modern birds have no teeth, with enamel, dentine, and so forth, all
complete, the horny beak has occasionally ridges which to some extent
play the part of teeth. The inside of the Duck’s mouth is rough with
such ridges, which occur also in some other birds. The large Flamingo
was for some time regarded as a long-legged and awkward Duck that had
partially adopted the habits of a Stork, partly on account of the fact
that the inner edges of the beak were ridged in a fashion exactly
like that of the Duck. But it happens that there is a Stork, a true
Stork, in India, whose scientific name is _Anastomus_, which has
similar ridges. Ducks feed to some extent upon shellfish, which the
roughened edges of the beak are well suited to crush. The replacement
in the course of ages of true teeth by horny teeth is seen--a curiously
parallel case--in the Duck-billed Platypus of Australia, which has when
adult horny plates instead of teeth, but when young has real teeth.
Heart.
As with all vertebrated animals, birds have a centrally placed heart,
with which are connected arteries and veins, the two systems of tubes
being connected at the ends farthest away from the heart by minute
vessels--the capillaries. In relation, no doubt, to the intelligence
and activity of birds, as compared with their slower relatives, the
reptiles, we find a heart of much more perfect organisation. There
are four distinct chambers, as in the mammal, so that the arterial
and venous blood are separate, and do not commingle. The two sides of
the heart are only in indirect communication by way of the arteries
and veins and capillaries. The left ventricle gives rise to the
aorta, which is the great arterial trunk of the heart; this divides
into the carotid and other arteries, which supply the entire body,
with the exception of the lungs. The blood, which is sent out through
this vessel by the contractions of the ventricle, permeates the
system generally, and is then collected into a series of veins, which
ultimately unite into two great veins, the venæ cavæ in front, and a
large vein situated posteriorly, the inferior vena cava. These pour
the blood back into the right auricle, whence it passes at once to
the right ventricle. From the right ventricle it is driven into the
lungs, whence it is returned to the left auricle, and so into the left
ventricle to renew the circulation. The two chambers of each half of
the heart are guarded from each other by valves, which only allow
the blood to flow in the proper direction, as stated in the above
brief description of the course of the circulation. It is a curious
fact that the valve which separates the right auricle and ventricle
is a completely muscular structure, while the other is membranous.
Moreover, it does not form a complete circle, but is deficient upon
one side of the orifice. The interest of this fact is not merely in
its abnormality, its divergence from what one would expect, but in the
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