On Molecular and Microscopic Science, Volume 2 (of 2)Somerville, Mary
History
On Molecular and Microscopic Science, Volume 2 (of 2)
Somerville, Mary
Matter -- Constitution; Microscopy; Natural history
By this process an ovate shell with a mouth at one extremity may have a
succession of ovate chambers added to it, each chamber being in
continuity with its predecessor so that the whole shell will be straight
and rod-like, the last opening being the mouth. If the original shell be
globular, and if all the successive gemmæ given out be equal and
globular, the shell covering and uniting them will be like a number of
beads strung upon a straight wire. Sometimes the successive gemmæ
increase in size so that each chamber is larger than the one which
precedes it; in this case the compound shell will have a conical form,
the primary shell being the apex, and the base the last formed, the
aperture of which is the mouth of the whole shell; a great many
Foraminifera have this structure. The spiral form is very common and
much varied. A series of chambers increasing in size may coil round a
longitudinal axis, like the shell of the snail; but if each of the
successive chambers, instead of being developed exactly in the axis of
its predecessor, should be directed a little to one side, a curved
instead of a straight axis would be the result; there is a regular
gradation of forms of Foraminifera between these two types. The
convolutions are frequently flat and in one plane, but the character of
the spiral depends upon the successive enlargement or not of the
consecutive chambers; for when they open very wide and increase in
breadth, every whorl is larger than that which it surrounds; but more
commonly there is so little difference between the segments after the
spiral has made two or three turns, that the breadth of each whorl
scarcely exceeds that which precedes it.
However varied the forms may be, the mouth of the last shell is the
mouth of the whole, either for the time being or finally. For all the
chambers are connected by narrow apertures in the partitions between
them. Each chamber is occupied by a segment of the gelatinous sarcode
body of the animal, and all the segments are connected by sarcode
filaments passing through the minute apertures in the partitions between
the chambers, so that the whole constitutes one compound creature.
Public-domain text, read in full here on John Shaqi.
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