Anatomy, Comparative; Embryology, Human; Evolution; Human beings -- Origin
The shape or outer form of the cell is infinitely varied, in accordance
with its endless power of adapting itself to the most diverse
activities or environments. In its simplest form the cell is globular
(Fig. 2). This normal round form is especially found in cells of the
simplest construction, and those that are developed in a free fluid
without any external pressure. In such cases the nucleus also is not
infrequently round, and located in the centre of the cell-body (Fig.
2_k_). In other cases, the cells have no definite shape; they are
constantly changing their form owing to their automatic movements. This
is the case with the amœbæ (Fig. 15 and 16) and the amœboid travelling
cells (Fig. 11), and also with very young ova (Fig. 13).However, as a
rule, the cell assumes a definite form in the course of its career. In
the tissues of the multicellular organism, in which a number of similar
cells are bound together in virtue of certain laws of heredity, the
shape is determined partly by the form of their connection and partly
by their special functions. Thus, for instance, we find in the mucous
lining of our tongue very thin and delicate flat cells of roundish
shape (Fig. 3). In the outer skin we find similar, but harder, covering
cells, joined together by saw-like edges (Fig. 4). In the liver and
other glands there are thicker and softer cells, linked together in
rows (Fig. 5).
The last-named tissues (Figs. 3–5) belong to the simplest and most
primitive type, the group of the “covering-tissues,” or epithelia. In
these “primary tissues” (to which the germinal layers belong) simple
cells of the same kind are arranged in layers. The arrangement and
shape are more complicated in the “secondary tissues,” which are
gradually developed out of the primary, as in the tissues of the
muscles, nerves, bones, etc. In the bones, for instance, which belong
to the group of supporting or connecting organs,
the cells (Fig. 6) are star-shaped, and are joined together by numbers
of net-like interlacing processes; so, also, in the tissues of the
teeth (Fig. 7), and in other forms of supporting-tissue, in which a
soft or hard substance (intercellular matter, or base) is inserted
between the cells.
Fig.3 Three epithelial cells. Fig. 4 Five spiny or grooved cells. Fig.
5 Ten liver-cells. Fig. 3—Three epithelial cells from the mucous lining
of the tongue.
Fig. 4—Five spiny or grooved cells, with edges joined, from the outer
skin (epidermis): one of them (_b_) is isolated.
Fig. 5—Ten liver-cells: one of them (_b_) has two nuclei.
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