Text Book of Biology, Part 1: VertebrataWells, H. G. (Herbert George)
Science
Text Book of Biology, Part 1: Vertebrata
Wells, H. G. (Herbert George)
Biology -- Textbooks
Section 13. Figure 9 gives a similar diagram of a later stage, but here
the blastopore is closed. An epiblastic tucking-in at st., the
stomodaeum pre-figures the mouth; pr., the proctodaeum, is a
similar posterior invagination which will become the anus. Y., the
yolk, is evidently much absorbed. Figure 10 is a young tadpole, seen
from the side. The still unabsorbed yolk in the ventral wall of the
mesentery gives the creature a big belly. Its mouth is suctorial at this
stage, and behind it is a sucker (s.) by which the larvae attach
themselves to floating reeds and wood, as shown in the three black
figures below.
Section 14. We may now consider the development of the different
organs slightly more in detail, though much of this has already been
approached. The nervous system, before the closure of the neural
groove, has three anterior dilatations, the fore-, mid-, and hind-brains,
the first of which gives rise by hollow outgrowths to two pairs of lateral
structures, the hemispheres and the optic vesicles. The latter give rise
to the retina and optic nerve as described in {Development} Section
40.
Section 15. The hypoblastic notochord is early embraced by a
mesoblastic sheath derived from the protovertebrae. This becomes
truly cartilaginous, and at regular intervals is alternately thicker and
thinner, compressing the notochord at the thicker parts. Hence the
notochord has a beaded form within this, at first, continuous
cartilaginous sheath. This sheath is soon cut into a series of
vertebral bodies by jointings appearing through the points where the
cartilage is thickest and the notochord most constricted. Hence what
remains of the notochord lies within the vertebral bodies in the frog;
while in a cartilaginous fish, such as the dog-fish, or in the embryonic
rabbit, the lines of separation appear where the notochord is thickest,
and it comes to lie between hollow-faced vertebrae. Cartilaginous
neural arches and spines, formed outside the notochordal sheath,
enclose the spinal cord in an arcade. The final phase is ossification.
As the tadpole approaches the frog stage the vertebral column in the
tail is rapidly absorbed, and its vestiges appear in the adult as the
urostyle.
Section 16. The development of the skull is entirely dissimilar to that
of the vertebral column. It is shown on Figures 1 and 8, Sheet 14; and
in the section devoted to the frog's skull a very complete account of
the process is given. The process of ossification is described under
the histology of the Rabbit.
Public-domain text, read in full here on John Shaqi.
Reviews
Reviews
No reviews yet
Be the first to share your thoughts on this work.
Elsewhere in the archive
Join the Discussion
Join the discussion
Sign in to leave a comment or review.
Sign InorCreate an account