A Text-book of Entomology: Including the Anatomy, Physiology, Embryology and Metamorphoses of Insects for Use in Agricultural and Technical Schools and Colleges as Well as by the Working EntomologistPackard, A. S. (Alpheus Spring)
Science
A Text-book of Entomology: Including the Anatomy, Physiology, Embryology and Metamorphoses of Insects for Use in Agricultural and Technical Schools and Colleges as Well as by the Working Entomologist
Packard, A. S. (Alpheus Spring)
Insects
In describing the minute structure of the muscles of ants, wasps, and
bees, C. Janet states that each consists of a group of fibres diverging
from a tendon, which is an integumentary invagination (Fig. 236). Each
fibre may be regarded as a multinucleate cell; the sarcolemma represents
the cell-membrane. It forms a resistant and extremely elastic tube. The
longitudinal (Fig. 236, _E_) and radiating filaments or reticulum
(spongioplasm of Gehuchten) lie in a nutritive filling substance (the
hyaloplasm of Gehuchten). The radiating filaments are formed of an
exceedingly elastic substance, and serve to sustain the longitudinal
filaments, to transmit the nervous stimulus to them, and to bring them
back into position after contraction. Janet’s account agrees on the
whole with that of Gehuchten.
[Illustration:
FIG. 236.—Preparations from the adductor muscle of the mandible of
_Vespa crabro_, worker, fixed by heat and alcohol several hours
after leaving its cell. _A_ to _E_ × 425; _F_ × 212: _A_, terminal
cupule of the tendon of a fibre. _B_, _C_, union of the fibres with
their tendon. _D_, branch of the tendon of a muscle sending out
tendons of some of the fibres; this branch is accompanied with
numerous nervous ramifications (_N_). _E_, fragment of a nerve which
furnishes the ramifications of Fig. _D_. _F_, fragment of the tendon
of the adductor muscle of the mandible; at the left are seen the
terminal cupules of the fibres (_td, c_); on the right, on the body
of the tendons, some sessile cupules, each of which forms the
attachment of a fibre; _td, b_, tendons of the fibres.—After Janet.
]
The muscles of flight are said to be penetrated by fine tracheal
branches, probably to supply a greater amount of oxygen, as the most
energetic movements of the insect are made in moving the wings during
flight; while the other muscles of the body are only surrounded by the
air-tubes. (Sharp.)
Without entering into tedious details, the reader is referred to figures
or references to the more important systems of muscles, such as those of
the legs and other appendages, of the wings, of respiration, etc., to
the sections treating of those organs or functions; also to Figs. 16,
17, 18, 22, 48, 74, 81, 83, 84, 115, 116, 172, 173, 174, etc.
=Muscular power of insects.=—The most detailed and careful experiments
are those of Plateau. His experiments prove that even the weakest
insects pull at least five times their own weight; many of them,
however, get the better of a burden twelve to twenty fold as heavy as
themselves, while a strong man or a draught horse, for example, is not
even able to pull a burden which is equal to the weight of his body.
Plateau came to the following results as to the relation of the weight
of the body to the load drawn (1 and 2 are to be compared with each
other, 1 being the larger, and 2 the smaller insect; it will be seen
that the smaller insect is the stronger).
[Illustration:
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