Classics of modern science : $b (Copernicus to Pasteur)
History
Classics of modern science : $b (Copernicus to Pasteur)
Science; Science -- History
of quality in the metabolic phenomena depend upon their chemical
composition.
In order to render tenable the hypothesis contained in the second
point, it is merely necessary to show that crystals capable of
imbibition can unite with one another according to certain laws. If
at their first formation all crystals were isolated, if they held
no relation whatever to each other, the view would leave entirely
unexplained how the elementary parts of organisms, that is, the
crystals in question, become united to form a whole. It is therefore
necessary to show that crystals do unite with each other according
to certain laws, in order to perceive, at least, the possibility
of their uniting also to form an organism, without the need of any
further combining power. But there are many crystals in which a union
of this kind, according to certain laws, is indisputable; indeed they
often form a whole, so like an organism in its entire form, that
groups of crystals are known in common life by the names of flowers,
trees, etc. I need only refer to the ice-flowers on the windows, or
to the lead-tree, etc. In such instances a number of crystals arrange
themselves in groups around others, which form an axis. If we consider
the contact of each crystal with the surrounding fluid to be an
indispensable condition to the growth of crystals which are not capable
of imbibition, but that those which are capable of imbibition, in which
the solution can penetrate whole layers of crystals, do not require
this condition, we perceive that the similarity between organisms and
these aggregations of crystals is as great as could be expected with
such difference of substance. As most cells require for the production
of their metabolic phenomena, not only their peculiar nutrient fluid,
but also the access of oxygen and the power of exhaling carbonic acid,
or _vice versa_; so, on the other hand, organisms in which there
is no circulation of respiratory fluid, or in which at least it is not
sufficient, must be developed in such a way as to present as extensive
a surface as possible to the atmospheric air. This is the condition of
plants, which require for their growth that the individual cells should
come into contact with the surrounding medium in a similar manner,
if not in the same degree as occurs in a crystal tree, and in them
indeed the cells unite into a whole organism in a form much resembling
a crystal tree. But in animals the circulation renders the contact of
the individual cells with the surrounding medium superfluous, and they
may have more compact forms, even though the laws by which the cells
arrange themselves are essentially the same.
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