International audienceIn biomechanics, calibration of body segment inertial parameters (BSIP) is crucial to take into account subject morphological specificities. To avoid strenuous protocols, identification methods based on rigid body dynamics laws have been proposed. Thanks to a motion capture system and force platforms, these methods optimize BSIP by minimizing errors in the equations of motion. These errors can be defined as the dynamic resid-uals reflecting inaccuracies arising from estimated BSIP, as well as from kinematics and force plate measurements. The current study aims at evaluating the part of uncertainty on the dynamic residuals directly related to kinematics and force plate measurements. To answer this question, we captured ...
<div><p>Subject-specific musculoskeletal modeling can be applied to study musculoskeletal disorders,...
This article appeared in a journal published by Elsevier Ltd. Under Elsevier's copyright, mandated a...
Subject-specific musculoskeletal modeling can be applied to study musculoskeletal disorders, allowin...
International audienceIn biomechanics, calibration of body segment inertial parameters (BSIP) is cru...
International audienceThis work presents preliminary results about the influence of the kinematical ...
Biomechanical dynamics simulations facilitate the investigation of fundamental principles and concep...
Accurate knowledge of body segment inertia parameters (BSIP) improves the assessment of dynamic anal...
42ième congrès de la Sociéte de Biomécanique francophone, REIMS, FRANCE, 02-/11/2017 - 03/11/2017Bod...
Body segment inertial parameters (BSIPs) of the human body are key parameters in biomechanics to stu...
International audienceThis communication deals with the influence of constraints on the results of a...
An important task in biomechanics is human body articulations' internal torques measurement. This is...
Estimation of Body Segment Inertia Parameters (BSIP) is a necessary step to perform dynamic analysis...
XV International Symposium on 3-D Analysis of Human Movement, MANCHESTER, ROYAUME-UNI, 03-/07/2018 -...
International audienceBiomechanical motion simulation and dynamic analysis of human joint moments wi...
By proposing efficient methods for estimating Body Segment Inertial Parameters' (BSIP) estimation an...
<div><p>Subject-specific musculoskeletal modeling can be applied to study musculoskeletal disorders,...
This article appeared in a journal published by Elsevier Ltd. Under Elsevier's copyright, mandated a...
Subject-specific musculoskeletal modeling can be applied to study musculoskeletal disorders, allowin...
International audienceIn biomechanics, calibration of body segment inertial parameters (BSIP) is cru...
International audienceThis work presents preliminary results about the influence of the kinematical ...
Biomechanical dynamics simulations facilitate the investigation of fundamental principles and concep...
Accurate knowledge of body segment inertia parameters (BSIP) improves the assessment of dynamic anal...
42ième congrès de la Sociéte de Biomécanique francophone, REIMS, FRANCE, 02-/11/2017 - 03/11/2017Bod...
Body segment inertial parameters (BSIPs) of the human body are key parameters in biomechanics to stu...
International audienceThis communication deals with the influence of constraints on the results of a...
An important task in biomechanics is human body articulations' internal torques measurement. This is...
Estimation of Body Segment Inertia Parameters (BSIP) is a necessary step to perform dynamic analysis...
XV International Symposium on 3-D Analysis of Human Movement, MANCHESTER, ROYAUME-UNI, 03-/07/2018 -...
International audienceBiomechanical motion simulation and dynamic analysis of human joint moments wi...
By proposing efficient methods for estimating Body Segment Inertial Parameters' (BSIP) estimation an...
<div><p>Subject-specific musculoskeletal modeling can be applied to study musculoskeletal disorders,...
This article appeared in a journal published by Elsevier Ltd. Under Elsevier's copyright, mandated a...
Subject-specific musculoskeletal modeling can be applied to study musculoskeletal disorders, allowin...