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2019 | OriginalPaper | Buchkapitel

Estimation of Lifting and Carrying Load During Manual Material Handling

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Abstract

Low back injuries and low back pain are often caused by improper task execution, overuse or lack of guidance and training. Our current understanding of dose-response relationships between risk factors that contribute to these injuries remains unclear. Enhanced monitoring of risk factors contributing to injuries could provide more complete exposure-response information. It is difficult to continuously monitor workers and their exposures to ergonomic risk factors using existing technologies. This paper presents a practical approach to advance continuous measurements of common risk factors by quantifying the weight of an object during lifting and carrying, lift frequency and lift duration during manual material handling (MMH). We estimate these parameters based on the ground reaction forces (GRF) and considering trunk dynamics. The results show that by considering trunk dynamics and applying simple signal processing techniques, we can precisely estimate these risk parameters. These parameters can then be used to estimate injury risk of workers. The developed methodology is designed for real-time continuous monitoring applications and sets the foundation for future development of in-field monitoring of workers with wearable sensors.

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Literatur
1.
Zurück zum Zitat Parakkat J, Yang G, Chany AM, Burr D, Marras WS (2007) The influence of lift frequency, lift duration and work experience on discomfort reporting. Ergonomics 50(3):396–409CrossRef Parakkat J, Yang G, Chany AM, Burr D, Marras WS (2007) The influence of lift frequency, lift duration and work experience on discomfort reporting. Ergonomics 50(3):396–409CrossRef
3.
Zurück zum Zitat Waters TR, Putz-Anderson V, Garg A, Fine L (1993) Revised NIOSH equation for the design and evaluation of manual lifting tasks. Ergonomics 36(7):749–776CrossRef Waters TR, Putz-Anderson V, Garg A, Fine L (1993) Revised NIOSH equation for the design and evaluation of manual lifting tasks. Ergonomics 36(7):749–776CrossRef
4.
Zurück zum Zitat Waters TR, Putz-Anderson V, Garg A (1994) Applications manual for the revised NIOSH lifting equation, Cincinnati, OH, US, pp 1–156. DHHS (NIOSH) Publication No. 94-110 Waters TR, Putz-Anderson V, Garg A (1994) Applications manual for the revised NIOSH lifting equation, Cincinnati, OH, US, pp 1–156. DHHS (NIOSH) Publication No. 94-110
5.
Zurück zum Zitat Faber GS, Koopman AS, Kingma I, Chang CC, Dennerlein JT, van Dieën JH (2018) Continuous ambulatory hand force monitoring during manual materials handling using instrumented force shoes and an inertial motion capture suit. J Biomech 70(21):235–241CrossRef Faber GS, Koopman AS, Kingma I, Chang CC, Dennerlein JT, van Dieën JH (2018) Continuous ambulatory hand force monitoring during manual materials handling using instrumented force shoes and an inertial motion capture suit. J Biomech 70(21):235–241CrossRef
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Zurück zum Zitat Winter DA (2009) Biomechanics and motor control of human movement, 4th edn. Willey, HobokenCrossRef Winter DA (2009) Biomechanics and motor control of human movement, 4th edn. Willey, HobokenCrossRef
Metadaten
Titel
Estimation of Lifting and Carrying Load During Manual Material Handling
verfasst von
Mitja Trkov
Andrew S. Merryweather
Copyright-Jahr
2019
DOI
https://doi.org/10.1007/978-3-319-96068-5_17