The human foot and the human handHumphry, George Murray, Sir
Science
The human foot and the human hand
Humphry, George Murray, Sir
Foot; Hand
of hay, baskets full of bitter beer, and various things intended to
minister to the comfort and luxury of travellers and the inhabitants at
the top. So effectual, indeed, are the provisions for security that,
notwithstanding the freedom and variety of their movements, the joints
of the foot with the leg, and of the head with the spine, are, in
proportion to their size, the strongest in the body.
I have stated the movements that take place in the three joints of
the foot with the leg in a simple manner, for the sake of avoiding
confusion. In reality, however, they are not so simple, but very
difficult to analyse and make out correctly. The difficulty is due,
partly, to the close proximity of the joints to one another, which
renders it no easy matter to distinguish the movements of one from
those of the others, and, partly, to the fact that the movements in
each joint are a little oblique.
In the latter respect the foot-joints resemble most of the others in
the body; and it is this _obliquity_ in the movements of the joints,
added to the _curves_ and _twists_ in the shape of the bones, that
constitutes one of the chief difficulties in investigating and clearly
understanding the mechanism of the human frame. It has been said
that “Nature abhors a vacuum:” it may with equal truth be said that
she abhors a straight line. In the Human Skeleton, at any rate, all
the bones are bent and twisted, some in two or three directions; and
the surfaces by which any bone is jointed to the adjacent bones, are
invariably oblique with regard to each other.
[Illustration: Fig. 9.]
Take, for instance, the _tibia_, or large bone of the leg, of which
a front view and an inner side view are given in the drawings. The
tibia is a column transmitting weight from the thigh to the foot;
and in any machine of man’s construction a column fulfilling similar
purposes would be made straight and of uniform diameter throughout.
The bone, on the contrary, does not present the same thickness at any
two parts of its length. It has a distinct bend, forwards, in nearly
its whole length (fig. 10): there are lateral curves, alternating
like those in the letter S, seen along its front (fig. 9): and
the articular surface at the lower end is placed obliquely with regard
to that at its upper end, in consequence of a twist in the shaft, in
such a manner that when the hinder surface of the upper end of the bone
rests upon a board, the lower end touches the board only by its outer
corner (fig. 10). This disposition of the lower end, I may remark,
assists to give the foot a slant outwards from the heel to the toe, so
that when we stand, with the heels together, the great toes of the two
feet diverge a little from one another.
[Illustration: Fig. 10.]
Public-domain text, read in full here on John Shaqi.
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