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Erschienen in: European Journal of Applied Physiology 7/2019

08.05.2019 | Original Article

A novel approach for establishing fitness standards for occupational task performance

verfasst von: Jeffrey W. Ryder, Paul Fullmer, Roxanne E. Buxton, J. Brent Crowell, Elizabeth Goetchius, Omar Bekdash, John K. DeWitt, Emma Y. Hwang, Alan Feiveson, Kirk L. English, Lori L. Ploutz-Snyder

Erschienen in: European Journal of Applied Physiology | Ausgabe 7/2019

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Abstract

Purpose

To identify strength and performance thresholds below which task performance is impaired.

Methods

A new weighted suit system was used to manipulate strength-to-body-weight ratio during the performance of simulated space explorations tasks. Statistical models were used to evaluate various measures of muscle strength and performance on their ability to predict the probability that subjects could complete the tasks in an acceptable amount of time. Thresholds were defined as the point of greatest change in probability per change in the predictor variable. For each task, median time was used to define the boundary between “acceptable” and “unacceptable” completion times.

Results

Fitness thresholds for four space explorations tasks were identified using 23 physiological input variables. Area under receiver operator characteristic curves varied from a low of 0.68 to a high of 0.92.

Conclusion

An experimental analog for altering strength-to-body weight combined with a probability-based statistical model for success was suitable for identifying thresholds for task performance below which tasks could either not be completed or time to completion was unacceptably high. These results provide data for strength recommendations for exploration mission ambulatory task performance. Furthermore, the approach can be used to identify thresholds for other areas where occupationally relevant tasks vary considerably.
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Metadaten
Titel
A novel approach for establishing fitness standards for occupational task performance
verfasst von
Jeffrey W. Ryder
Paul Fullmer
Roxanne E. Buxton
J. Brent Crowell
Elizabeth Goetchius
Omar Bekdash
John K. DeWitt
Emma Y. Hwang
Alan Feiveson
Kirk L. English
Lori L. Ploutz-Snyder
Publikationsdatum
08.05.2019
Verlag
Springer Berlin Heidelberg
Erschienen in
European Journal of Applied Physiology / Ausgabe 7/2019
Print ISSN: 1439-6319
Elektronische ISSN: 1439-6327
DOI
https://doi.org/10.1007/s00421-019-04152-3

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