用于膝关节节骨架的三弹抗模块设计和评估
Víctor Hernández-Hernández1, Orlando Susarrey-Huerta1, Usiel S Silva-Rivera2
1Instituto Politécnico Nacional, SEPI-ESIME, U.P. Adolfo López Mateos, Zacatenco, Mexico City, Mexico.
Science progress
|March 7, 2026
概括
一个新的三弹膝关节支架机制改善了能量吸收,并减少了高需求活动期间关节的不稳定性. 这种吸震设计提供了显著的被动曲阻力,有助于膝盖功能.
科学领域:
- 生物医学工程 生物医学工程
- 整形器械和假肢
- 机械设计 机械设计
背景情况:
- 现有的被动膝关节节骨架为高要求的活动提供有限的能量消耗和负载调节.
- 关节的不稳定性需要辅助设备,可以有效地管理曲负载.
研究的目的:
- 设计和验证一个紧的,三弹的机制,膝关节骨架.
- 为了增强能量吸收,提供准被动的曲阻力,并重新分配负载.
主要方法:
- 结合分析建模,有限元模拟 (ANSYS Explicit Dynamics®) 和实验测试.
- 在框架中开发了一种具有两个压缩和一个张力弹的机制.
- 通过试点功能测试与成年志愿者进行一腿起身和深任务进行验证.
主要成果:
- 模拟和实验显示在强度和变形方面存在密切一致 (<3%的偏差).
- 该机制提供了估计的70.54Nm的被动曲阻力,与ACLR后数据相比,减少了48.22%的所需扭矩.
- 峰值应力低于产强度;功能测试显示中等感知辅助 (VAS分数~37-42).
结论:
- 拟议的多弹机制证明了作为一个紧的,辅助膝关节节骨架概念的可行性.
- 该设计提供可测量的准被动电阻,并承受高曲负荷.
- 对于疲劳评估,优化和客观结果的临床验证,需要进一步的研究.
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