The Physical Basis of Mind: Being the Second Series of Problems of Life and Mind.Lewes, George Henry
Philosophy
The Physical Basis of Mind: Being the Second Series of Problems of Life and Mind.
Lewes, George Henry
Mind and body; Psychophysiology
I pass over the resemblances and differences observed in the earliest
stages of development, marked as they are, and direct attention to the
fact, that down at what must be considered the very lowest organic
region, we meet with differences not less striking than those met with
in the highest, we find structures (if structures they may be called),
which cannot be affiliated, so widely divergent is their composition.
The structureless vibrio, for example, is not only capable of living
in a medium destitute of Oxygen, but is, according to M. Pasteur,
actually killed by oxygen; whereas the equally simple bacteria can
no more dispense with Oxygen than other animals can. Consider for a
moment the differences implied in the fact that one organism cannot
even form an enveloping membrane to contain its protoplasm, whereas
another contrives to secrete an exquisite shell; yet between the
naked Rhizopod and the shelled Rhizopod our lenses and reagents fail
to detect a difference. One Monad can assimilate food of only one
kind, another Monad assimilates various kinds.[73] What a revelation
of chemical differences appears in the observations of M. Pasteur
respecting the vibrio and bacteria, in a fermentescible liquid--the
former beginning the putrid fermentation which the latter completes!
We cannot doubt that some marked difference must exist between the
single-celled organism which produces alcoholic fermentation, and that
which produces acetic fermentation, and that again which produces
butyric fermentation; and if we find distinctions thus established
at the lowest region of the organic series, we need not marvel if
the distinctions become wider and more numerous as the series becomes
more diversified. The structure and development of an organism are
dependent on the affinities of its constituent molecules, and it is
a biological principle of great importance which Sir James Paget
insists on, when he shows how “the existence of certain materials
in the blood may determine the formation of structures in which
they may be incorporated.”[74] _Any_ initial diversity may thus
become the starting-point of a considerable variation in subsequent
evolution.[75] Thus, supposing that on a given spot there are a dozen
protoplasts closely resembling each other, yet each in some one detail
slightly varying; if this variation is one which, by its relations to
the external medium, admits of a difference in the assimilation of
materials present in the medium, it may be the origin of some _new
direction_ in development, and the ultimate consequence may be the
formation of a shell, an internal skeleton, a muscle, or a nerve.
Were this not so, it would be impossible to explain such facts as
that chitine is peculiar to the Articulata, cellulose to Molluscoida,
carbonates of lime to Mollusca and Crustacea, and phosphates to
Vertebrata--all assimilated from the same external medium. But we
see that from this medium one organism selects the materials which
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