Essays on the Microscope: Containing a Practical Description of the Most Improved Microscopes, a General History of Insects, etc., etc.Adams, George
Science
Essays on the Microscope: Containing a Practical Description of the Most Improved Microscopes, a General History of Insects, etc., etc.
Adams, George
Insects -- Early works to 1800; Microscopy -- Early works to 1800
sufficient for the purposes of respiration, he plunged some partially in
water, so that only two or more spiracula remained in the open air: in
these cases the caterpillar did not become torpid as it did when they
were all immerged in water. One caterpillar, upon which Bonnet made his
experiments, lived eight days suspended in water, with only two of its
anterior spiracula in the air; during this time he observed, that when
the insect moved itself, little streams of bubbles issued from the
anterior spiracula on the left side; from this, and many other
experiments, it appeared to him, that amongst all the eighteen
spiracula, the two anterior and the two posterior are of the greatest
use in respiration.[79] Sometimes when the apertures of these have been
stopped with oil, the caterpillar has fallen into convulsions. If the
posterior part had been oiled, that part became paralytic.
Notwithstanding these experiments, and many more which have been made,
the subject is far from being decided, and many still doubt whether
there is any respiration in insects similar to ours, at least at certain
periods of their life. This opinion seems to be further confirmed by the
experiments of M. Lyonet. He confined several large musk beetles under a
glass for more than half an hour, exposed to the fumes of burning
sulphur; and, though during their continuance there the vapour was so
thick that he could not see them, yet on their being liberated, they did
not seem at all effected thereby.[80]
[79] Philos. Trans. vol. xlv. p. 300.
[80] Lesser Theologie des Insectes, tom. 1, p. 124. Ibid. p. 126.
Supposing respiration to be absolutely necessary to the existence of the
pupæ of different insects, when we reflect on the great solidity of
their cases or cones, it is not easy to conceive how they can live
several months under the earth, in spaces so confined, and almost
impervious to the air: and indeed if they did respire, the same
situation seems to preclude a continuance of the operation, as the air
would soon be corrupted, and unfit for the offices of life. As the
tracheæ are divided and subdivided to a prodigious degree of minuteness,
it has been conjectured by some writers, that they may act as so many
sieves, which, by separations properly contrived, filtrate the air, and
so furnish it to the body of different degrees of purity and subtilty,
agreeable to the purposes and nature of the various parts. The
experiments that have been made with the air-pump are by no means
conclusive; the injury which the insect sustains when the atmospheric
pressure is taken from the body, does not prove that it inspired and
expired the air that we have removed; it only shews that an incumbent
pressure is necessary to their comfortable existence, as it prevents the
fluids from disengaging themselves in an aerial form, and as it
counterbalances and re-acts on the principle of life, and, by keeping
the action thereof in proper tone and order, confines and regulates its
energies.
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