Significant Achievements in Space Bioscience 1958-1964United States. National Aeronautics and Space Administration
Science
Significant Achievements in Space Bioscience 1958-1964
United States. National Aeronautics and Space Administration
Biology; Space flight
To aid in the interpretation of in-flight data, other studies are
underway to determine the functions of the vestibular system, as a
principal brain center related to orientation in space and to the
physiology of posture and movement, as well as with the influences of
acceleration, rotation, and weightlessness. Experiments are presently
being conducted on monkeys and cats in order to trace these complex
neurological connections and to determine their functional organization.
BIOLOGICAL INFORMATION SYSTEMS
The nature of memory has been the subject of considerable speculation in
the past. It has long been felt intuitively that retention of
information in the central nervous system involves either an alteration
of preexisting material or structure, or, alternatively, synthesis of
materials not present previously. The cellular site of operational
alteration was unknown but, again intuitively, was felt to be closely
associated with the synapses. The problems faced by early investigators
were great; but nevertheless much information relevant to the question
of biological information storage was obtained. With the relatively
recent advent of more refined tools and methodologies, there has been
rapid progress.
A significant amount of the work which has been conducted in the area of
biological information and communication systems is easily classified as
"basic research" (refs. [ref.106]-[ref.109]). This discussion will be
limited to those aspects closely related to the fields of molecular
biology and experimental psychology, which seem to have universal
application to all known animal life forms. Studies involving the basic
principles of acquisition, processing, storage, and retrieval of
information in living systems are emphasized.
Early Work
Early speculations on the operational nature of memory have been based
upon relatively little experimental evidence. Charles Darwin observed
that domestic rabbits had smaller brains than their wild counterparts,
and attributed this to lack of exercise of their intellect, senses, and
voluntary movements. Unfortunately, subsequent studies of the brains of
men with greatly differing intellectual capability did not substantiate
the hypothesis. Idiots sometimes had larger brains than geniuses. Later,
an idea proposed by Ramon y Cajal came into favor. Since brain cells did
not increase in number after birth, he proposed that memory involved the
establishment of new and more extended intercortical connections.
Unfortunately, methods were not available to test this hypothesis
adequately and it has remained until quite recently in the realm of
conjecture.
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