Anatomy, Comparative; Embryology, Human; Evolution; Human beings -- Origin
In many of the lower animals (such as sponges, polyps, and medusae)
the naked ova retain their original simple appearance until
impregnation. But in most animals they at once begin to change; the
change consists partly in the formation of connections with the yelk,
which serve to nourish the ovum, and partly of external membranes for
their protection (the ovolemma, or prochorion). A membrane of this
sort is formed in all the mammals in the course of the embryonic
process. The little globule is surrounded by a thick capsule of
glass-like transparency, the zona pellucida, or ovolemma pellucidum
(Figure 1.14). When we examine it closely under the microscope, we see
very fine radial streaks in it, piercing the zona, which are really
very narrow canals. The human ovum, whether fertilised or not, cannot
be distinguished from that of most of the other mammals. It is nearly
the same everywhere in form, size, and composition. When it is fully
formed, it has a diameter of (on an average) about 1/120 of an inch.
When the mammal ovum has been carefully isolated, and held against the
light on a glass-plate, it may be seen as a fine point even with the
naked eye. The ova of most of the higher mammals are about the same
size. The diameter of the ovum is almost always between 1/250 to 1/125
inch. It has always the same globular shape; the same characteristic
membrane; the same transparent germinal vesicle with its dark germinal
spot. Even when we use the most powerful microscope with its highest
power, we can detect no material difference between the ova of man,
the ape, the dog, and so on. I do not mean to say that there are no
differences between the ova of these different mammals. On the
contrary, we are bound to assume that there are such, at least as
regards chemical composition. Even the ova of different men must
differ from each other; otherwise we should not have a different
individual from each ovum. It is true that our crude and imperfect
apparatus cannot detect these subtle individual differences, which are
probably in the molecular structure. However, such a striking
resemblance of their ova in form, so great as to seem to be a complete
similarity, is a strong proof of the common parentage of man and the
other mammals. From the common germ-form we infer a common stem-form.
On the other hand, there are striking peculiarities by which we can
easily distinguish the fertilised ovum of the mammal from the
fertilised ovum of the birds, amphibia, fishes, and other vertebrates
(see the close of Chapter 2.29).
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