it was quite unknown in the first quarter of the
nineteenth century. As we have seen, the human and mammal ovum was not
discovered until 1827, when Carl Ernst von Baer detected it. Up to that
time the larger vesicles, in which the real and much smaller ovum is
contained, had been wrongly regarded as ova. The important circumstance
that this mammal ovum is a simple cell, like the ovum of other animals,
could not, of course, be recognised until the cell theory was
established. This was not done, by Schleiden for the plant and Schwann
for the animal, until 1838. As we have seen, this cell theory is of the
greatest service in explaining the human frame and its embryonic
development. Hence we must say a few words about the actual condition
of the theory and the significance of the views it has suggested.
In order properly to appreciate the cellular theory, the most important
element in our science, it is necessary to understand in the first
place that the cell is a _unified organism,_ a self-contained living
being. When we anatomically dissect the fully-formed animal or plant
into its various organs, and then examine the finer structure of these
organs with the microscope, we are surprised to find that all these
different parts are ultimately made up of the same structural element
or unit. This common unit of structure is the cell. It does not matter
whether we thus dissect a leaf, flower, or fruit, or a bone, muscle,
gland, or bit of skin, etc.; we find in every case the same ultimate
constituent, which has been called the cell since Schleiden’s
discovery. There are many opinions as to its real nature, but the
essential point in our view of the cell is to look upon it as a
self-contained or independent living unit. It is, in the words of
Brucke, “an elementary organism.” We may define it most precisely as
the ultimate organic unit, and, as the cells are the sole active
principles in every vital function, we may call them the “plastids,” or
“formative elements.” This unity is found in both the anatomic
structure and the physiological function. In the case of the protists,
the entire organism usually consists of a single independent cell
throughout life. But in the tissue-forming animals and plants, which
are the great majority, the organism begins its career as a simple
cell, and then grows into a cell-community, or, more correctly, an
organised cell-state. Our own body is not really the simple unity that
it is generally supposed to be. On the contrary, it is a very elaborate
social system of countless microscopic organisms, a colony or
commonwealth, made up of innumerable independent units, or very
different tissue-cells.
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