Proceedings of the ACM on Interactive Mobile Wearable and Ubiquitous Technologies · 2017 · 101 citations · 27 references
Gait AnalysisWearable TechnologyMovement BiomechanicsEms FeedbackMotor ControlMovement AnalysisKinesiologyApplied PhysiologySport PhysiologyRehabilitation EngineeringReal-time Ems FeedbackHealth SciencesRehabilitationTerminal FeedbackExercise ScienceExercise PhysiologyElectromyographyHuman MovementMedicine
In running, knee-related injuries are very common. The main cause are high impact forces when striking the ground with the heel first. Mid- or forefoot running is generally known to reduce impact loads and to be a more efficient running style. In this paper, we introduce a wearable running assistant, consisting of an electrical muscle stimulation (EMS) device and an insole with force sensing resistors. It detects heel striking and actuates the calf muscles during the flight phase to control the foot angle before landing. We conducted a user study, in which we compared the classical coaching approach using slow motion video analysis as a terminal feedback to our proposed real-time EMS feedback. The results show that EMS actuation significantly outperforms traditional coaching, i.e., a decreased average heel striking rate, when using the system. As an implication, EMS feedback can generally be beneficial for the motor learning of complex, repetitive movements.
27
Tom F. Novacheck · Gait & Posture · 1998 · 1.2K citations
Personal tracking as lived informatics
John Rooksby, Mattias Rost, Alistair Morrison et al. · 2014 · 615 citations
Foot Strike and Injury Rates in Endurance Runners
Adam I. Daoud, GARY J. GEISSLER, JASON SARETSKY et al. · Medicine & Science in Sports & Exercise · 2012 · 490 citations