VALVES similar in construction to those already described (the semilunar
valves of the heart, page 114) are placed at convenient intervals, in
order to guide the blood in its course, and prevent its setting backward.
[Footnote: Too much standing, or tight elastics, often cause the veins in
the leg to swell, so that the valves can not work; the veins then become
_varicose_, or permanently enlarged, and, if they burst, the bleeding
may be profuse and even dangerous. Raising the leg and pressing the finger
on the bleeding spot will stay it. Walking does not encourage this
disease, for the active muscles force on the venous blood. Clerks who are
subject to varicose veins should have seats behind the counters where they
may rest when not actually employed. A deep breath helps the flow in the
veins, and a wound may suck in air with fatal effect. A maimed horse is
most mercifully killed by blowing a bubble of air into the veins of his
neck. As the deep-sea pressure would burst valves, the whale has none;
hence a small wound by the harpoon causes him to bleed to death.--
MAPOTHER.] We can easily examine the working of these valves. On baring
the arm, blue veins may be seen running along the arm toward the hand.
Their diameter is tolerably even, and they gradually decrease in size. If
now the finger be pressed on the upper part of one of these veins, and
then passed downward so as to drive its blood backward, swellings like
little knots will make their appearance. Each of these marks the location
of a valve, which is closed by the blood we push before our finger. Remove
the pressure, and the valve will swing open, the blood set forward, and
the vein collapse to its former size.
FIG. 40.
[Illustration: _Valves of the Veins._]
THE CAPILLARIES (_capillus,_ a hair) form a fine network of tubes,
connecting the ends of the arteries with the veins. They blend, however,
with the extremities of these two systems, so that it is not easy to tell
just where an artery ends and a vein begins. So closely are they placed,
that we can not prick the flesh with a needle without injuring, perhaps,
hundreds of them. The air cells of the blood deposit there their oxygen,
and receive carbonic acid, while in the delicate capillaries of the lungs
[Footnote: The capillary tubes are there so fine that the disks of the
blood have to go one by one, and are sadly squeezed at that. However,
their elasticity enables them to resume their old shape as soon as they
have escaped from this labyrinth.] they give up their load of carbonic
acid in exchange for oxygen.
FIG. 41.
[Illustration: _Circulation of the Blood in the Web of a Frog's Foot,
highly magnified._ A, _an artery;_ B, _capillaries crowded with
disks, owing to a rupture just above, where the disks are jammed into an
adjacent mesh;_ C, _a deeper vein; the black spots are pigment
cells._]
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