Thus in the dog and cat but little variation was seen in the swallowing
of liquids and solids. The liquids pass somewhat faster in the upper
œsophagus. But in some animals the difference of rate with foods of
varying consistency is much more marked. In the horse, for instance,
mere observation shows a decided variation in the rate of movement
in the œsophagus. Liquids shoot along the gullet, while solids move
clearly by peristalsis. To determine the rate of solids, one hand was
placed on the larynx of a horse to note the beginning of swallowing,
and the other hand near the shoulders, where the bolus could be easily
felt in its passage. The time consumed by the bolus in passing over a
certain distance was measured by a stop watch. The rate obtained for
solids, such as hay or grain, was from thirty-five to forty centimetres
a second.
For semi-solids, a mixture of bran and water was made, thin enough to
run easily between the fingers. Each bolus was watched by a separate
observer with a separate watch. The average rate obtained was the same
as for solids.
Liquids in the horse pass with a rapidity too great to be affected
by peristalsis. Another force must be sought. Among the various
muscles supposed to be effectual in moving food into the pharynx, the
mylohyoids were shown by Meltzer to be essential. The styloglossi were
cut by him without much interference with deglutition, but section of
the mylohyoid nerves rendered the act impossible. The activity of these
muscles in the horse during swallowing is easily perceived by the hand.
Their energetic contraction is a sufficient explanation of the rapid
passage of water through the œsophagus. The motion here is more than
five times as rapid as that of solids and semi-solids.
Meltzer’s experiment to measure the rate of liquids in man by
passing a stomach tube containing litmus paper was repeated by us
with some modifications. Congo red paper was used, since it is more
sensitive than litmus; it also furnishes a means of differentiating
between mineral and organic acids, as the discolouration produced
on Congo red by mineral acids is removed by ether. It was thus
possible to distinguish between the discolouration produced by
gastric regurgitation and that produced by the swallowed liquid. For
the swallowed liquid, one-half per cent lactic acid was found most
satisfactory, as the colour produced by it on Congo red test paper is
almost instantly discharged in ether. By this method the paper was
found discoloured within half a second after the rise of the larynx,
certainly too short a period for a peristaltic wave to carry the liquid
to the neighbourhood of the cardia.
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