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March 4, 2026European Journal of Applied Physiology0 citationsOpen Access

Postural stability and muscle co-activation among younger adults adapting to an immersive virtual reality

URUlrik RöijezonEHErik HanssonJNJenny Älmqvist Nae

Key Points

  • This research aims to explore how postural control adapts in immersive virtual reality (VR) environments by examining the relationship between postural stability and muscle co-contractions.
  • Twenty-eight young adults participated in five VR simulation sessions of a roller coaster ride.
  • A force platform measured postural stability, while electromyography recorded muscle co-contractions.
  • Two control tests (eyes open and closed) were conducted to compare with VR sessions.
  • The first VR session showed significant increases in postural stability energy and muscle co-contraction levels compared to the eyes open control test.
  • Repeated VR sessions led to reduced postural stability energy and muscle co-contraction levels.
  • Postural stability and muscle co-contractions became more closely associated during VR stimulation.

Abstract

Immersive visual environment can deceive our interoceptive perception of how we move relative to our environment. If the visual environment or a high reliance on vision produces straining work conditions, motion sickness or is associated with a medical disorder, the causes merit addressing. Therefore, the purpose of this study was to investigate whether postural control adapts to challenging visual environments from VR by adjusting postural stability and muscle co-contractions responses and investigate associations between stability measures and postural muscle co-contractions during VR-stimulation and control tests in quiet stance. Twenty-eight young adults participated (mean age 25.3 years, SD 4.6 years). In five sessions, they watched a VR simulation of a roller coast ride while a force platform recorded postural stability and electromyography recorded muscle co-contractions in leg muscles. Two control tests (quiet stance with eyes open and eyes closed), were performed before the VR sessions. The first VR session significantly increased the postural stability energy (p ≤ 0.002) and the muscle co-contraction levels (p ≤ 0.008) compared with the eyes open control test. Repeated VR sessions produced an adaptation that decreased postural stability energy (p ≤ 0.033) and muscle co-contraction levels (p ≤ 0.028). VR-stimulation made the association between postural stability responses and muscle co-contractions more prominent. Immersive visual environments can produce marked challenges to postural control, but the repeated experiences can also initiate sensory reweighting increasing resilience to visual disturbance.

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Cite This Study

Röijezon et al. (2026) studied this question.

synapsesocial.com/papers/69a7cd1dd48f933b5eed91b5https://doi.org/10.1007/s00421-026-06177-x
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