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OpenSim Ltd static optimisation (so) tool
Static Optimisation (So) Tool, supplied by OpenSim Ltd, used in various techniques. Bioz Stars score: 90/100, based on 1 PubMed citations. ZERO BIAS - scores, article reviews, protocol conditions and more
https://www.bioz.com/product/static+optimisation+tool+of/static+optimization++so++tool/pm26365370-66-7-6
Average 90 stars, based on 1 article reviews
static optimisation (so) tool - by Bioz Stars, 2026-09
90/100 stars

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Related Articles

CMC:

Article Title: Validation of Markerless Motion Capture for Soldier Movement Patterns Assessment Under Varying Body-Borne Loads.
Article Snippet: Field performance of modern soldiers is affected by an increase in body-borne load due to technological advancements related to their armour and equipment.. In this project, the Theia3D markerless motion capture system was compared to the marker-based gold standard for capturing movement patterns of participants wearing various body-borne loads.. The aim was to estimate lower body joint kinematics, gastrocnemius lateralis and medialis muscle activation patterns, and lower body joint reaction forces from the two motion capture systems.

Article Title: A Framework for Modeling, Optimization, and Musculoskeletal Simulation of an Elbow–Wrist Exosuit
Article Snippet: We applied the OpenSim Static Optimization (SO) Tool to calculate the muscle activation and, subsequently, the forces required to generate the joint moments of the scaled model that tracked joint kinematics.

Article Title: A subject-specific musculoskeletal model to predict the tibiofemoral contact forces during daily living activities.
Article Snippet: Accurate prediction of tibiofemoral contact force (TFCF) during daily living activities is significant for understanding the initiation, progression, and treatment of knee osteoarthritis (KOA).. However, the diversity of target activities, prediction accuracy, and computational efficiency of the current musculoskeletal simulations need to be further improved.. In this study, a subjectspecific musculoskeletal model considered the tibiofemoral alignment, medial-lateral contact locations, secondary tibiofemoral and all patellofemoral motions, and knee ligaments was proposed to predict the TFCFs during the five daily activities (normal walking, sit-to-stand, stand-tosit, stair ascent, and stair descent) in OpenSim software.

Article Title: Biomechanical Load of Neck and Lumbar Joints in Open-Surgery Training.
Article Snippet: To reduce computational burden while maintaining meaningful analyses, the OpenSim Static Optimization (SO) function was employed to compute neck and trunk muscle forces at 10 s intervals.

Article Title: Real-Time Musculoskeletal Kinematics and Dynamics Analysis Using Marker- and IMU-Based Solutions in Rehabilitation
Article Snippet: Things that have improved the performance of the muscle optimization were (i) the formulation of the problem to reduce the constraints and decision variables, (ii) the analytical representation of the moment arm matrix (precalculated), (iii) optimization initialized using the previous solution, and (iv) the efficiency and parallelism of the interior point optimization method. presents the comparison between OpenSim ’s Static Optimization (SO) and proposed real-time muscle optimization method.

Article Title: The evaluation of reverse shoulder lateralization on deltoid forces and scapular fracture risk: A computational study
Article Snippet: Since the motion used in this study was slow and controlled (humerothoracic elevation with an upper limit 150 [45]), muscle forces can be determined using static optimization (SO) technique [46] in OpenSim.

Article Title: Development of a novel MATLAB-based framework for implementing mechanical joint stability constraints within OpenSim musculoskeletal models.
Article Snippet: Accepted Manuscript Development of a novel matlab-based framework for implementing mechanical joint stability constraints within opensim musculoskeletal models Mohammad H. Akhavanfar, Scott C.E.. Brandon, Stephen H.M. Brown, Ryan B. Graham PII: S0021-9290(19)30331-8 DOI: https://doi.org/10.1016/j.jbiomech.2019.05.007 Reference: BM 9191 To appear in: Journal of Biomechanics Received Date: 10 December 2018 Revised Date: 18 March 2019 Accepted Date: 5 May 2019 Please cite this article as: M.H.. Akhavanfar, S.C.E.

Article Title: Musculoskeletal model of osseointegrated transfemoral amputees in OpenSim.
Article Snippet: The OpenSim Static Optimization (SO) toolbox solves the equations of motion for the unknown generalized forces/torques at each DOF of the adapted (after the RRA) model as the results of the muscle forces.

Activation Assay:

Article Title: Validation of Markerless Motion Capture for Soldier Movement Patterns Assessment Under Varying Body-Borne Loads.
Article Snippet: Field performance of modern soldiers is affected by an increase in body-borne load due to technological advancements related to their armour and equipment.. In this project, the Theia3D markerless motion capture system was compared to the marker-based gold standard for capturing movement patterns of participants wearing various body-borne loads.. The aim was to estimate lower body joint kinematics, gastrocnemius lateralis and medialis muscle activation patterns, and lower body joint reaction forces from the two motion capture systems.

Article Title: A Framework for Modeling, Optimization, and Musculoskeletal Simulation of an Elbow–Wrist Exosuit
Article Snippet: We applied the OpenSim Static Optimization (SO) Tool to calculate the muscle activation and, subsequently, the forces required to generate the joint moments of the scaled model that tracked joint kinematics.

Article Title: A subject-specific musculoskeletal model to predict the tibiofemoral contact forces during daily living activities.
Article Snippet: Accurate prediction of tibiofemoral contact force (TFCF) during daily living activities is significant for understanding the initiation, progression, and treatment of knee osteoarthritis (KOA).. However, the diversity of target activities, prediction accuracy, and computational efficiency of the current musculoskeletal simulations need to be further improved.. In this study, a subjectspecific musculoskeletal model considered the tibiofemoral alignment, medial-lateral contact locations, secondary tibiofemoral and all patellofemoral motions, and knee ligaments was proposed to predict the TFCFs during the five daily activities (normal walking, sit-to-stand, stand-tosit, stair ascent, and stair descent) in OpenSim software.

Article Title: Biomechanical Load of Neck and Lumbar Joints in Open-Surgery Training.
Article Snippet: To reduce computational burden while maintaining meaningful analyses, the OpenSim Static Optimization (SO) function was employed to compute neck and trunk muscle forces at 10 s intervals.

Article Title: Real-Time Musculoskeletal Kinematics and Dynamics Analysis Using Marker- and IMU-Based Solutions in Rehabilitation
Article Snippet: Things that have improved the performance of the muscle optimization were (i) the formulation of the problem to reduce the constraints and decision variables, (ii) the analytical representation of the moment arm matrix (precalculated), (iii) optimization initialized using the previous solution, and (iv) the efficiency and parallelism of the interior point optimization method. presents the comparison between OpenSim ’s Static Optimization (SO) and proposed real-time muscle optimization method.

Article Title: The evaluation of reverse shoulder lateralization on deltoid forces and scapular fracture risk: A computational study
Article Snippet: Since the motion used in this study was slow and controlled (humerothoracic elevation with an upper limit 150 [45]), muscle forces can be determined using static optimization (SO) technique [46] in OpenSim.

Article Title: Development of a novel MATLAB-based framework for implementing mechanical joint stability constraints within OpenSim musculoskeletal models.
Article Snippet: Accepted Manuscript Development of a novel matlab-based framework for implementing mechanical joint stability constraints within opensim musculoskeletal models Mohammad H. Akhavanfar, Scott C.E.. Brandon, Stephen H.M. Brown, Ryan B. Graham PII: S0021-9290(19)30331-8 DOI: https://doi.org/10.1016/j.jbiomech.2019.05.007 Reference: BM 9191 To appear in: Journal of Biomechanics Received Date: 10 December 2018 Revised Date: 18 March 2019 Accepted Date: 5 May 2019 Please cite this article as: M.H.. Akhavanfar, S.C.E.

Article Title: Musculoskeletal model of osseointegrated transfemoral amputees in OpenSim.
Article Snippet: The OpenSim Static Optimization (SO) toolbox solves the equations of motion for the unknown generalized forces/torques at each DOF of the adapted (after the RRA) model as the results of the muscle forces.

Formulation:

Article Title: Validation of Markerless Motion Capture for Soldier Movement Patterns Assessment Under Varying Body-Borne Loads.
Article Snippet: Field performance of modern soldiers is affected by an increase in body-borne load due to technological advancements related to their armour and equipment.. In this project, the Theia3D markerless motion capture system was compared to the marker-based gold standard for capturing movement patterns of participants wearing various body-borne loads.. The aim was to estimate lower body joint kinematics, gastrocnemius lateralis and medialis muscle activation patterns, and lower body joint reaction forces from the two motion capture systems.

Article Title: A Framework for Modeling, Optimization, and Musculoskeletal Simulation of an Elbow–Wrist Exosuit
Article Snippet: We applied the OpenSim Static Optimization (SO) Tool to calculate the muscle activation and, subsequently, the forces required to generate the joint moments of the scaled model that tracked joint kinematics.

Article Title: A subject-specific musculoskeletal model to predict the tibiofemoral contact forces during daily living activities.
Article Snippet: Accurate prediction of tibiofemoral contact force (TFCF) during daily living activities is significant for understanding the initiation, progression, and treatment of knee osteoarthritis (KOA).. However, the diversity of target activities, prediction accuracy, and computational efficiency of the current musculoskeletal simulations need to be further improved.. In this study, a subjectspecific musculoskeletal model considered the tibiofemoral alignment, medial-lateral contact locations, secondary tibiofemoral and all patellofemoral motions, and knee ligaments was proposed to predict the TFCFs during the five daily activities (normal walking, sit-to-stand, stand-tosit, stair ascent, and stair descent) in OpenSim software.

Article Title: Biomechanical Load of Neck and Lumbar Joints in Open-Surgery Training.
Article Snippet: To reduce computational burden while maintaining meaningful analyses, the OpenSim Static Optimization (SO) function was employed to compute neck and trunk muscle forces at 10 s intervals.

Article Title: Real-Time Musculoskeletal Kinematics and Dynamics Analysis Using Marker- and IMU-Based Solutions in Rehabilitation
Article Snippet: Things that have improved the performance of the muscle optimization were (i) the formulation of the problem to reduce the constraints and decision variables, (ii) the analytical representation of the moment arm matrix (precalculated), (iii) optimization initialized using the previous solution, and (iv) the efficiency and parallelism of the interior point optimization method. presents the comparison between OpenSim ’s Static Optimization (SO) and proposed real-time muscle optimization method.

Article Title: The evaluation of reverse shoulder lateralization on deltoid forces and scapular fracture risk: A computational study
Article Snippet: Since the motion used in this study was slow and controlled (humerothoracic elevation with an upper limit 150 [45]), muscle forces can be determined using static optimization (SO) technique [46] in OpenSim.

Article Title: Development of a novel MATLAB-based framework for implementing mechanical joint stability constraints within OpenSim musculoskeletal models.
Article Snippet: Accepted Manuscript Development of a novel matlab-based framework for implementing mechanical joint stability constraints within opensim musculoskeletal models Mohammad H. Akhavanfar, Scott C.E.. Brandon, Stephen H.M. Brown, Ryan B. Graham PII: S0021-9290(19)30331-8 DOI: https://doi.org/10.1016/j.jbiomech.2019.05.007 Reference: BM 9191 To appear in: Journal of Biomechanics Received Date: 10 December 2018 Revised Date: 18 March 2019 Accepted Date: 5 May 2019 Please cite this article as: M.H.. Akhavanfar, S.C.E.

Article Title: Musculoskeletal model of osseointegrated transfemoral amputees in OpenSim.
Article Snippet: The OpenSim Static Optimization (SO) toolbox solves the equations of motion for the unknown generalized forces/torques at each DOF of the adapted (after the RRA) model as the results of the muscle forces.

Comparison:

Article Title: Validation of Markerless Motion Capture for Soldier Movement Patterns Assessment Under Varying Body-Borne Loads.
Article Snippet: Field performance of modern soldiers is affected by an increase in body-borne load due to technological advancements related to their armour and equipment.. In this project, the Theia3D markerless motion capture system was compared to the marker-based gold standard for capturing movement patterns of participants wearing various body-borne loads.. The aim was to estimate lower body joint kinematics, gastrocnemius lateralis and medialis muscle activation patterns, and lower body joint reaction forces from the two motion capture systems.

Article Title: A Framework for Modeling, Optimization, and Musculoskeletal Simulation of an Elbow–Wrist Exosuit
Article Snippet: We applied the OpenSim Static Optimization (SO) Tool to calculate the muscle activation and, subsequently, the forces required to generate the joint moments of the scaled model that tracked joint kinematics.

Article Title: A subject-specific musculoskeletal model to predict the tibiofemoral contact forces during daily living activities.
Article Snippet: Accurate prediction of tibiofemoral contact force (TFCF) during daily living activities is significant for understanding the initiation, progression, and treatment of knee osteoarthritis (KOA).. However, the diversity of target activities, prediction accuracy, and computational efficiency of the current musculoskeletal simulations need to be further improved.. In this study, a subjectspecific musculoskeletal model considered the tibiofemoral alignment, medial-lateral contact locations, secondary tibiofemoral and all patellofemoral motions, and knee ligaments was proposed to predict the TFCFs during the five daily activities (normal walking, sit-to-stand, stand-tosit, stair ascent, and stair descent) in OpenSim software.

Article Title: Biomechanical Load of Neck and Lumbar Joints in Open-Surgery Training.
Article Snippet: To reduce computational burden while maintaining meaningful analyses, the OpenSim Static Optimization (SO) function was employed to compute neck and trunk muscle forces at 10 s intervals.

Article Title: Real-Time Musculoskeletal Kinematics and Dynamics Analysis Using Marker- and IMU-Based Solutions in Rehabilitation
Article Snippet: Things that have improved the performance of the muscle optimization were (i) the formulation of the problem to reduce the constraints and decision variables, (ii) the analytical representation of the moment arm matrix (precalculated), (iii) optimization initialized using the previous solution, and (iv) the efficiency and parallelism of the interior point optimization method. presents the comparison between OpenSim ’s Static Optimization (SO) and proposed real-time muscle optimization method.

Article Title: The evaluation of reverse shoulder lateralization on deltoid forces and scapular fracture risk: A computational study
Article Snippet: Since the motion used in this study was slow and controlled (humerothoracic elevation with an upper limit 150 [45]), muscle forces can be determined using static optimization (SO) technique [46] in OpenSim.

Article Title: Development of a novel MATLAB-based framework for implementing mechanical joint stability constraints within OpenSim musculoskeletal models.
Article Snippet: Accepted Manuscript Development of a novel matlab-based framework for implementing mechanical joint stability constraints within opensim musculoskeletal models Mohammad H. Akhavanfar, Scott C.E.. Brandon, Stephen H.M. Brown, Ryan B. Graham PII: S0021-9290(19)30331-8 DOI: https://doi.org/10.1016/j.jbiomech.2019.05.007 Reference: BM 9191 To appear in: Journal of Biomechanics Received Date: 10 December 2018 Revised Date: 18 March 2019 Accepted Date: 5 May 2019 Please cite this article as: M.H.. Akhavanfar, S.C.E.

Article Title: Musculoskeletal model of osseointegrated transfemoral amputees in OpenSim.
Article Snippet: The OpenSim Static Optimization (SO) toolbox solves the equations of motion for the unknown generalized forces/torques at each DOF of the adapted (after the RRA) model as the results of the muscle forces.



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