The Story of the Living Machine: A Review of the Conclusions of Modern Biology in Regard; to the Mechanism Which Controls the Phenomena of Living; ActivityConn, H. W. (Herbert William)
Philosophy
The Story of the Living Machine: A Review of the Conclusions of Modern Biology in Regard; to the Mechanism Which Controls the Phenomena of Living; Activity
Conn, H. W. (Herbert William)
Biology
to each other in such a way as to form an extraordinarily intricate
machine; and the microscopist of to-day recognizes clearly that the
activities of this material must be regarded as the result of the
machinery which makes up protoplasm rather than as the simple result of
its chemical composition. Protoplasm is a machine and not a chemical
compound.
[Illustration: FIG. 23.--A cell as it appears to the modern microscope.
_a_, protoplasmic reticulum; _b_, liquid in its meshes; _c_, nuclear
membrane; _d_, nuclear reticulum; _e_, chromatin reticulum; _f_,
nucleolus; _g_, centrosome; _h_, centrosphere; _i_, vacuole; _j_, inert
bodies.]
==Structure of Protoplasm==.--The structure of protoplasm is not yet
thoroughly understood by scientists, but a few general facts are known
beyond question. It is thought, in the first place, that it consists of
two quite different substances. There is a somewhat solid material
permeating it, usually, regarded as having a reticulate structure. It is
variously described, sometimes as a reticulate network, sometimes as a
mass of threads or fibres, and sometimes as a mass of foam (Fig. 23,
_a_). It is extremely delicate and only visible under special conditions
and with the best of microscopes. Only under peculiar conditions can it
be seen in protoplasm while alive. There is no question, however, that
all protoplasm is permeated when alive by a minute delicate mass of
material, which may take the form of threads or fibres or may assume
other forms. Within the meshes of this thread or reticulum there is
found a liquid, perfectly clear and transparent, to whose presence the
liquid character of the protoplasm is due (Fig. 23, _b_). In this liquid
no structure can be determined, and, so far as we know, it is
homogeneous. Still further study discloses other complexities. It
appears that the fibrous material is always marked by the presence of
excessively minute bodies, which have been called by various names, but
which we will speak of as _microsomes_. Sometimes, indeed, the fibres
themselves appear almost like strings of beads, so that they have been
described as made up of rows of minute elements. It is immaterial for
our purpose, however, whether the fibres are to be regarded as made up
of microsomes or not. This much is sure, that these microsomes
--granules of excessive minuteness--occur in protoplasm and are closely
connected with the fibres (Fig. 23, _a_).
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