Methode zur Evaluierung von Einflußfaktoren auf die Luxationsstabilität von künstlichen Hüftgelenken / Method for the Evaluation of Factors Influencing the Dislocation Stability of Total Hip Endoprotheses
Author:
Publisher
Walter de Gruyter GmbH
Subject
Biomedical Engineering
Link
https://www.degruyter.com/view/j/bmte.2004.49.issue-5/bmt.2004.027/bmt.2004.027.pdf
Reference18 articles.
1. Keramische Pfannen für Hüftendoprothesen Teil 6: Pfannendesign, Inklinations- und Antetorsionswinkel beeinflussen Bewegungsumfang und Impingement - Ceramic Acetabular Cups for Total Hip Replacement Part 6: Cup Design, Inclination Angle and Antetorsion Angle have an Influence on the Range of Motion and Impingement
2. The Effect of Femoral Component Head Size on Posterior Dislocation of the Artificial Hip Joint*
3. Jumbo Femoral Head for the Treatment of Recurrent Dislocation Following Total Hip Replacement
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1. Do hip resurfacing and short hip stem arthroplasties differ from conventional hip stem replacement regarding impingement‐free range of motion?;Journal of Orthopaedic Research;2023-05-23
2. An MRI-Based Patient-Specific Computational Framework for the Calculation of Range of Motion of Total Hip Replacements;Applied Sciences;2021-03-23
3. Comparison of Test Setups for the Experimental Evaluation of the Primary Fixation Stability of Acetabular Cups;Materials;2020-09-09
4. Dynamical analysis of dislocation-associated factors in total hip replacements by hardware-in-the-loop simulation;Journal of Orthopaedic Research;2017-04-17
5. A Novel Approach for Dynamic Testing of Total Hip Dislocation under Physiological Conditions;PLOS ONE;2015-12-30
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