Prediction of ground reaction forces and moments and joint kinematics and kinetics by inertial measurement units using 3D forward dynamics model

N HARAGUCHI, K HASE - Journal of Biomechanical Science and …, 2024 - jstage.jst.go.jp
Predicting the ground reaction force (GRF) and ground reaction moment (GRM) with a
biomechanical modelbased approach has an advantage for biomechanical gait analysis in …

Prediction of ground reaction forces and moments and joint kinematics and kinetics by inertial measurement units using 3D forward dynamics model

N HARAGUCHI, K HASE - Journal of Biomechanical Science and …, 2023 - jstage.jst.go.jp
Predicting the ground reaction force (GRF) and ground reaction moment (GRM) with a
biomechanical modelbased approach has an advantage for biomechanical gait analysis in …

Prediction of ground reaction forces and moments and joint kinematics and kinetics by inertial measurement units using 3D forward dynamics model

H Naoto, H Kazunori - Journal of Biomechanical Science and …, 2023 - cir.nii.ac.jp
抄録< p> Predicting the ground reaction force (GRF) and ground reaction moment (GRM)
with a biomechanical model-based approach has an advantage for biomechanical gait …

[PDF][PDF] Prediction of ground reaction forces and moments and joint kinematics and kinetics by inertial measurement units using 3D forward dynamics model

N HARAGUCHI, K HASE - Journal of Biomechanical Science …, 2024 - scholar.archive.org
Predicting the ground reaction force (GRF) and ground reaction moment (GRM) with a
biomechanical modelbased approach has an advantage for biomechanical gait analysis in …

Prediction of ground reaction forces and moments and joint kinematics and kinetics by inertial measurement units using 3D forward dynamics model

H Naoto, H Kazunori - Journal of Biomechanical Science and …, 2024 - cir.nii.ac.jp
抄録< p> Predicting the ground reaction force (GRF) and ground reaction moment (GRM)
with a biomechanical model-based approach has an advantage for biomechanical gait …