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multibody dynamics modeling software package msc.adams/truck  (MSC Software Corporation)

 
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    MSC Software Corporation multibody dynamics modeling software package msc.adams/truck
    Multibody Dynamics Modeling Software Package Msc.Adams/Truck, supplied by MSC Software Corporation, 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/multibody+dynamic+analysis+program/multibody+dynamic+analysis+program+adams/pm24827899-93-11-12
    Average 90 stars, based on 1 article reviews
    multibody dynamics modeling software package msc.adams/truck - by Bioz Stars, 2026-09
    90/100 stars

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    other:

    Article Title: Estimating the stabilizing function of ankle and subtalar ligaments via a morphology-specific three-dimensional dynamic model.
    Article Snippet: Knowledge of the stabilizing role of the ankle and subtalar ligaments is important for improving clinical techniques such as ligament repair and reconstruction.. However, this knowledge is incomplete.. The goal of this study was to expand this knowledge by investigating the stabilizing function of the ligaments using multiple morphologically subject-specific computational models.

    Article Title: Automated vehicle artificial intelligence training based on simulations
    Article Snippet: Suitable simplified models that approximate state-of-the-art vehicle dynamics simulation such as but not limited to, Automated Dynamic Analysis of Mechanical Systems (ADAIVISTM) made by MSC Software Corporation.

    Software:

    Article Title: Assessing the Effect of Head and Neck Orientation on Head Injury Parameters in Taekwondo
    Article Snippet: .. Except for conditions and mechanical parameters of the athlete’s foot strike, the other requirements for the head and neck impact were simulated in Mechanical Dynamics Incorporation (MSC) Automated Dynamic Analysis of Mechanical Systems (ADAMS) software (MSC Software Corporation, 2013 version). ..

    Article Title: Multibody Computer Model of the Entire Equine Forelimb Simulates Forces Causing Catastrophic Fractures of the Carpus during a Traditional Race
    Article Snippet: .. Thus, the obtained 3D geometries were imported into multibody software (v.2017, MD Adams, MSC Software Corporation GmbH, Munich, Germany), where a dynamic model was implemented. ..

    Article Title: Catastrophic Carpal Fractures in Racehorses during Traditional Competitions: Assessing Mechanobiology using Multibody Modelling and Comparative Analysis
    Article Snippet: .. Therefore, the obtained 3D geometries were imported into a multibody software (MD Adams, MSC Software Corporation, USA), where a dynamic model was implemented. ..

    Article Title: Washing Machine Dynamic Model to Prevent Tub Collision during Transient State
    Article Snippet: .. We used the multibody software Adams ® from MSC Software Corporation to model the oscillating group dynamics. .. One degree of freedom, ϕ D , defines the spinning of the drum, and six degrees of freedom, expressed by the coordinate vector q = [ X G , Y G , Z G , ψ , θ , ϕ ] models the center of mass and the 3-2-1 Euler angles of the tub.

    Article Title: Multibody Models for the Analysis of a Fall From Height: Accident, Suicide, or Murder?
    Article Snippet: .. The authors have chosen to use a numerical multibody model (MSC Adams software v. 17, by MSC Software Corporation): the subject body is made of rigid segments, with mass and inertial moments assigned to each of them; all segments are articulated to one another through elastic joints. ..

    Article Title: Method for creating a computer model of a joint for treatment planning
    Article Snippet: .. The solid 3D models created are then imported into a multibody dynamic software application system such as, ADAMSTM manufactured by MSC Software Corporation of Newport Beach, Calif. ..



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    Ligament bundles and muscles included into the multibody model. ( a ) Lateral view; ( b ) medial view; ( c ) frontal view. Red ellipsoids represent tendons of the M. quadriceps femoris and black upward arrows indicate the initial action lines of the Vastus medialis (Vmed), Vastus lateralis (Vlat), Vastus intermedius (Vint), and Rectus femoris (RF).

    Journal: Scientific Reports

    Article Title: Kinematics and kinetics comparison of ultra-congruent versus medial-pivot designs for total knee arthroplasty by multibody analysis

    doi: 10.1038/s41598-022-06909-x

    Figure Lengend Snippet: Ligament bundles and muscles included into the multibody model. ( a ) Lateral view; ( b ) medial view; ( c ) frontal view. Red ellipsoids represent tendons of the M. quadriceps femoris and black upward arrows indicate the initial action lines of the Vastus medialis (Vmed), Vastus lateralis (Vlat), Vastus intermedius (Vint), and Rectus femoris (RF).

    Article Snippet: The multibody model of a right lower limb was created in the multibody dynamic analysis program ADAMS (v. 2017, MSC Software Corporation, Santa Ana, CA) assembling standardized (medium size) bone geometries (Sawbones ® Europe AB, Malmoe, Sweden) equipped with a bicondylar total knee implant (K-MOD, Gruppo Bioimpianti, Peschiera Borromeo, Milan, Italy) including two alternative insert designs, that are, the UC and MP.

    Techniques: Muscles

    ( a ) Multibody model of the lower right limb with black arrows indicating the DOF assigned to the pelvis, hip, and ankle during the squat simulation; ( b ) lateral view of the model in extension and 90° flexion.

    Journal: Scientific Reports

    Article Title: Kinematics and kinetics comparison of ultra-congruent versus medial-pivot designs for total knee arthroplasty by multibody analysis

    doi: 10.1038/s41598-022-06909-x

    Figure Lengend Snippet: ( a ) Multibody model of the lower right limb with black arrows indicating the DOF assigned to the pelvis, hip, and ankle during the squat simulation; ( b ) lateral view of the model in extension and 90° flexion.

    Article Snippet: The multibody model of a right lower limb was created in the multibody dynamic analysis program ADAMS (v. 2017, MSC Software Corporation, Santa Ana, CA) assembling standardized (medium size) bone geometries (Sawbones ® Europe AB, Malmoe, Sweden) equipped with a bicondylar total knee implant (K-MOD, Gruppo Bioimpianti, Peschiera Borromeo, Milan, Italy) including two alternative insert designs, that are, the UC and MP.

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