multibody dynamic simulation models recurdyn (FunctionBay Inc)
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Multibody Dynamic Simulation Models Recurdyn, supplied by FunctionBay Inc, 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+simulation+model/multibody+dynamic+simulation+models+recurdyn/pm36645842-25-0-5
Average 90 stars, based on 1 article reviews
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Functional Assay:Article Title: Groove-deepening trochleoplasty reduces lateral patellar maltracking and increases patellofemoral contact pressures: Dynamic simulation. Article Snippet: Funding information NorthShore University HealthSystem Abstract Groove‐deepening trochleoplasty is performed to restore patellar stability by increasing the lateral constraint applied to the patella by the trochlear groove.. Multibody dynamic simulation of knee function was used to characterize the influence of groove‐deepening trochleoplasty on patellar tracking and patellofemoral contact pressures.. Computational models were created to represent seven knees with trochlear dysplasia, indicated by a flat trochlear groove and supratrochlear spur. Activity Assay:Article Title: Groove-deepening trochleoplasty reduces lateral patellar maltracking and increases patellofemoral contact pressures: Dynamic simulation. Article Snippet: Funding information NorthShore University HealthSystem Abstract Groove‐deepening trochleoplasty is performed to restore patellar stability by increasing the lateral constraint applied to the patella by the trochlear groove.. Multibody dynamic simulation of knee function was used to characterize the influence of groove‐deepening trochleoplasty on patellar tracking and patellofemoral contact pressures.. Computational models were created to represent seven knees with trochlear dysplasia, indicated by a flat trochlear groove and supratrochlear spur. Diagnostic Assay:Article Title: Groove-deepening trochleoplasty reduces lateral patellar maltracking and increases patellofemoral contact pressures: Dynamic simulation. Article Snippet: Funding information NorthShore University HealthSystem Abstract Groove‐deepening trochleoplasty is performed to restore patellar stability by increasing the lateral constraint applied to the patella by the trochlear groove.. Multibody dynamic simulation of knee function was used to characterize the influence of groove‐deepening trochleoplasty on patellar tracking and patellofemoral contact pressures.. Computational models were created to represent seven knees with trochlear dysplasia, indicated by a flat trochlear groove and supratrochlear spur. Imaging:Article Title: Groove-deepening trochleoplasty reduces lateral patellar maltracking and increases patellofemoral contact pressures: Dynamic simulation. Article Snippet: Funding information NorthShore University HealthSystem Abstract Groove‐deepening trochleoplasty is performed to restore patellar stability by increasing the lateral constraint applied to the patella by the trochlear groove.. Multibody dynamic simulation of knee function was used to characterize the influence of groove‐deepening trochleoplasty on patellar tracking and patellofemoral contact pressures.. Computational models were created to represent seven knees with trochlear dysplasia, indicated by a flat trochlear groove and supratrochlear spur. Computed Tomography:Article Title: Groove-deepening trochleoplasty reduces lateral patellar maltracking and increases patellofemoral contact pressures: Dynamic simulation. Article Snippet: Funding information NorthShore University HealthSystem Abstract Groove‐deepening trochleoplasty is performed to restore patellar stability by increasing the lateral constraint applied to the patella by the trochlear groove.. Multibody dynamic simulation of knee function was used to characterize the influence of groove‐deepening trochleoplasty on patellar tracking and patellofemoral contact pressures.. Computational models were created to represent seven knees with trochlear dysplasia, indicated by a flat trochlear groove and supratrochlear spur. Magnetic Resonance Imaging:Article Title: Groove-deepening trochleoplasty reduces lateral patellar maltracking and increases patellofemoral contact pressures: Dynamic simulation. Article Snippet: Funding information NorthShore University HealthSystem Abstract Groove‐deepening trochleoplasty is performed to restore patellar stability by increasing the lateral constraint applied to the patella by the trochlear groove.. Multibody dynamic simulation of knee function was used to characterize the influence of groove‐deepening trochleoplasty on patellar tracking and patellofemoral contact pressures.. Computational models were created to represent seven knees with trochlear dysplasia, indicated by a flat trochlear groove and supratrochlear spur. In Vivo:Article Title: Groove-deepening trochleoplasty reduces lateral patellar maltracking and increases patellofemoral contact pressures: Dynamic simulation. Article Snippet: Funding information NorthShore University HealthSystem Abstract Groove‐deepening trochleoplasty is performed to restore patellar stability by increasing the lateral constraint applied to the patella by the trochlear groove.. Multibody dynamic simulation of knee function was used to characterize the influence of groove‐deepening trochleoplasty on patellar tracking and patellofemoral contact pressures.. Computational models were created to represent seven knees with trochlear dysplasia, indicated by a flat trochlear groove and supratrochlear spur. |
