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Fig. 1 OA-associated changes in the human joint.
Various techniques have been proposed using depth sensors [8, 9], and more specifically, human joint models.
The temporomandibular joint (TMJ) is probably the most complex human joint.
Peroxynitrite (ONOO−) is formed in the inflamed and degenerating human joint.
The set up consisted of a human joint phantom with normal operative equipment for irrigation.
Knowledge of human joint morphology is important in orthopaedic surgery and in prosthesis design.
For example, Wang and Wu [35] also deal with variations in execution rate of actions using a human joint model.
Photographs comparing the human joint and menisci to those from pig and sheep are shown in Fig. 2.
We measured the range of motion for each robot joint and compared it that of the corresponding human joint.
Through the data collected from the IMU, the system is capable real time measurement of relative position and orientation of the human joint.
Potential applications include dynamic and static balancing of machines, human joint rehabilitative devices, and human mobility-assisting devices.
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