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. 2017 Nov 7:64:186-197.
doi: 10.1016/j.jbiomech.2017.09.037. Epub 2017 Oct 7.

Wearable technology for spine movement assessment: A systematic review

Affiliations

Wearable technology for spine movement assessment: A systematic review

Enrica Papi et al. J Biomech. .

Abstract

Continuous monitoring of spine movement function could enhance our understanding of low back pain development. Wearable technologies have gained popularity as promising alternative to laboratory systems in allowing ambulatory movement analysis. This paper aims to review the state of art of current use of wearable technology to assess spine kinematics and kinetics. Four electronic databases and reference lists of relevant articles were searched to find studies employing wearable technologies to assess the spine in adults performing dynamic movements. Two reviewers independently identified relevant papers. Customised data extraction and quality appraisal form were developed to extrapolate key details and identify risk of biases of each study. Twenty-two articles were retrieved that met the inclusion criteria: 12 were deemed of medium quality (score 33.4-66.7%), and 10 of high quality (score >66.8%). The majority of articles (19/22) reported validation type studies. Only 6 reported data collection in real-life environments. Multiple sensors type were used: electrogoniometers (3/22), strain gauges based sensors (3/22), textile piezoresistive sensor (1/22) and accelerometers often used with gyroscopes and magnetometers (15/22). Two sensors units were mainly used and placing was commonly reported on the spine lumbar and sacral regions. The sensors were often wired to data transmitter/logger resulting in cumbersome systems. Outcomes were mostly reported relative to the lumbar segment and in the sagittal plane, including angles, range of motion, angular velocity, joint moments and forces. This review demonstrates the applicability of wearable technology to assess the spine, although this technique is still at an early stage of development.

Keywords: Kinematics; Kinetics; Motion analysis; Spine; Wearable sensor.

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Figures

Fig. 1
Fig. 1
Flow diagram depicting the review process.

References

    1. Alonge F., Cucco E., D’Ippolito F., Pulizzotto A. The use of accelerometers and gyroscopes to estimate hip and knee angles on gait analysis. Sensors. 2014;14:8430–8446. - PMC - PubMed
    1. Bartalesi, R., Lorussi, F., De Rossi, D., Tesconi, M., Tognetti, A., 2010. Wearable monitoring of lumbar spine curvature by inertial and e-textile sensory fusion. In: Annual International Conference of the IEEE Engineering in Medicine and Biology, Buenos Aires, pp. 6373–6376. - PubMed
    1. Baten, C.T.M., Oosterhoff, P., Kingma, I., Veltink, P.H., Hermens, H.J., 1996. Inertial sensing in ambulatory back load estimation. In: Proceedings of 18th Annual International Conference of the IEEE Engineering in Medicine and Biology Society, Amsterdam, pp. 497–498.
    1. Bonato P. Wearable sensors and systems. IEEE Eng. Med. Biol. Mag. 2010;29:25–36. - PubMed
    1. Boocock M.G., Jackson J.A., Burton A.K., Tillotson K.M. Continuous measurement of lumbar posture using flexible electrogoniometers. Ergonomics. 1994;37:175–185. - PubMed

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