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
I shall now proceed to illustrate the nature of the different
transformations in insects, by giving an account of the musca chamæleon.
In the worm or larva condition it lives in the water, breathes by the
tail, and carries its legs within a little snout near its mouth. When
the time arrives for its pupa state, it goes through the change without
casting off the skin of the larva. Lastly, in the imago, or fly state,
it would infallibly perish in the water, that element which had hitherto
supplied it with life and motion, was not the larva by nature instructed
where to choose a suitable situation for its approaching transformation.
This insect is characterized by Linnæus as “Musca chamæleon. Habitat
larva in aquis dulcibus; musca supra aquam obambulare solet.” In a
former edition of the Fauna Suecica he called it oestrus aquæ; but on a
more minute examination, he found it was a musca; besides, the larvæ of
all known oestri are nourished in the bodies of animals. The larva of
this insect appears to consist of twelve annular divisions, see Plate
XI. Fig. 1. by these it is separated into a head, thorax, and abdomen;
but as the stomach and intestines lie equally in the thorax and
abdomen, it is not easy to distinguish their limits until the insect
approaches the pupa state. The parts most worthy of notice are the tail
and snout. The tail is furnished with an elegant crown or circle of hair
b, disposed quite round it in an annular form; by means of this the tail
is supported on the surface of the water, while the worm or larva is
moving therein, the body in the mean while hanging towards the bottom;
it will sometimes remain in this situation for a considerable time,
without the least sensible motion. When it is disposed to sink to the
bottom by means of its tail, it generally bends the hairs of that part
towards each other in the middle, but much closer towards the extremity;
by these means a hollow space is formed, and the bladder of air pent up
in it looks like a pearl, Fig. 2. Plate XI. It is by the assistance of
this bubble, or little balloon, that the insect raises itself again to
the surface of the water. If this bubble escape, it can replace it from
the pulmonary tubes; sometimes large quantities of air may be seen to
arise in bubbles from the tail of the worm to the surface of the water,
and there mix with the incumbent atmosphere. This operation may be
easily seen by placing the worm in a glass full of water, where it will
afford a very entertaining spectacle. The snout is divided into three
parts, of which that in the middle is immoveable; the two other parts
grow from the sides of the former; these are moveable, vibrating in a
very singular manner, like the tongues of lizards and serpents. The
greatest strength of the creature is fixed in these lateral parts of the
snout; it is on these that it walks when it is out of the water,
appearing, as it were to walk on its mouth, using it to assist motion,
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