The commonwealth of cells : $b Some popular essays on human physiologySpurrell, H. G. F. (Herbert George Flaxman)
Science
The commonwealth of cells : $b Some popular essays on human physiology
Spurrell, H. G. F. (Herbert George Flaxman)
Human physiology
With one more fact we may now conclude the chemical survey of the body.
The blood has to pass through certain glands, or it becomes poisoned, and
this quite apart from whether the gland secretes healthily or not.
Disease of the thyroid (a ductless gland in the Adam’s apple) causes
goitre; of the suprarenal, Addison’s disease; of the pancreas, diabetes.
Whether these organs secrete some substance into the blood which
counteracts poisons formed in it, or whether they remove injurious
elements from it, is not certain, but they are necessary to keep the
great means of chemical communication in order.
NOTE.—The thyroid gland no longer secretes anything into the alimentary
canal, and its duct disappears at an early age. If, however, it become
diseased or is surgically removed, the distressing symptoms of goitre
supervene. Such a patient may be completely cured by grafting a thyroid,
excised from another animal, anywhere in his body. Doctors usually,
however, give the patient extract of sheep’s thyroid either in pills or
injections.
ESSAY III.
THE MECHANICS AND PHYSICS OF THE BODY.
I.
In the preceding essay we regarded protoplasm as a chemical factor in the
universe.
We have seen how it is always changing, always taking in food, always
giving off waste materials. We have seen, too, that it grows and that it
does work, and that in a large mass the cells which compose it share the
labour instead of each component cell performing all the vital functions.
We have now to consider the work which protoplasm does—in a word, the
mechanical effect of the chemical actions just described.
The simplest movement of protoplasm is to be seen by the aid of the
microscope in certain vegetable cells, where granules seem always
streaming about in different directions. A step higher, and we find
this streaming movement converted into movements of the whole cell.
In the simplest unicellular animals the fluid protoplasm is contained
in a membrane, or denser bounding layer, to which are attached fine
filaments springing from a minute body known as the centrosome. These
centrosomes—for there are sometimes several in a cell—seem to control the
mechanical department, just as the nucleus does the chemical. Along the
fibrils at intervals are minute globules, and by watching the distance
between them it is seen that the fibrils undergo changes in length,
pulling in the membrane when they shorten, and letting the cell flow out
in any direction when they relax. By adjusting these two movements to
balance one another, the cell can move in any direction, surround and
engulf particles of food, and assume a strange variety of shapes. (See
Diagram 1.)
[Illustration: DIAGRAM 15.—CELL DIVISION.]
In some cells, probably in all, the centrosome presides over division.
Cells, however, do not always divide in the same way. Some simply
lengthen, the nucleus also lengthening inside, become constricted in the
middle like a dumb-bell, and separate. (See Diagram 15.)
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