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    Estimation of Center of Mass Trajectory using Wearable Sensors during Golf Swing

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    jssm-14-354.pdf (509.7Kb)
    Date
    2015-06
    Author
    Najafi, Bijan
    Lee-Eng, Jacqueline
    Wrobel, James S.
    Goebel, Ruben
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    Abstract
    This study suggests a wearable sensor technology to estimate center of mass (CoM) trajectory during a golf swing. Groups of 3, 4, and 18 participants were recruited, respectively, for the purpose of three validation studies. Study 1 examined the accuracy of the system to estimate a 3D body segment angle compared to a camera-based motion analyzer (Vicon®). Study 2 assessed the accuracy of three simplified CoM trajectory models. Finally, Study 3 assessed the accuracy of the proposed CoM model during multiple golf swings. A relatively high agreement was observed between wearable sensors and the reference (Vicon®) for angle measurement (r > 0.99, random error <1.2° (1.5%) for anterior-posterior; <0.9° (2%) for medial-lateral; and <3.6° (2.5%) for internal-external direction). The two-link model yielded a better agreement with the reference system compared to one-link model (r > 0.93 v. r = 0.52, respectively). On the same note, the proposed two-link model estimated CoM trajectory during golf swing with relatively good accuracy (r > 0.9, A-P random error <1cm (7.7%) and <2cm (10.4%) for M-L). The proposed system appears to accurately quantify the kinematics of CoM trajectory as a surrogate of dynamic postural control during an athlete’s movement and its portability, makes it feasible to fit the competitive environment without restricting surface type.
    URI
    http://www.jssm.org/researchjssm-14-354.xml.xml
    DOI/handle
    http://hdl.handle.net/10576/4997
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    • Sport Sciences (pre 2023) [‎206‎ items ]

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