School of Engineering, Liverpool John Moores University, Liverpool, United Kingdom.
School of Engineering, Liverpool John Moores University, Liverpool, United Kingdom.
J Mech Behav Biomed Mater. 2023 Mar;139:105673. doi: 10.1016/j.jmbbm.2023.105673. Epub 2023 Jan 16.
As the number of young and active individuals undergoing Total Hip Arthroplasty (THA) are increasing yearly, there is a need for hip prostheses to have increased longevity. Current investigations into the longevity of these prostheses only include walking as the patient's activity as there is limited data on the amount and intensity of other activity performed by the patient. To further understand the evolution of wear and increase the longevity of these implants, the impact of different activities on the hip prosthesis needs to be investigated. In this study, a finite element model and wear algorithm was developed to simulate both walking and bicycling over a 5-year period. The XLPE acetabular cup volumetric wear rate was found to be 33 mm/yr while the femoral head taper wear rates were between 0.01 - 0.39 mm/yr. The results showed that by adding bicycling of up to 80 km per week with normal walking activity, the XLPE mean volumetric wear rate increased by 67% and the metallic mean volumetric wear rate by 11%. However, the patient may gain further health benefits from this additional activity. Assistive electric bikes may also be used to further reduce the loads on the hip joint, allowing for lower amounts of wear.
随着每年接受全髋关节置换术 (THA) 的年轻和活跃个体数量的增加,需要使髋关节假体具有更长的使用寿命。目前对这些假体寿命的研究仅包括步行作为患者的活动,因为关于患者进行的其他活动的数量和强度的数据有限。为了进一步了解磨损的演变并增加这些植入物的寿命,需要研究不同活动对髋关节假体的影响。在这项研究中,开发了一个有限元模型和磨损算法,以模拟 5 年内的步行和骑自行车。发现 XLPE 髋臼杯体积磨损率为 33mm/yr,而股骨头锥度磨损率在 0.01-0.39mm/yr 之间。结果表明,通过在正常步行活动的基础上每周增加高达 80 公里的骑自行车,XLPE 的平均体积磨损率增加了 67%,金属的平均体积磨损率增加了 11%。然而,患者可能会从这种额外的活动中获得更多的健康益处。辅助电动自行车也可用于进一步降低髋关节的负荷,从而减少磨损量。