The Body at Work: A Treatise on the Principles of Physiology — John Shaqi
The Body at Work: A Treatise on the Principles of PhysiologyHill, Alex
Science
The Body at Work: A Treatise on the Principles of Physiology
Hill, Alex
Physiology
Every plant, every animal, commences its existence as a single cell.
An organism which is permanently unicellular divides. Each of the
separate cells into which it divides is a new individual. Higher
plants set aside certain cells as ovules, which in due course, after
conjugation with pollen grains, grow into plants. In the same way the
ova of animals, by repeated cell division, reproduce the species. The
individual commences as a single cell. Its complicated body, composed
of various organs and various tissues, is formed by the multiplication
of cells. Each of the innumerable cells of which it is composed has
the structure, and may therefore be presumed capable of performing
all the various functions, of a unicellular organism. But it does not
follow that the cells retain their individuality. Even unicellular
plants (_e.g._, the extraordinary vinegar and tan fungi, myxomycetes)
may for a time merge their individuality in a common mass formed by the
aggregation of many cells.
The cells of higher plants are not always, or even generally,
anatomically distinct. Their protoplasm, the essential part of every
cell, is united with the protoplasm of neighbouring cells by threads
which traverse the cell-walls. The cells of the connective tissues
of animals are united into a web, or syncytium. This is especially
noticeable during early stages of growth. Nerve-cells are connected
together by conducting filaments (neuro-fibrillæ). It is possible
that nerve-cells and the muscle-fibres which they innervate are from
the beginning united by nerve-filaments—that the nerve-cell and
muscle-cell grow apart without severing this thread-like connection.
Certain anatomists regard the nerve strand which connects a cell in
the central nervous system with a number of muscle-fibres, placed,
it may be, at a great distance from the nerve-cell, as the bridge
which has never been broken in the process of cell division and
displacement, which made one primitive cell into a nerve-cell and a
group of muscle-cells. Muscle-fibres are not separate cells, but cell
complexes. Each muscle-fibre contains scores, in some cases hundreds,
of nuclei (Fig. 16). It is a cylinder, perhaps 2 inches long, in which
cell division is incomplete. Tendons are bundles of exceedingly slender
fibres which lie side by side, like silk threads in a skein. The row of
cells which gives rise to a tendon undergoes incomplete cell division.
Their nuclei divide, and a small quantity of soft body-substance is
set apart for each nucleus. The rest of the mass consists of fused
cells. It constitutes a continuous rod, which becomes fibrillated as
it grows. Vegetable cells are separated by cell-walls. Animal cells
tend to develop intermediate partitions; but the partitions are so
thick that they can no longer be described as walls. In cartilage the
cell-bodies are embedded in a great mass of intercellular substance,
or matrix. In this intercellular substance elaborate developments may
take place.
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