Sitting posture influence on the biomechanical responses of the seated human body to whole-body vibration

Whole-body vibration (WBV) is widely used in rehabilitation, clinical practice and sports to improve various health conditions and enhance muscle performance. However, the biomechanical mechanisms underlying these beneficial effects remain unclear. Although vibration transmission during WBV training has been investigated in standing postures, seated postures remain largely unexplored. This study investigated how three sitting postures (slouched, upright, and tense) affect vibration transmission to and through the human body during WBV exposure. Twelve healthy male participants were exposed to vertical sinusoidal vibration with amplitude of 14.3 m/s 2 and frequency of 30 Hz while seated on a force plate mounted on the vibrating platform of a WBV training machine. Vertical and fore-and-aft head accelerations and interface forces between the body and the vibrating platform were measured. The tense posture produced significantly greater vertical and fore-and-aft head accelerations than the slouched and upright postures, indicating increased vibration transmissibility to the head with upper-body stiffening. In contrast, interface forces did not differ significantly among postures. It was concluded that sitting posture influences vibration transmission to the head during WBV exposure, whereas its effect on interface forces appears limited. A tense sitting posture increases head vibration transmissibility, emphasising the importance of posture when designing safe and effective WBV interventions.

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Publication Details

Journal
Proceedings of the Institution of Mechanical Engineers Part H Journal of Engineering in Medicine
Published
2026-10-08
DOI
https://doi.org/10.1177/09544119261496003
Primary Topic
Effects of Vibration on Health
Type
article
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article

Sitting posture influence on the biomechanical responses of the seated human body to whole-body vibration

Omar Zidan, Naser Kh Nawayseh, Ammar Hummieda, Amandeep Singh
Proceedings of the Institution of Mechanical Engineers Part H Journal of Engineering in Medicine
Effects of Vibration on Health
article

Sitting posture influence on the biomechanical responses of the seated human body to whole-body vibration

Omar Zidan, Naser Kh Nawayseh, Ammar Hummieda, Amandeep Singh
article en

Abstract

Whole-body vibration (WBV) is widely used in rehabilitation, clinical practice and sports to improve various health conditions and enhance muscle performance. However, the biomechanical mechanisms underlying these beneficial effects remain unclear. Although vibration transmission during WBV training has been investigated in standing postures, seated postures remain largely unexplored. This study investigated how three sitting postures (slouched, upright, and tense) affect vibration transmission to and through the human body during WBV exposure. Twelve healthy male participants were exposed to vertical sinusoidal vibration with amplitude of 14.3 m/s 2 and frequency of 30 Hz while seated on a force plate mounted on the vibrating platform of a WBV training machine. Vertical and fore-and-aft head accelerations and interface forces between the body and the vibrating platform were measured. The tense posture produced significantly greater vertical and fore-and-aft head accelerations than the slouched and upright postures, indicating increased vibration transmissibility to the head with upper-body stiffening. In contrast, interface forces did not differ significantly among postures. It was concluded that sitting posture influences vibration transmission to the head during WBV exposure, whereas its effect on interface forces appears limited. A tense sitting posture increases head vibration transmissibility, emphasising the importance of posture when designing safe and effective WBV interventions.

Proceedings of the Institution of Mechanical Engineers Part H Journal of Engineering in Medicine
University of Waterloo (CA), University of Sharjah (AE), Polytechnique Montréal (CA)
Openalex Percentile: Top 9%
Effects of Vibration on Health
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Sitting posture influence on the biomechanical responses of the seated human body to whole-body vibration — Omar Zidan, Naser Kh Nawayseh, et al. · Proceedings of the Institution of Mechanical Engineers Part H Journal of Engineering in Medicine (2026) | TGRS Research Map | TGRS