Validation of a Manually Oscillating Chair for In-The-Field Assessment of Dynamic Visual Acuity on Crewmembers Within Hours of Returning from Long-Duration SpaceflightDue to the deconditioned state of crewmembers in the initial hours after landing, it is safer and more practical to perform a vision test while seated in a chair versus walking on a treadmill. The purpose of this study was to validate the ability of a manually operated oscillating chair to produce the oscillatory frequency and displacement equivalent of walking on a treadmill at a 4 mph pace. A fast Fourier transform (FFT)was performed on the vertical trunk acceleration to compare the peak and spread of the distribution of oscillation frequencies for each oscillating condition. Peak oscillation frequencies achieved with the manual chair were lower and more variable than those of treadmill walking and the automatic chair. This can mostly be attributed to operator fatigue. However, DVA scores across conditions were not significantly different, indicating that the manual chair can provide adequate vertical oscillation frequency and displacement with the added advantage of being portable enough for testing outside a laboratory. Furthermore the automatic chair very closely matches the oscillation frequency of treadmill walking, making it an ideal method for testing DVA in a laboratory setting.
Document ID
20170001531
Acquisition Source
Johnson Space Center
Document Type
Presentation
Authors
Kreutzberg, G. A. (KBRwyle Science, Technology and Engineering Houston, TX, United States)
Rosenberg, M. J. F. (Baylor Univ. Houston, TX, United States)
Peters, B. T. (KBRwyle Science, Technology and Engineering Houston, TX, United States)
Reschke, M. F. (NASA Johnson Space Center Houston, TX, United States)
Date Acquired
February 9, 2017
Publication Date
January 23, 2017
Subject Category
Aerospace Medicine
Report/Patent Number
JSC-CN-38509Report Number: JSC-CN-38509
Meeting Information
Meeting: 2017 Human Research Program Investigators'' Workshop