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Simulated crepitus and its reality-based specification using wearable patient dummy

Shun Ishikawa, Shogo Okamoto, Yasuhiro Akiyama, Kaoru Isogai, Yoji Yamada

Year
2015
Citations
4

Abstract

Physical therapists are trained in manual examination techniques to test the impaired motor functions of patients. In this study, we have introduced a wearable robotic dummy joint to simulate disordered joint resistances or behaviors to support physical therapists in learning such techniques. We developed a discontinuous joint friction model based on a stick-slip phenomenon to simulate knee joint resistances caused by crepitus, a typical symptom accompanied by osteoarthritis. Practicing therapists participated in a reality-based evaluation test and specified acceptable parameter sets to adjust the simulated crepitus for the exoskeletal patient robot. The simulated crepitus and wearable dummy joint are expected to support the training of physical therapists.

Keywords

Wearable computerSimulationJoint (building)Computer sciencePhysical medicine and rehabilitationTest (biology)Knee JointHuman–computer interactionArtificial intelligencePhysical therapy

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