Wireless Mobile Communication and Healthcare. 6th International Conference, MobiHealth 2016, Milan, Italy, November 14-16, 2016, Proceedings

Research Article

Motion Capture: An Evaluation of Kinect V2 Body Tracking for Upper Limb Motion Analysis

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  • @INPROCEEDINGS{10.1007/978-3-319-58877-3_39,
        author={Silvio Giancola and Andrea Corti and Franco Molteni and Remo Sala},
        title={Motion Capture: An Evaluation of Kinect V2 Body Tracking for Upper Limb Motion Analysis},
        proceedings={Wireless Mobile Communication and Healthcare. 6th International Conference, MobiHealth 2016, Milan, Italy, November 14-16, 2016, Proceedings},
        proceedings_a={MOBIHEALTH},
        year={2017},
        month={6},
        keywords={Motion capture Kinect V2 Stereoscopic system},
        doi={10.1007/978-3-319-58877-3_39}
    }
    
  • Silvio Giancola
    Andrea Corti
    Franco Molteni
    Remo Sala
    Year: 2017
    Motion Capture: An Evaluation of Kinect V2 Body Tracking for Upper Limb Motion Analysis
    MOBIHEALTH
    Springer
    DOI: 10.1007/978-3-319-58877-3_39
Silvio Giancola1,*, Andrea Corti1,*, Franco Molteni2,*, Remo Sala1,*
  • 1: Politecnico di Milano
  • 2: “Villa Beretta” Rehabilitation Centre
*Contact email: silvio.giancola@polimi.it, andreacorti@outlook.it, franco56molteni@gmail.com, remo.sala@polimi.it

Abstract

In this study, we evaluate the performances of the body tracking algorithm of the Kinect V2 low-cost time-of-flight camera for medical rehabilitation purposes. Kinect V2 is an affordable motion capture system, capable to monitor patients ability to perform the exercise programs at home after a training period inside the hospital, which is more convenient and comfortable for them. In order to verify the reliability of the body tracking algorithm of the Kinect V2, it has been compared with an actual stereophotogrammetric optoelectronic 3D motion capture system, routinely used in a Motion Analysis Laboratory in a Rehabilitation Centre, focusing on the upper limb rehabilitation process. The results obtained from the analysis reveal that the device is suitable for the rehabilitation application and, more generally, for all the applications in which the required accuracy related to the joint position does not exceed a couple of centimetres.