Interactive balance training integrating sensor-based visual feedback of movement performance : a pilot study in older adults

dc.contributor.authorSchwenk, Michael
dc.contributor.authorGrewal, Gurtej S.
dc.contributor.authorHonarvar, Bahareh
dc.contributor.authorSchwenk, Stefanie
dc.contributor.authorMohler, Jane
dc.contributor.authorKhalsa, Dharma S.
dc.contributor.authorNajafi, Bijan
dc.date.accessioned2021-10-26T07:15:27Z
dc.date.available2021-10-26T07:15:27Z
dc.date.issued2014-12-13eng
dc.description.abstractBackground:
Wearable sensor technology can accurately measure body motion and provide incentive feedback during exercising. The aim of this pilot study was to evaluate the effectiveness and user experience of a balance training program in older adults integrating data from wearable sensors into a human-computer interface designed for interactive training.

Methods:
Senior living community residents (mean age 84.6) with confirmed fall risk were randomized to an intervention (IG, n = 17) or control group (CG, n = 16). The IG underwent 4 weeks (twice a week) of balance training including weight shifting and virtual obstacle crossing tasks with visual/auditory real-time joint movement feedback using wearable sensors. The CG received no intervention. Outcome measures included changes in center of mass (CoM) sway, ankle and hip joint sway measured during eyes open (EO) and eyes closed (EC) balance test at baseline and post-intervention. Ankle-hip postural coordination was quantified by a reciprocal compensatory index (RCI). Physical performance was quantified by the Alternate-Step-Test (AST), Timed-up-and-go (TUG), and gait assessment. User experience was measured by a standardized questionnaire.

Results:
After the intervention sway of CoM, hip, and ankle were reduced in the IG compared to the CG during both EO and EC condition (p = .007-.042). Improvement was obtained for AST (p = .037), TUG (p = .024), fast gait speed (p = . 010), but not normal gait speed (p = .264). Effect sizes were moderate for all outcomes. RCI did not change significantly. Users expressed a positive training experience including fun, safety, and helpfulness of sensor-feedback.

Conclusions:
Results of this proof-of-concept study suggest that older adults at risk of falling can benefit from the balance training program. Study findings may help to inform future exercise interventions integrating wearable sensors for guided game-based training in home- and community environments. Future studies should evaluate the added value of the proposed sensor-based training paradigm compared to traditional balance training programs and commercial exergames.

Trial registration:
http://www.clinicaltrials.gov NCT02043834.
eng
dc.description.versionpublishedeng
dc.identifier.doi10.1186/1743-0003-11-164eng
dc.identifier.pmid25496052eng
dc.identifier.ppn1775293394
dc.identifier.urihttps://kops.uni-konstanz.de/handle/123456789/55359
dc.language.isoengeng
dc.rightsterms-of-use
dc.rights.urihttps://rightsstatements.org/page/InC/1.0/
dc.subjectWearable sensors, Exercise, Exergame, Interactive, Balance, Postural control, Older adults, Fall riskeng
dc.subject.ddc796eng
dc.titleInteractive balance training integrating sensor-based visual feedback of movement performance : a pilot study in older adultseng
dc.typeJOURNAL_ARTICLEeng
dspace.entity.typePublication
kops.citation.bibtex
@article{Schwenk2014-12-13Inter-55359,
  year={2014},
  doi={10.1186/1743-0003-11-164},
  title={Interactive balance training integrating sensor-based visual feedback of movement performance : a pilot study in older adults},
  volume={11},
  journal={Journal of NeuroEngineering and Rehabilitation (JNER)},
  author={Schwenk, Michael and Grewal, Gurtej S. and Honarvar, Bahareh and Schwenk, Stefanie and Mohler, Jane and Khalsa, Dharma S. and Najafi, Bijan},
  note={Article Number: 164}
}
kops.citation.iso690SCHWENK, Michael, Gurtej S. GREWAL, Bahareh HONARVAR, Stefanie SCHWENK, Jane MOHLER, Dharma S. KHALSA, Bijan NAJAFI, 2014. Interactive balance training integrating sensor-based visual feedback of movement performance : a pilot study in older adults. In: Journal of NeuroEngineering and Rehabilitation (JNER). BioMed Central. 2014, 11, 164. eISSN 1743-0003. Available under: doi: 10.1186/1743-0003-11-164deu
kops.citation.iso690SCHWENK, Michael, Gurtej S. GREWAL, Bahareh HONARVAR, Stefanie SCHWENK, Jane MOHLER, Dharma S. KHALSA, Bijan NAJAFI, 2014. Interactive balance training integrating sensor-based visual feedback of movement performance : a pilot study in older adults. In: Journal of NeuroEngineering and Rehabilitation (JNER). BioMed Central. 2014, 11, 164. eISSN 1743-0003. Available under: doi: 10.1186/1743-0003-11-164eng
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    <dcterms:abstract xml:lang="eng">Background:&lt;br /&gt;Wearable sensor technology can accurately measure body motion and provide incentive feedback during exercising. The aim of this pilot study was to evaluate the effectiveness and user experience of a balance training program in older adults integrating data from wearable sensors into a human-computer interface designed for interactive training.&lt;br /&gt;&lt;br /&gt;Methods:&lt;br /&gt;Senior living community residents (mean age 84.6) with confirmed fall risk were randomized to an intervention (IG, n = 17) or control group (CG, n = 16). The IG underwent 4 weeks (twice a week) of balance training including weight shifting and virtual obstacle crossing tasks with visual/auditory real-time joint movement feedback using wearable sensors. The CG received no intervention. Outcome measures included changes in center of mass (CoM) sway, ankle and hip joint sway measured during eyes open (EO) and eyes closed (EC) balance test at baseline and post-intervention. Ankle-hip postural coordination was quantified by a reciprocal compensatory index (RCI). Physical performance was quantified by the Alternate-Step-Test (AST), Timed-up-and-go (TUG), and gait assessment. User experience was measured by a standardized questionnaire.&lt;br /&gt;&lt;br /&gt;Results:&lt;br /&gt;After the intervention sway of CoM, hip, and ankle were reduced in the IG compared to the CG during both EO and EC condition (p = .007-.042). Improvement was obtained for AST (p = .037), TUG (p = .024), fast gait speed (p = . 010), but not normal gait speed (p = .264). Effect sizes were moderate for all outcomes. RCI did not change significantly. Users expressed a positive training experience including fun, safety, and helpfulness of sensor-feedback.&lt;br /&gt;&lt;br /&gt;Conclusions:&lt;br /&gt;Results of this proof-of-concept study suggest that older adults at risk of falling can benefit from the balance training program. Study findings may help to inform future exercise interventions integrating wearable sensors for guided game-based training in home- and community environments. Future studies should evaluate the added value of the proposed sensor-based training paradigm compared to traditional balance training programs and commercial exergames.&lt;br /&gt;&lt;br /&gt;Trial registration:&lt;br /&gt;http://www.clinicaltrials.gov NCT02043834.</dcterms:abstract>
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