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首页> 外文期刊>Gait & posture >Outdoor dynamic subject-specific evaluation of internal stresses in the residual limb: Hydraulic energy-stored prosthetic foot compared to conventional energy-stored prosthetic feet
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Outdoor dynamic subject-specific evaluation of internal stresses in the residual limb: Hydraulic energy-stored prosthetic foot compared to conventional energy-stored prosthetic feet

机译:针对残肢内部应力的户外动态受试者特定评估:与传统的能量存储假脚相比,液压能量存储的假脚

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摘要

The prosthetic foot plays an important role in propelling, breaking, balancing and supporting body loads while the amputee ambulates on different grounds. It is therefore important to quantify the effect of the prosthetic foot mechanism on biomechanical parameters, in order to prevent pressure ulcers and deep tissue injury. Our aim was to monitor the internal stresses in the residuum of transtibial amputation (TTA) prosthetic-users ambulating on different terrains, which the amputees encounter during their daily activities, i.e. paved floor, grass, ascending and descending stairs and slope. We specifically aimed to compare between the internal stresses in the TTA residuum of amputees ambulating with a novel hydraulic prosthetic foot compared to conventional energy storage and return (ESR) prosthetic feet. Monitoring of internal stresses was accomplished using a portable subject-specific real-time internal stress monitor. We found significant decrease (p<. 0.01) in peak internal stresses and in the loading rate of the amputated limb, while walking with the hydraulic foot, compared to walking with ESR feet. The loading rate calculated while ambulating with the hydraulic foot was at least three times lower than the loading rate calculated while ambulating with the ESR foot. Although the average decrease in internal stresses was ~2-fold larger when replacing single-toe ESR feet with the hydraulic foot than when replacing split-toed ESR feet with the hydraulic foot, the differences were statistically insignificant. Our findings suggest that using a hydraulic prosthetic foot may protect the distal tibial end of the TTA residuum from high stresses, therefore preventing pressure-related injury and pain.
机译:假肢脚在推动,折断,平衡和支撑身体负荷方面起着重要作用,而截肢者则以不同的姿势行走。因此,重要的是量化假足机制对生物力学参数的影响,以防止压疮和深部组织损伤。我们的目的是监视截肢者(TTA)假肢使用者在不同地形上行走时残余应力的内部应力,截肢者在日常活动中遇到这些地形,即被铺地板,草地,上下楼梯和斜坡。我们专门旨在比较与传统的能量存储和返回(ESR)假肢相比,采用新型液压假肢行走的截肢者TTA残余的内应力。内部压力的监视是使用便携式的特定于对象的实时内部压力监视器完成的。我们发现,与用ESR脚行走相比,用液压脚行走时,峰值内应力和截肢肢体的负荷率显着降低(p <.0.01)。用液压脚行走时计算的负载率至少比用ESR脚行走时计算的负载率低三倍。尽管用液压支脚代替单趾ESR支脚时,内部应力的平均减小比用液压支脚代替趾趾ESR支脚的平均降低约2倍,但差异在统计学上并不显着。我们的研究结果表明,使用液压假肢脚可以保护TTA残端的胫骨远端免受高应力,从而防止与压力相关的伤害和疼痛。

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