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The Fluid Processing Apparatus: from Flight Hardware to Electron MicrographsSince the early years of space biology, a major drawback in spaceflight plant experiments has been the inability to fix specimens in microgravity, relying instead on fixation after return to Earth. As there, it is of a growing interest to look at the effect of microgravity on the structure and the developmental polarity of root graviperceptive cells, or columella cells, and so, it is important to use flight hardware which allows specimen fixation in space therefore avoiding the confounding effects of rapid readaptation to gravity after landing. As part of the Bioserve Space Technologies, a Center for the Commercial Development of Space (CCDS), we now have experiment flight opportunities through the Commercial Generic Bioprocessing Apparatus (CGBA) payload. In this study the Fluid Processing Apparatus (FPA) was used to grow seedlings for a limited period of time prior to fixation of the tissue in a microgravity environment. Upon return to Earth, the samples were processed for electron microscopy. This report describes the microscopic data obtained from the two space flights (STS-54 and STS-60). In both cases, the electron micrographs of the columella cells revealed well preserved cell structure, well defined microtubules, and the presence of calcium precipitates formed by a antimonate precipitation method.
Document ID
19960021742
Acquisition Source
Kennedy Space Center
Document Type
Conference Paper
Authors
Hilaire, Emmanuel
(Kansas State Univ. Manhattan, KS United States)
Brown, Christopher S.
(Dynamac Corp. Cocoa Beach, FL United States)
Guikema, James A.
(Kansas State Univ. Manhattan, KS United States)
Date Acquired
August 17, 2013
Publication Date
January 1, 1995
Publication Information
Publication: Journal of Gravitational Physiology, Volume 2, No. 1
Subject Category
Life Sciences (General)
Accession Number
96N25017
Distribution Limits
Public
Copyright
Work of the US Gov. Public Use Permitted.
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