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This book includes a selection of papers showing the potential of the dynamic modelling approach to treat problems related to the musculoskeletal system. The state-of-the-art is presented in a review article and in a perspective paper, and several examples of application in different clinical problems are provided.
musculoskeletal model --- pregnancy --- motion analysis --- muscle load evaluation --- low back pain --- deglutition --- muscle activity --- simulation --- swallowing biomechanics --- musculoskeletal modelling --- musculoskeletal simulations --- clinical research --- rehabilitation --- biomechanics --- rectus femoris --- foot kinematics --- knee kinematics --- normal gait --- gait cycle --- forward modeling --- musculoskeletal modeling --- neuromusculoskeletal model --- computational model --- model personalization --- treatment optimization --- treatment design --- predictive simulation --- human movement --- total hip replacement --- hip dysplasia --- hip abductor muscles --- gait analysis --- knee joint ligaments --- walking --- dynamic simulation --- knee joint biomechanics --- polyethylene thickness --- total knee arthroplasty --- ligament forces --- compressive forces --- patellar kinematics --- n/a
Choose an application
This book includes a selection of papers showing the potential of the dynamic modelling approach to treat problems related to the musculoskeletal system. The state-of-the-art is presented in a review article and in a perspective paper, and several examples of application in different clinical problems are provided.
Information technology industries --- musculoskeletal model --- pregnancy --- motion analysis --- muscle load evaluation --- low back pain --- deglutition --- muscle activity --- simulation --- swallowing biomechanics --- musculoskeletal modelling --- musculoskeletal simulations --- clinical research --- rehabilitation --- biomechanics --- rectus femoris --- foot kinematics --- knee kinematics --- normal gait --- gait cycle --- forward modeling --- musculoskeletal modeling --- neuromusculoskeletal model --- computational model --- model personalization --- treatment optimization --- treatment design --- predictive simulation --- human movement --- total hip replacement --- hip dysplasia --- hip abductor muscles --- gait analysis --- knee joint ligaments --- walking --- dynamic simulation --- knee joint biomechanics --- polyethylene thickness --- total knee arthroplasty --- ligament forces --- compressive forces --- patellar kinematics --- musculoskeletal model --- pregnancy --- motion analysis --- muscle load evaluation --- low back pain --- deglutition --- muscle activity --- simulation --- swallowing biomechanics --- musculoskeletal modelling --- musculoskeletal simulations --- clinical research --- rehabilitation --- biomechanics --- rectus femoris --- foot kinematics --- knee kinematics --- normal gait --- gait cycle --- forward modeling --- musculoskeletal modeling --- neuromusculoskeletal model --- computational model --- model personalization --- treatment optimization --- treatment design --- predictive simulation --- human movement --- total hip replacement --- hip dysplasia --- hip abductor muscles --- gait analysis --- knee joint ligaments --- walking --- dynamic simulation --- knee joint biomechanics --- polyethylene thickness --- total knee arthroplasty --- ligament forces --- compressive forces --- patellar kinematics
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