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
(1) The numerous objectives of the Mercury animal test program were
met. The MR-2 and MA-5 tests preceded the first ballistic and
orbital manned flights, respectively, and provided valuable
training in countdown procedures and range monitoring and recovery
techniques. The bioinstrumentation was effectively tested and the
adequacy of the environmental control system was demonstrated.
(2) A 7-minute (MR-2) and a 3-hour (MA-5) exposure to the weightless
state were experienced by the subjects in an experimental design
which left visual and tactile references unimpaired. There was no
significant change in the physiological state or performance of
the animals as measured during a series of tasks of graded
motivation and difficulty.
(3) Questions were answered concerning the physical and mental demands
that the astronauts would encounter during space flight, and it
was shown that these demands would not be excessive.
(4) It was also demonstrated that the young chimpanzee can be trained
to be a highly reliable subject for space-flight studies.
The suborbital ballistic flight of Ham on January 31, 1961, was the
prelude to Alan R. Shepard’s suborbital space flight, while the orbital
flight of Enos on November 29, 1961, preceded the orbital flight of John
H. Glenn.
The fact that we now categorize these events as belonging to the rather
distant past, although they occurred only about 4 years ago, serves to
emphasize the pace of development in the exploration of space. While the
chimpanzee program may pale in the light of subsequent successes, its
scientific and technological contribution should not be overlooked.
The significance of this project can be fully appreciated, and its
contribution judged, only by considering the lack of knowledge existing
at the time of its conception. In addition to its essential training
function, this project verified the feasibility of manned space flight
through operational tests of the Mercury life-support system. It
demonstrated that complex behavioral processes and basic physiological
functions remained essentially unperturbed during brief exposures to
space flight. The Mercury chimpanzee program marked the first time that
physiological and behavioral assessment techniques were combined for
evaluating the functional efficiency of the total organism in space.
Perhaps the ultimate contribution of this program was in providing the
framework of knowledge upon which future scientific experiments on
biological organisms, exposed to flights of extended durations, must be
based. Biosatellite experiments designed to seek more subtle and elusive
effects of prolonged space flight on biological functioning will require
even more refined and difficult techniques, but will depend heavily on
the groundwork laid in these early steps of Project Mercury.
Public-domain text, read in full here on John Shaqi.
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