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A biomechanical analysis of 3D stress and strain patterns in patellar tendon during knee flexion

髌骨 肌腱病 拉伤 肌腱 医学 跳跃的 髌腱 解剖 口腔正畸科 生物力学 病变 外科 生理学
作者
Kunyang Wang,Soroosh H. Hosseinnejad,Ali Jabran,Vasilios Baltzopoulos,Lei Ren,Zhihui Qian
出处
期刊:International Journal for Numerical Methods in Biomedical Engineering [Wiley]
卷期号:36 (9) 被引量:6
标识
DOI:10.1002/cnm.3379
摘要

Abstract Patellar tendinopathy is among the most widespread patellar tendon diseases in athletes that participate in activities involving running and jumping. Although their symptoms can be detected, especially at the inferior pole of the patella, their biomechanical cause remains unknown. In this study, a three‐dimensional finite element model of knee complex was developed to investigate principal stress and strain distributions in the patellar tendon during 0° to 90° knee flexion and slow and fast level‐ground walking. Results indicate that the patellar tendon is subjected to tensile stress and strains during all three activities. During flexion, its central proximal posterior region exhibited highest peak stress and strain, followed by central distal posterior, central distal anterior and central proximal anterior region. Similar trends and magnitudes were reported during slow and fast walking. The region with highest principal stresses and strains, central proximal anterior region, also corresponds to the most commonly reported patellar tendinopathy lesion site, suggesting that principal stress and strain are good indicators of lesion site location. Additional factors such as regional variations in material properties and frequency and duration of cyclic loading also need to be considered when determining the biomechanical aetiology of patellar tendinopathy.
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