Fossils: A Story of the Rocks and Their Record of Prehistoric LifeMarkman, Harvey C.
Science
Fossils: A Story of the Rocks and Their Record of Prehistoric Life
Markman, Harvey C.
Fossils; Paleontology
Impressions of leaves are explained in much the same way except that the
leaf remains under its protective covering until it decays. Similar
impressions may be obtained from the bodies of delicate invertebrate
animals but they are seldom preserved because of the softness of the
tissues. The smaller fishes provide much better material for the
production of fossils according to this method. While the fish is being
flattened by the weight of surrounding sediments, scales, fins, and soft
bones retain their positions and provide the necessary resistance to
leave an impression of the body form when the flesh is gone.
[Illustration: Insect Fossils (enlarged)
Fine specimens of this type are obtained from an old lake bed at
Florissant, Colorado.]
The larger and more spectacular fossils, such as skeletons, skulls, and
detached bones are nearly always of the replacement type. Replacement of
plant and animal substances by mineral matter is a slow process and in
younger fossils the change is rarely completed, some of the original
material being present in a partially altered condition or not modified
at all. Since air does not often carry the necessary materials and
provide other essential conditions, replacement may be regarded as
something which happens underground or in water. It is perhaps best
explained in connection with limestones, because calcite or “lime” is
frequently the replacing substance although other minerals, especially
quartz, may serve the purpose.
Besides converting bony or woody objects into rock substance, mineral
replacements may assist in the production and preservation of fossils in
another manner. It often results in the filing of cavities with some
rock-making substance which retards destruction through crushing or
other injury. In many cases, so-called fossil shells are not shells at
all; instead, they are merely a stony filling which was once surrounded
by shell substance. In other instances the original shell remains as it
was during the life of its former occupant, preservation of the shell
being due largely to the substitution of a mineral filler for the soft
animal tissues once present.
Limestone comes into existence through a more elaborate process than
that which produces sandstone and shales. It is one of the three types
of common rocks, known collectively as the sedimentaries, in which
fossils are found. It differs from sandstones and shales, however, in
that much of its substance has been dissolved in water instead of being
transported in the form of finely ground rock particles. Lime occurs in
many varieties of rock which are exposed to the wear and tear of the
elements throughout the world. Slowly but more or less continuously it
is taken from this source by ground and surface waters coming in contact
with it. Particularly active is carbonated water, moving underground
through pores and crevices.
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