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Towards fully instrumented and automated assessment of motor function tests.

, , , , and . BHI, page 83-87. IEEE, (2018)

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Towards fully instrumented and automated assessment of motor function tests., , , , and . BHI, page 83-87. IEEE, (2018)Proposed Design Approach for an Interactive Feedback Technology Support in Rehabilitation., and . REHAB, page 34-37. ACM, (2015)Data Mining and Fusion of Unobtrusive Sensing Solutions for Indoor Activity Recognition., , , , , , , , and . EMBC, page 5357-5361. IEEE, (2020)Evaluating rehabilitation exercise performance using a single inertial measurement unit., , and . PervasiveHealth, page 49-56. IEEE, (2013)The use of inertial sensors for the classification of rehabilitation exercises., , and . EMBC, page 2965-2968. IEEE, (2014)Accuracy of Wrist-Worn Photoplethysmography Devices at Measuring Heart Rate in the Laboratory and During Free-Living Activities., , , , , , and . EMBC, page 6970-6973. IEEE, (2021)Biofeedback in rehabilitation, , and . Journal of neuroengineering and rehabilitation, 10 (1): 60 (2013)Quantifying Steps During a Timed Up and Go Test Using a Wearable Sensor System: A Laboratory-Based Validation Study in Healthy Young and Older Volunteers., , , , and . EMBC, page 6945-6948. IEEE, (2021)The limb movement analysis of rehabilitation exercises using wearable inertial sensors., , , and . EMBC, page 4686-4689. IEEE, (2016)Enablers and obstacles to implementing remote monitoring technology in cardiac care: A report from an interactive workshop., , , and . Health Informatics J., 26 (3): 2280-2288 (2020)