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与经股骨截肢者和健全对照者相比,膝关节离断者在行走过程中的下肢运动学和动力学情况。

Lower limb kinematics and kinetics of people with through-knee amputation compared to individuals with transfemoral amputation and able-bodied controls during walking.

作者信息

Panhelleux Brieuc, Silverman Anne, McGregor Alison

机构信息

Department of Surgery and Cancer, Imperial College London, Sir Michael Uren Hub, White City Campus, London W12 0BZ, UK.

Department of Mechanical Engineering, Quantitative Biosciences and Engineering, Colorado School of Mines Golden, 1500 Illinois St, Golden, CO 80401, USA.

出版信息

J Biomech. 2025 May;184:112649. doi: 10.1016/j.jbiomech.2025.112649. Epub 2025 Mar 27.

Abstract

Lower-limb amputations negatively affect quality of life and increase the risk of secondary health conditions. Through-Knee Amputation (TKA), although less commonly performed than Transfemoral Amputation (TFA), offers potential biomechanical advantages due to preserved femur length and associated musculature. This study aimed to characterize gait biomechanics of individuals with unilateral TKA, TFA and able-bodied controls. Gait biomechanics of seven individuals with unilateral TFA, four with unilateral TKA, and nine able-bodied controls were evaluated with a 3D motion tracking system and force plates. Joint angles and moments at the ankle, knee, hip, and pelvis were computed and compared between groups. Individuals with TKA's walking mechanics displayed fewer differences with able bodied controls compared to individuals with TFA. Individuals with TKA had greater hip Range Of Motion (ROM) on the amputated side than TFA (52.71° ± 7.3°, 40.38° ± 5.4° respectively, p < 0.005). TFA individuals had higher pelvic antero/posterior tilt ROM compared to controls (11.26° ± 7.2° and 3.1° ± 1.5° respectively, p < 0.005) but TKA and controls were not statistically different from each other. TKA individuals and able-bodied controls both had lower peak hip extension moments on the intact side than individuals with TFA (1.05 (±0.43), 1.05 (±0.39) and 1.83 (±0.28) N.m.kg, p < 0.005, p < 0.05 respectively). These findings suggest that TKA may offer biomechanical advantages over TFA, particularly in preserving gait biomechanics closer to able-bodied controls, underscoring the potential advantages of this procedure for individuals requiring lower-limb amputation.

摘要

下肢截肢会对生活质量产生负面影响,并增加继发健康问题的风险。经膝截肢(TKA)虽然不如经股截肢(TFA)常见,但由于保留了股骨长度和相关肌肉组织,具有潜在的生物力学优势。本研究旨在描述单侧TKA、TFA个体以及健全对照者的步态生物力学特征。使用三维运动跟踪系统和测力板对7名单侧TFA个体、4名单侧TKA个体和9名健全对照者的步态生物力学进行了评估。计算并比较了各组踝关节、膝关节、髋关节和骨盆的关节角度和力矩。与TFA个体相比,TKA个体的行走力学与健全对照者的差异更小。TKA个体截肢侧的髋关节活动范围(ROM)大于TFA个体(分别为52.71°±7.3°和40.38°±5.4°,p<0.005)。与对照者相比,TFA个体的骨盆前后倾斜ROM更高(分别为11.26°±7.2°和3.1°±1.5°,p<0.005),但TKA个体与对照者之间无统计学差异。TKA个体和健全对照者在健侧的髋关节伸展峰值力矩均低于TFA个体(分别为1.05(±0.43)、1.05(±0.39)和1.83(±0.28)N.m.kg,p<0.005,p<0.05)。这些发现表明,TKA可能比TFA具有生物力学优势,特别是在保持步态生物力学更接近健全对照者方面,强调了该手术对于需要下肢截肢的个体的潜在优势。

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