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
Though it is difficult to ascertain whether some insects respire, at
least at certain periods of their existence, yet there are others to
whom the inspiration and expiration of air seems absolutely necessary:
there are many aquatic insects which are obliged to keep their tails
suspended on the surface of the water for this purpose. To prove this,
keep the tail under water, and you will perceive the insect to be
agitated and uneasy, and to seek for some opening to expose this part to
the air; if it find none, it soon goes to the bottom and dies. Some
aquatic beetles resist the trial for a considerable time, while their
larvæ can only support it for a few minutes. There is a circumstance
which renders all experiments on this subject with insects doubtful and
difficult, namely, the vast tenaciousness of the life principle in the
lower orders of animated nature, and its dissemination through their
whole frame.
Musschenbroeck inclosed the pupa of a moth in a glass tube, very little
larger than the moth itself, and of the following figure.
[Illustration]
The end A of the tube was drawn out in a capillary form, the other end
was covered with a piece of wet bladder to exclude the air; the
capillary end B was then plunged in water, which rose to D. He placed
the capillary part of the tube before a microscope, on a small
micrometer, in order to observe any motion or change in the situation of
the water; as it is evident the expiration or inspiration of air by the
insect would make it rise or fall alternately. In the first experiment
he observed a small degree of motion at distant intervals, not above two
or three times in an hour; in a second experiment on another subject, he
could observe no motion at all. He then placed some pupæ under the
receiver of an air-pump, in water which he had previously purged of its
air; on exhausting the air from the receiver, he observed one bubble to
arise in a part near the tail, and a few near the wings. The pupæ did
not swell under the operation; on the contrary, on letting in the air,
it was found to be diminished in a small degree, but in less than a
quarter of an hour it recovered its former figure. M. Martinet published
at Leyden, in 1753, a dissertation, in which, it is said, he has clearly
proved by a number of experiments that the pupæ of caterpillars and some
other insects do not respire.
OF RESPIRATION IN THE LARVA OF THE MUSCA PENDULA.
Public-domain text, read in full here on John Shaqi.
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