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    Testing a Quaternion Conversion Method to Determine Human Three-Dimensional Tibiofemoral Angles During an In Vitro Simulated Jump Landing

    Source: Journal of Biomechanical Engineering:;2021:;volume( 144 ):;issue: 004::page 41002-1
    Author:
    Ajdaroski, Mirel
    ,
    Ashton-Miller, James A.
    ,
    Baek, So Young
    ,
    Shahshahani, Payam Mirshams
    ,
    Esquivel, Amanda O.
    DOI: 10.1115/1.4052496
    Publisher: The American Society of Mechanical Engineers (ASME)
    Abstract: Lower limb joint kinematics have been measured in laboratory settings using fixed camera-based motion capture systems
     
    however, recently inertial measurement units (IMUs) have been developed as an alternative. The purpose of this study was to test a quaternion conversion (QC) method for calculating the three orthogonal knee angles during the high velocities associated with a jump landing using commercially available IMUs. Nine cadaveric knee specimens were instrumented with APDM Opal IMUs to measure knee kinematics in one-legged 3–4× bodyweight simulated jump landings, four of which were used in establishing the parameters (training) for the new method and five for validation (testing). We compared the angles obtained from the QC method to those obtained from a commercially available sensor and algorithm (APDM Opal) with those calculated from an active marker motion capture system. Results showed a significant difference between both IMU methods and the motion capture data in the majority of orthogonal angles (p <
     
     0.01), though the differences between the QC method and Certus system in the testing set for flexion and rotation angles were smaller than the APDM Opal algorithm, indicating an improvement. Additionally, in all three directions, both the limits of agreement and root-mean-square error between the QC method and the motion capture system were smaller than between the commercial algorithm and the motion capture.
     
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      Testing a Quaternion Conversion Method to Determine Human Three-Dimensional Tibiofemoral Angles During an In Vitro Simulated Jump Landing

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    http://yetl.yabesh.ir/yetl1/handle/yetl/4285008
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    contributor authorAjdaroski, Mirel
    contributor authorAshton-Miller, James A.
    contributor authorBaek, So Young
    contributor authorShahshahani, Payam Mirshams
    contributor authorEsquivel, Amanda O.
    date accessioned2022-05-08T09:20:09Z
    date available2022-05-08T09:20:09Z
    date copyright11/9/2021 12:00:00 AM
    date issued2021
    identifier issn0148-0731
    identifier otherbio_144_04_041002.pdf
    identifier urihttp://yetl.yabesh.ir/yetl1/handle/yetl/4285008
    description abstractLower limb joint kinematics have been measured in laboratory settings using fixed camera-based motion capture systems
    description abstracthowever, recently inertial measurement units (IMUs) have been developed as an alternative. The purpose of this study was to test a quaternion conversion (QC) method for calculating the three orthogonal knee angles during the high velocities associated with a jump landing using commercially available IMUs. Nine cadaveric knee specimens were instrumented with APDM Opal IMUs to measure knee kinematics in one-legged 3–4× bodyweight simulated jump landings, four of which were used in establishing the parameters (training) for the new method and five for validation (testing). We compared the angles obtained from the QC method to those obtained from a commercially available sensor and algorithm (APDM Opal) with those calculated from an active marker motion capture system. Results showed a significant difference between both IMU methods and the motion capture data in the majority of orthogonal angles (p <
    description abstract 0.01), though the differences between the QC method and Certus system in the testing set for flexion and rotation angles were smaller than the APDM Opal algorithm, indicating an improvement. Additionally, in all three directions, both the limits of agreement and root-mean-square error between the QC method and the motion capture system were smaller than between the commercial algorithm and the motion capture.
    publisherThe American Society of Mechanical Engineers (ASME)
    titleTesting a Quaternion Conversion Method to Determine Human Three-Dimensional Tibiofemoral Angles During an In Vitro Simulated Jump Landing
    typeJournal Paper
    journal volume144
    journal issue4
    journal titleJournal of Biomechanical Engineering
    identifier doi10.1115/1.4052496
    journal fristpage41002-1
    journal lastpage41002-8
    page8
    treeJournal of Biomechanical Engineering:;2021:;volume( 144 ):;issue: 004
    contenttypeFulltext
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