Biology -- Greece -- History; Medicine, Greek and Roman
‘The male does not emit semen at all in some animals, and where he
does, this is no part of the resulting embryo; just so no material part
comes from the carpenter to the material, i.e. to the wood in which he
works, nor does any part of the carpenter’s art exist within what he
makes, but the shape and the form are imparted from him to the material
by means of the motion he sets up. It is his hands that move his tools,
his tools that move the material; it is his knowledge of his art, and
his _soul_, in which is the form, that move his hands or any other
part of him with a motion of some definite kind, a motion varying with
the varying nature of the object made. In like manner, in the male of
those animals which emit semen, Nature uses the semen as a tool and as
possessing motion in actuality, just as tools are used in the products
of any art, for in them lies in a certain sense the motion of the
art.’[33]
‘For the same reason the development of the embryo takes place in the
female; neither the male himself nor the female emits semen into the
female, but the female receives within herself the share contributed
by both, because in the female is the material from which is made
the resulting product. Not only must the mass of material from which
the embryo is in the first instance formed exist there, but further
material must constantly be added so that the embryo may increase
in size. Therefore the birth must take place in the female. For the
carpenter must keep in close connexion with his timber and the potter
with his clay, and generally all workmanship and the ultimate movement
imparted to matter must be connected with the material concerned, as,
for instance, architecture is _in_ the buildings it makes.’[34]
[33] _De generatione animalium_, i. 22; 730ᵇ 10.
[34] _De generatione animalium_, i. 22; 730ᵅ 34.
The problem of the nature of generation is one in which Aristotle never
ceased to take an interest, and among the methods by which he sought to
solve it was embryological investigation. In his ideas on the methods
of reproduction we must seek also the main bases of such classification
of animals as he exhibits. His most important embryological researches
were made upon the chick. He asserts that the first signs of
development are noticeable on the third day, the heart being visible
as a palpitating blood-spot whence, as it develops, two meandering
blood vessels extend to the surrounding tunics.
‘Generation from the egg’, he says, ‘proceeds in an identical manner
with all birds.... With the common hen after three days and nights
there is the first indication of the embryo.... The heart appears like
a speck of blood in the white of the egg. This point beats and moves as
though endowed with life, and from it two vessels with blood in them
trend in a convoluted course ... and a membrane carrying bloody fibres
now envelops the yolk, leading off from the vessels.’[35]
Public-domain text, read in full here on John Shaqi.
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