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股骨柄髓外设计对髋关节接触力影响的骨肌多体动力学研究

Translated title of the contribution: Effects from Extramedullary Design of Femoral Stem on Hip Contact Force: A Musculoskeletal Multi-Body Dynamic Study
  • Zhiwei Zhang
  • , Zhifeng Zhang
  • , Zhenxian Chen
  • , Caimei Wang
  • , Zhongmin Jin
  • Xi'an Jiaotong University
  • the Second Affiliated Hospital of Inner Mongolia Medical University
  • Chang'an University
  • Ltd.
  • Southwest Jiaotong University

Research output: Contribution to journalArticlepeer-review

2 Scopus citations

Abstract

Objective To investigate the effects of design parameters such as neck-shaft angle, femoral offset and anteversion angle of total hip arthroplasty (THA) prosthesis on contact forces of the hip. Methods A musculoskeletal multi-body dynamic model of THA was established based on AnyBody software. The effects of single or multiple factors on hip contact force were studied when the neck-shaft angle, eccentricity and anteversion angle varied within ±10°, ±20 mm and ±10°, respectively. Results The maximum hip contact force increased by 26. 08% when femoral offset was reduced by 20 mm. The maximum hip contact force increased by 5. 99% when the neck-shaft angle increased by 10°. When the anteversion angle increased by 10°, the hip contact force decreased at 0% -24% of gait cycle, with the peak decreasing by 19. 16% . However, the hip contact force was significantly increased at 38% -70% of gait cycle, with the peak increasing by 67. 78% . Conclusions In extramedullary design of the femoral stem, based on reconstruction of the patient’s anatomical parameters, the offset of the femoral stem can be appropriately increased, and the neck-shaft angle and anteversion angle can be reduced to avoid increasing forces on the hip.

Translated title of the contributionEffects from Extramedullary Design of Femoral Stem on Hip Contact Force: A Musculoskeletal Multi-Body Dynamic Study
Original languageChinese (Traditional)
Pages (from-to)90-96
Number of pages7
JournalYiyong Shengwu Lixue/Journal of Medical Biomechanics
Volume38
Issue number1
DOIs
StatePublished - Feb 2023

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