Anatomy, Comparative; Embryology, Human; Evolution; Human beings -- Origin
It must, therefore, be our next task to make a comparative study of
the various forms of vertebrate gastrulation, and trace them backwards
to that of the lancelet. Broadly speaking, they fall first into two
groups: the older cyclostoma, the earliest fishes, most of the
amphibia, and the viviparous mammals, have holoblastic ova--that is to
say, ova with total, unequal segmentation; while the younger
cyclostoma, most of the fishes, the cephalopods, reptiles, birds, and
monotremes, have meroblastic ova, or ova with partial discoid
segmentation. A closer study of them shows, however, that these two
groups do not present a natural unity, and that the historical
relations between their several divisions are very complicated. In
order to understand them properly, we must first consider the various
modifications of gastrulation in these classes. We may begin with that
of the amphibia.
The most suitable and most available objects of study in this class
are the eggs of our indigenous amphibia, the tailless frogs and toads,
and the tailed salamander. In spring they are to be found in clusters
in every pond, and careful examination of the ova with a lens is
sufficient to show at least the external features of the segmentation.
In order to understand the whole process rightly and follow the
formation of the germinal layers and the gastrula, the ova of the frog
and salamander must be carefully hardened; then the thinnest possible
sections must be made of the hardened ova with the microtome, and the
tinted sections must be very closely compared under a powerful
microscope.
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