The Anatomy of the Human Peritoneum and Abdominal Cavity: Considered from the Standpoint of Development and Comparative Anatomy — John Shaqi
The Anatomy of the Human Peritoneum and Abdominal Cavity: Considered from the Standpoint of Development and Comparative AnatomyHuntington, George S. (George Sumner)
Science
The Anatomy of the Human Peritoneum and Abdominal Cavity: Considered from the Standpoint of Development and Comparative Anatomy
Huntington, George S. (George Sumner)
Abdomen; Peritoneum
2. The differentiation of the small from the large intestine, marked by
the appearance of the caecal bud or protrusion (Fig. 100), takes place in
the ascending segment of the umbilical loop a short distance from the
apex. In the human embryo the caecal bud appears in the 6th week as a
plainly marked protuberance, which grows very slowly in length and
circumference. It shows very early an unequal rate of development; the
terminal piece, not keeping pace in growth with the proximal portion, is
converted into the vermiform appendix, while the proximal segment
develops into the caecum proper. The increase in the length of the loop,
which begins to be marked in the 7th week, is not uniform. The apex is
the first portion to present the evidences of this growth. Subsequently
the descending limb grows in length very rapidly and is early thrown
into numerous coils of the future mobile portion of the small intestine
(jejuno-ileum). Even before the withdrawal of the apex of the loop
within the abdominal cavity a prominent coil of these convolutions is
found protruding in the umbilical region (Fig. 544). The ascending limb
of the loop from which a portion of the large intestine is developed,
grows comparatively slowly at this time.
[Illustration: FIG. 100.--Schema of human embryonic intestinal canal
after differentiation of the large and small intestine.]
The future portions of the human adult alimentary tract below the
stomach may be referred, in reference to their derivation, to this
primitive condition of the tube as follows:
1. The segment of small intestine situated between the pylorus and the
beginning or point of departure of the proximal or descending limb of
the umbilical loop, develops into the _duodenum_. This portion of the
small intestine is indicated early in embryos of 2.15 mm. (Fig. 101),
by the origin of the hepatic duct from the intestinal tube. Somewhat
later, in embryos of 4.10-5 mm. length, (Fig. 102) it becomes
additionally marked by the origin of the pancreatic diverticulum. The
duodenum, at first straight, now begins to curve, forming a short
_duodenal loop_ or _bend_. In embryos of 6 weeks the duodenum forms a
simple loop placed transversely below the pyloric extremity of the
stomach (Figs. 103 and 104).
[Illustration: FIG. 101.--Human embryo of 2.15 mm., twelve days old.
Seessel's sac is the cephalic blind termination of the embryonic
foregut before the communication with the ectodermal invagination of
the stomadaeum has been formed. (Reconstruction after His.)]
[Illustration: FIG. 102.--Representation of alimentary canal and
appendages of human embryo of 4.1 mm.; isolated. x 15. (Kollmann, after
His.)]
[Illustration: FIG. 103.--Alimentary canal and appendages of human
embryo of 12.5 mm. x 12. (Kollmann, after His.)]
[Illustration: FIG. 104.--A. Schematic representation of alimentary
canal, with umbilical loop and mesenteric attachments in human embryo of
about six weeks. B and C, stages in the intestinal rotation.]
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