98%
921
2 minutes
20
Although it is easier to generate finite element discretizations with tetrahedral elements, trilinear hexahedral (HEX8) elements are more often used in simulations of articular contact mechanics. This is due to numerical shortcomings of linear tetrahedral (TET4) elements, limited availability of quadratic tetrahedron elements in combination with effective contact algorithms, and the perceived increased computational expense of quadratic finite elements. In this study we implemented both ten-node (TET10) and fifteen-node (TET15) quadratic tetrahedral elements in FEBio (www.febio.org) and compared their accuracy, robustness in terms of convergence behavior and computational cost for simulations relevant to articular contact mechanics. Suitable volume integration and surface integration rules were determined by comparing the results of several benchmark contact problems. The results demonstrated that the surface integration rule used to evaluate the contact integrals for quadratic elements affected both convergence behavior and accuracy of predicted stresses. The computational expense and robustness of both quadratic tetrahedral formulations compared favorably to the HEX8 models. Of note, the TET15 element demonstrated superior convergence behavior and lower computational cost than both the TET10 and HEX8 elements for meshes with similar numbers of degrees of freedom in the contact problems that we examined. Finally, the excellent accuracy and relative efficiency of these quadratic tetrahedral elements was illustrated by comparing their predictions with those for a HEX8 mesh for simulation of articular contact in a fully validated model of the hip. These results demonstrate that TET10 and TET15 elements provide viable alternatives to HEX8 elements for simulation of articular contact mechanics.
Download full-text PDF |
Source |
---|---|
http://www.ncbi.nlm.nih.gov/pmc/articles/PMC4801678 | PMC |
http://dx.doi.org/10.1016/j.jbiomech.2016.01.024 | DOI Listing |
JBJS Rev
September 2025
Department of Orthopaedic Surgery and Rehabilitation, Loyola University Medical Center, Maywood, Illinois.
» Posterior shoulder instability (PSI) constitutes approximately 10% of all shoulder instability cases and is prevalent among contact sport athletes because of recurrent blunt trauma to the shoulder.» PSI presents as persistent pain and can be diagnosed using clinical tests such as the Kim test and the Jerk test.» Surgical intervention is recommended for athletes who have exhausted nonoperative treatment.
View Article and Find Full Text PDFJBJS Rev
September 2025
Department of Orthopaedic Surgery, Washington University School of Medicine, St. Louis, Missouri.
» Kim's lesion of the shoulder is characterized by incomplete tearing of the junction between the posteroinferior labrum and the glenoid, with the superficial labral tissue remaining intact, and generally requires arthroscopic evaluation for accurate confirmation.» Kim's lesion represents an under-reported subtype of posterior labral injury and a source of activity-related posterior shoulder discomfort and instability.» Kim's lesions are frequently observed in young, active individuals involved in overhead and contact sports, often resulting from traumatic mechanisms with the shoulder in flexion and adduction, as well as from repetitive microtrauma and overuse.
View Article and Find Full Text PDFMacromol Rapid Commun
September 2025
School of Materials and Chemistry, Anhui Agricultural University, Hefei, Anhui, China.
At present, flexible sensors are a hot spot in research and experimental development, but the research on flexible sensors that can be used for human motion monitoring still needs to be deepened. In this work, the green material cellulose acetate (CA) was used as the matrix material, the film was made by electrospinning, crushed by a cell grinder and sodium alginate (SA) was added to promote the uniform dispersion of nanofibers in water, and then methyltrimethoxysilane (MTMS) and MXene nanosheet dispersion were added to make it hydrophobic and good conductivity, and the aerogel precursor solution was prepared, and then the CA/SA/MTMS/MXene aerogel with directional holes was prepared by directional freeze-drying. As a flexible sensor material, it can be used for human wear, monitoring the electrical signals generated by the movement of human joints and other parts, and can still maintain a current of about 0.
View Article and Find Full Text PDFFront Bioeng Biotechnol
August 2025
The Third People's Hospital Affiliated to Fujian University of Traditional Chinese Medicine, Fuzhou City, Fujian, China.
Objective: This study investigates the biomechanical effects of long-term Tai Chi practice on the knee meniscus through biomechanical experimentation and finite element simulation, focusing on practitioners performing Knee Brushing and Twisting Step. The findings aim to establish scientific guidelines for optimizing exercise protocols in middle-aged and elderly populations.
Methods: Twenty male middle-aged and elderly practitioners were recruited, divided into a Beginner Group (BG: n = 10), and an Experienced Group (EG: n = 10).
J Hand Surg Eur Vol
September 2025
Scaphotrapeziotrapezoid arthrodesis is a controversial surgical procedure for wrist disorders and its biomechanical effect remains unclear. This study investigated scaphotrapeziotrapezoid fusion based on a previously validated whole-wrist finite element model to simulate arthrodesis by creating a unified bone complex from the three bones (scaphoid, trapezium and trapezoid) in the joint. The model was analysed under physiological grasping loads to examine axial load distributions and articular contact pressures at the radioscaphoid and radiolunate interfaces.
View Article and Find Full Text PDF