Anatomy, Comparative; Embryology, Human; Evolution; Human beings -- Origin
Apart from the few germs of our science which we find in classical
antiquity, and which we shall notice presently, we may say that it
takes its definite rise, as a science, in the year 1759, when one of
the greatest German scientists, Caspar Friedrich Wolff, published his
_Theoria generationis._ That was the foundation-stone of the science of
animal embryology. It was not until fifty years later, in 1809, that
Jean Lamarck published his _Philosophie Zoologique_—the first effort to
provide a base for the theory of evolution; and it was another
half-century before Darwin’s work appeared (in 1859), which we may
regard as the first scientific attainment of this aim. But before we go
further into this solid establishment of evolution, we must cast a
brief glance at that famous philosopher and scientist of antiquity, who
stood alone in this, as in many other branches of science, for more
than 2000 years: the “father of Natural History,” Aristotle.
The extant scientific works of Aristotle deal with many different sides
of biological research; the most comprehensive of them is his famous
_History of Animals._ But not less interesting is the smaller work, On
the _Generation of Animals (Peri zoon geneseos)._ This work treats
especially of embryonic development, and it is of great interest as
being the earliest of its kind and the only one that has come down to
us in any completeness from classical antiquity.
Aristotle studied embryological questions in various classes of
animals, and among the lower groups he learned many most remarkable
facts which we only rediscovered between 1830 and 1860. It is certain,
for instance, that he was acquainted with the very peculiar mode of
propagation of the cuttlefishes, or cephalopods, in which a yelk-sac
hangs out of the mouth of the fœtus. He knew, also, that embryos come
from the eggs of the bee even when they have not been fertilised. This
“parthenogenesis” (or virgin-birth) of the bees has only been
established in our time by the distinguished zoologist of Munich,
Siebold. He discovered that male bees come from the unfertilised, and
female bees only from the fertilised, eggs. Aristotle further states
that some kinds of fishes (of the genus _serranus_) are hermaphrodites,
each individual having both male and female organs and being able to
fertilise itself; this, also, has been recently confirmed. He knew that
the embryo of many fishes of the shark family is attached to the
mother’s body by a sort of placenta, or nutritive organ very rich in
blood; apart from these, such an arrangement is only found among the
higher mammals and man. This placenta of the shark was looked upon as
legendary for a long time, until Johannes Müller proved it to be a fact
in 1839. Thus a number of remarkable discoveries were found in
Aristotle’s embryological work, proving a very good acquaintance of the
great scientist—possibly helped by his predecessors—with the facts of
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