The Cambridge natural history, Vol. 03 (of 10)Cooke, A. H. (Alfred Hands)
Science
The Cambridge natural history, Vol. 03 (of 10)
Cooke, A. H. (Alfred Hands)
Animals
Land Mollusca can sustain, for a considerable time, complete
deprivation of atmospheric air. Helices placed in an exhausted receiver
show no signs of being inconvenienced for about 20 hours, and are able
to survive for about two or three days. If detained under water, they
are very active for about 6 hours, then become motionless, the body
swells, owing to the water absorbed, and death ensues in about 36
hours. Immersion for only 24 hours is generally followed by recovery.
In the latter case, the cause of death is not so much deprivation
of air as compulsory absorption of water by the skin. The amount of
water thus taken up is surprising. Spallanzani found that a _Helix_
which weighed 18 grammes increased in weight by 13½ grammes after a
prolonged immersion. Even slugs enclosed in moist paper gained more
than 2 grammes in the course of half an hour. Experiment has shown
that the amount of carbonic acid gas produced by respiration stands in
direct relation to the amount of food consumed. Four pairs of snails
were taken which had recently awakened from their winter sleep and had
eaten heartily, and an equal number, under the same circumstances,
which had been prevented from eating. It was found that the first
four pairs produced, in consuming a given amount of oxygen, 11, 9,
10, and 13 parts respectively of carbonic acid, while the second
set produced, in consuming the same amount of oxygen, only 4, 8, 7,
and 9 parts of carbonic acid.[274] Hibernating Helices, if weighed
in December and again in April, will be found to have lost weight,
due to the expiration of carbonic acid. Owing to the difficulty of
experiment, opinions vary as to the absolute temperature of snails. It
appears to be established that several snails, if placed together in
a tube, raise the temperature one or two degrees C., but as a rule,
the temperature of a solitary _Helix_ differs very slightly from that
of the surrounding air. Increased activity, whether in respiration or
feeding, is found to raise the temperature.
[Illustration: FIG. 72.--_Cardium edule_ L.: =A=, anal; =B=,
branchial siphon; =F=, foot. (After Möbius.)]
W. H. Dall, writing of the branchia in _Pelecypoda_, remarks[275]
that there can be no doubt that its original form was a simple
pinched-up lamella or fold of the skin or mantle. This, elongated,
becomes a filament. Filaments united by suitable tissue, trussed,
propped, and stayed by a chitinous skeleton, result in the forms,
wonderful in number and complexity, which puzzle the student to
describe, much more to classify.
[Illustration: FIG. 73.--_Scrobicularia piperata_ Gmel., in its
natural position in the sand: =A=, efferent or anal siphon; =B=,
afferent or branchial siphon. (After Möbius.)]
Public-domain text, read in full here on John Shaqi.
Reviews
Reviews
No reviews yet
Be the first to share your thoughts on this work.
Elsewhere in the archive
Join the Discussion
Join the discussion
Sign in to leave a comment or review.
Sign InorCreate an account