multibody dynamics simulation software simpack (Dassault Systemes)
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Multibody Dynamics Simulation Software Simpack, supplied by Dassault Systemes, used in various techniques. Bioz Stars score: 86/100, based on 1 PubMed citations. ZERO BIAS - scores, article reviews, protocol conditions and more
https://www.bioz.com/product/multibody+simulation+software+simpack/dynamics+multibody+simpack+simulation+software/pm41900664-76-23-30
Average 86 stars, based on 1 article reviews
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Software:Article Title: Patella height influences patellofemoral contact and kinematics following cruciate-retaining total knee replacement. Article Snippet: Sigma; DePuy Synthes) with resurfaced patella (all‐polyethylene dome‐shaped component with three fixation pegs) was used in this study. .. The MMBS model was developed in the Article Title: Methodology for biomechanical investigation of implant malpositioning in total knee arthroplasty using a six degree of freedom joint simulator Article Snippet: .. As a reference for validating experimental results obtained with the VIVO joint simulator, a musculoskeletal multibody system (MMBS) model of the human lower extremity was built up using the Article Title: Validation of a Patient-Specific Musculoskeletal Model for Lumbar Load Estimation Generated by an Automated Pipeline From Whole Body CT Article Snippet: .. The automated modeling of the thoracolumbar spine with generic bodies of the head–neck complex, ribcage, simplified upper extremities, and the pelvic-sacral region is carried out using the Article Title: Development and validation of an in-silico virtual testing rig for analyzing total knee arthroplasty performance during passive deep flexion: A feasibility study. Article Snippet: The use of in-silico finite element (FE) models has become more common in orthopedic applications and in the design of biomedical devices, since they can provide results comparable to in vitro experiments while maintaining lower cost.. The main downside of this kind of analysis is the high computing time, as it can reach hours or even days to complete; this limitation makes it then not suitable for time-sensitive applications, such as probabilistic analyses or helping clinicians in surgical pre-planning or intra-operative setting.. In-silico multibody (MB) simulations, on the other hand, are significantly faster than FE simulations (considering each component of the model as a rigid body); although deformability of each model component is a necessary feature in some applications (e.g. simulation of implant-bone micromotions), several outputs of interest in orthopedic applications, such as implant kinematics and contact forces, do not require a fully deformable model. |
