Voice production in singing and speaking, based on scientific principles — John Stuart Mill — John Shaqi
Voice production in singing and speaking, based on scientific principles
John Stuart Mill · en
The purpose of the _outer ear_ is to collect the air vibrations and
convey them to the middle ear, which passes them on to the inner ear,
where they produce the vibrations in the fluid therein contained and
which affect the end-organ and nerve-endings, and thus initiate the
essential physiological processes in the nerve of hearing. It follows
that we have an instance of the conversion of one kind of vibrations,
those of the air, into another kind, those of fluid, which latter
furnish a sufficiently delicate stimulus or excitation of the fine
hair-like extensions (_processes_) of the cells known as
_hair-cells_, about which the nerves in their final smallest branches
wrap themselves.
[Illustration: FIG. 62 (Beaunis). Two of the bones of the ear (the
malleus or hammer and the incus or anvil) enlarged. These small
ear-bones have joints like larger ones. The line of conveyance of
vibrations is indicated by B A.]
When we ourselves hear sounds when under water, we are affected
directly by the vibrations of that water; in this case we, in our
whole body, represent the hair-cells which are stimulated by the fluid
(_endolymph_) which surrounds them.
[Illustration: FIG. 63 (Beaunis). The complete chain of bones. The
arrows indicate in a general way the direction of the line of
transmission of vibrations from the tympanic membrane on to the fluid
within the passages of the inner ear.]
The external ear, well developed in many of the lower animals, being
often highly movable, is practically immovable in man, and is wholly
wanting in some animals, as the frog. The circular plate one sees
behind the eye of the frog is the drum-head of the middle ear.
From the _drum-head_, or _tympanic membrane_, the vibrations, which
are now those of a solid, are communicated by a series of very small
bones, most beautifully linked together by perfect joints, to another
membrane, which closes a small hole in the outer wall of the inner
ear.
The _middle ear_, it will be seen, is a drum with its stretched
membrane like any other drum, and it too has a communication with the
exterior air through a tube, the _Eustachian tube_, which leads from
the drum into the back part of the throat. When one has a cold, the
mucous membrane which lines this tube may become swollen or even
catarrhal, and be so closed that no air can enter from the throat; the
air already within the drum being absorbed, the outer air presses
unduly against the drum-head, with the result that the whole
conducting apparatus is put more or less out of condition, and a
certain degree of deafness naturally results. The tension of the
drum-head is regulated by a muscle attached to the bone which is
connected with the inner part of this membrane.
It is now easy to understand how any unfavorable condition of the
throat may affect the ear, or that of the ear influence the throat.