[CF] Clinical Biomechanics & Ergonomics Engineering - CADENCEHead of Research Unit Prof. Dr. med. Cordula Maria Netzer, Prof. Dr. med. Prof. Dr. Georg Rauter, Prof. Dr. Prof. Dr. med. Dr. phil. Heide Elke Viehweger, Prof. Dr. med. Dr. phil.OverviewMembersPublicationsProjects & CollaborationsProjects & Collaborations OverviewMembersPublicationsProjects & Collaborations Projects & Collaborations 2 foundShow per page10 10 20 50 10009323 - RoLSSroice II: Predicting mid-term postoperative function, patient-reported outcomes, and spinal loads in lumbar spinal stenosis: a translational approach integrating clinical, radiological, biomechanical, and multi-scale in silico modeling Research Project | 1 Project MembersImported from Grants Tool 4722524 Enhancing FLOAT Performance with Intelligent Movement Prediction and Optimized, Activity-Specific Control Research Project | 2 Project MembersImported from Grants Tool 4726322 1 1 OverviewMembersPublicationsProjects & Collaborations
Head of Research Unit Prof. Dr. med. Cordula Maria Netzer, Prof. Dr. med. Prof. Dr. Georg Rauter, Prof. Dr. Prof. Dr. med. Dr. phil. Heide Elke Viehweger, Prof. Dr. med. Dr. phil.
Projects & Collaborations 2 foundShow per page10 10 20 50 10009323 - RoLSSroice II: Predicting mid-term postoperative function, patient-reported outcomes, and spinal loads in lumbar spinal stenosis: a translational approach integrating clinical, radiological, biomechanical, and multi-scale in silico modeling Research Project | 1 Project MembersImported from Grants Tool 4722524 Enhancing FLOAT Performance with Intelligent Movement Prediction and Optimized, Activity-Specific Control Research Project | 2 Project MembersImported from Grants Tool 4726322 1 1
10009323 - RoLSSroice II: Predicting mid-term postoperative function, patient-reported outcomes, and spinal loads in lumbar spinal stenosis: a translational approach integrating clinical, radiological, biomechanical, and multi-scale in silico modeling Research Project | 1 Project MembersImported from Grants Tool 4722524
Enhancing FLOAT Performance with Intelligent Movement Prediction and Optimized, Activity-Specific Control Research Project | 2 Project MembersImported from Grants Tool 4726322