The vagotonic nerves contract the pupil, make saliva and gastric juice
flow, slow down the heart beats, decrease the blood pressure, promote
sexual activities, etc.
The sympathetic nerves on the contrary, dilate the pupil, dry the mouth,
stop the gastric activities, increase the heart beats, raise the blood
pressure, decrease or arrest the sexual activities, etc.
In peaceful sleep, we observe that the vagotonic functions hold full sway.
In sleep, our pupils are contracted. Even when they have been dilated by
atropine, they become contracted again in sleep.
In sleep, the digestive organs continue to perform their specific work,
all the popular beliefs to the contrary notwithstanding. Infants and
animals generally go to sleep as soon as they finish feeding. Animals
digest infinitely better if allowed to sleep after being fed, than if
compelled to stay awake, walk or run.
The activity of the sexual organs is as great in sleep as in waking life;
in certain cases, it is even greater.
At certain times, during sleep, the pressure of the blood in the brain is
greatly reduced, and certain authors have concluded that sleep was
characterized by brain anaemia, which some of them consider as the cause
of sleep.
Indeed, unconsciousness can be induced by producing a temporary brain
anaemia, for instance by compressing the carotid arteries of the neck for
a minute or so. Sleepiness almost always appears then and lasts as long
as the pressure is exerted.
Special manometers show that the fall in the blood pressure invariably
precedes the appearance of sleep. In dogs whose skulls have been trephined
for purposes of observation, the brain can be seen to turn pale as soon as
the animals fall asleep.
But we have here simply one of the vagotonic activities mentioned
previously. In the normal organism, the blood pressure should be low,
rising only in emergencies, when the organism is facing some danger and
must be prepared for fight or flight.
And in fact, the slightest light, noise, pain or smell stimulus, is
sufficient to bring the blood back to the brain during sleep. Our
sympathetic nerves are on the watch and even if the subject does not wake
up, they rush the blood whenever it is needed for emergency action, in
this case, to the general switchboard of the organism, the brain.
But this so-called brain anaemia is not constant during the entire period
of sleep. The pressure falls gradually before sleep sets in and only
reaches its minimum an hour after sleep has begun. Then it increases
gradually and becomes normal again about the usual waking time. We shall
see later that attention follows an identical curve.
It has been pointed out that in sleep the respiration becomes slower and
that the amount of air inspired and consequently of oxygen assimilated is
lowered. But inaction in the waking states will show exactly the same
results.
Public-domain text, read in full here on John Shaqi.
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