Biomedical applications of NASA science and technology Final report, 15 Jun. 1966 - 14 Jun. 1967
Information retrieval efforts by biomedical applications team to supply clinical and research personnel with NASA science and technology
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Information retrieval efforts by biomedical applications team to supply clinical and research personnel with NASA science and technology
Biomedical technology transfers of NASA science and technology
Biomedical problem abstracts for identifying advanced technology for application to medical problems
Biomedical applications of new techniques and equipment from aerospace technology
Biomedical data from U.S. manned space flight experience including cardiovascular and central nervous systems, blood composition changes, etc
Possible decompression effects in supersonic transport cabin in terms of biomedical considerations for passenger safety
Biomedical applications team efforts to match biological and medical problems with NASA technology developments
Biomedical engineering principles applied to medicine and biology
Signal conditioning methods and equipment used for inflight recording of pilot biomedical data
Quarterly operations summary of center for selective dissemination of biomedical information within Technology Utilization program
Spacecraft image processing techniques evaluated for biomedical applications
Biomedical applications of aerospace generated technology, 1 June to 31 August 1968
Miniature electronic systems for biomedical instrumentation and monitoring physiological parameters in small animals, surveying amplifiers and telemetry
Biomedical data analysis and display system at Mission Control Center, tracing information from sensors to consoles
Biomedical data from U.S. manned space flight experience including cardiovascular and central nervous systems, blood composition changes, etc
Remotely-actuated biomedical switching circuit using transistors consumes no power in the off position and can be actuated by a single-frequency telemetry pulse to control implanted instrumentation. Silicon controlled rectifiers permit the circuit design which imposes zero drain on supply batteries when not in use.
Computerized image enhancement techniques used on biomedical radiographs and photomicrographs
Biomedical applications of aerospace generated technology