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Jump-Down Performance Alterations after Space FlightINTRODUCTION: Successful jump performance requires functional coordination of visual, vestibular, and somatosensory systems, which are affected by prolonged exposure to microgravity. Astronauts returning from space flight exhibit impaired ability to coordinate effective landing strategies when jumping from a platform to the ground. This study compares jump strategies used by astronauts before and after flight, changes to those strategies within a test session, and recoveries in jump-down performance parameters across several postflight test sessions. These data were obtained as part of an ongoing interdisciplinary study (Functional Task Test, FTT) designed to evaluate both astronaut postflight functional performance and related physiological changes. METHODS: Seven astronauts from short-duration (Shuttle) and three from long-duration (International Space Station) flights performed 3 two-footed jumps from a platform 30 cm high onto a force plate that measured the ground reaction forces and center-of-pressure displacement from the landings. Neuromuscular activation data were collected from the medial gastrocnemius and anterior tibialis of both legs using surface electromyography electrodes. Two load cells in the platform measured the load exerted by each foot during the takeoff phase of the jump. Data were collected in 2 preflight sessions, on landing day (Shuttle only), and 1, 6, and 30 days after flight. RESULTS: Postural settling time was significantly increased on the first postflight test session and many of the astronauts tested were unable to maintain balance on their first jump landing but recovered by the third jump, showing a learning progression in which performance improvements could be attributed to adjustments in takeoff or landing strategy. Jump strategy changes were evident in reduced air time (time between takeoff and landing) and also in increased asymmetry in foot latencies on takeoff. CONCLUSIONS: The test results revealed significant decrements in astronauts abilities to maintain balance and achieve a postural stability upon landing from a jump early after flight. However, the jump landing adaptation process often begins after the first jump with full recovery of most performance parameters within days after space flight. As expected, performance of ISS astronauts on the first day after flight was similar to that of Shuttle crewmembers on landing day.
Document ID
20110014821
Acquisition Source
Johnson Space Center
Document Type
Abstract
Authors
Reschke, M. F.
(NASA Johnson Space Center Houston, TX, United States)
Kofman, I. S.
(Wyle Integrated Science and Engineering Group Houston, TX, United States)
Cerisano, J. M.
(Wyle Integrated Science and Engineering Group Houston, TX, United States)
Fisher, E. A.
(Wyle Integrated Science and Engineering Group Houston, TX, United States)
Peters, B. T.
(Wyle Integrated Science and Engineering Group Houston, TX, United States)
Miller, C. A.
(Wyle Integrated Science and Engineering Group Houston, TX, United States)
Harm, D. L.
(NASA Johnson Space Center Houston, TX, United States)
Bloomberg, J. J.
(NASA Johnson Space Center Houston, TX, United States)
Date Acquired
August 25, 2013
Publication Date
January 1, 2011
Subject Category
Aerospace Medicine
Report/Patent Number
JSC-CN-24506
Report Number: JSC-CN-24506
Meeting Information
Meeting: 32nd Annual International Gravitational Physiology Meeting
Location: San Jose, CA
Country: United States
Start Date: November 2, 2011
End Date: November 6, 2011
Distribution Limits
Public
Copyright
Public Use Permitted.
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