Literature DB >> 33911099

Finite element analysis of femoral neck strains during stair ascent and descent.

Jason C Gillette1, Timothy R Derrick1, Chen Deng2.   

Abstract

For older population, a better understanding of the hip joint loading environment is needed for the prevention of hip pain, and the reduction of the stress fractures and fall risks. Using the motion analysis and inverse dynamics methods, combined with musculoskeletal modelling, static optimization, and finite element (FE) femur model, the difference of femoral neck strains between stair ascent vs. descent, young vs. older populations was compared. A two-way repeated-measures MANOVA was applied to test the effect of age and stair direction on the femoral neck strains. The strains at the femoral neck cross-section were greater for stair descent than ascent for both age groups (mostly P = 0.001 to 0006) but there was no difference between age groups. In this study, femoral neck strains represented bone loading environment in more direct ways than joint reaction forces/moments or joint contact forces, the risk of hip pain, falls and stress fractures might be greater during stair descent than ascent. Possible preventative methods to reduce these risks should be developed in the future studies.

Entities:  

Year:  2021        PMID: 33911099     DOI: 10.1038/s41598-021-87936-y

Source DB:  PubMed          Journal:  Sci Rep        ISSN: 2045-2322            Impact factor:   4.379


  33 in total

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9.  The impact of decreasing U.S. hip fracture rates on future hip fracture estimates.

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10.  Loading of the hip and knee joints during whole body vibration training.

Authors:  Georg Bergmann; Ines Kutzner; Alwina Bender; Jörn Dymke; Adam Trepczynski; Georg N Duda; Dieter Felsenberg; Philipp Damm
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