Department of Mechanical, Aerospace, and Biomedical Engineering, Tickle College of Engineering, University of Tennessee, 1512 Middle Drive, Knoxville, TN 37966, United States; Exponent, 3440 Market Street, Suite 600, Philadelphia, PA 19104, United States.
Department of Mechanical, Aerospace, and Biomedical Engineering, Tickle College of Engineering, University of Tennessee, 1512 Middle Drive, Knoxville, TN 37966, United States.
J Biomech. 2023 Apr;151:111520. doi: 10.1016/j.jbiomech.2023.111520. Epub 2023 Mar 6.
Artificial tendons may be valuable clinical devices for replacing damaged or missing biological tendons. In this preliminary study, we quantified the effect of polyester-suture-based artificial tendons on movement biomechanics. New Zealand White rabbits underwent surgical replacement of either the Achilles (n = 2) or tibialis cranialis (TC, n = 2) biological tendons with artificial tendons. Once pre-surgery and weekly from 2 to 6 weeks post-surgery, we quantified hindlimb kinematics and ground contact pressures during the stance phase of hopping gait. Post-surgical movement biomechanics were either consistent or improved over time in both groups. However, the Achilles group had greater overall biomechanical and muscle deficits than the TC group. In the TC group, at 6 weeks post-surgery, foot angles were about 10° greater than those in healthy controls during the first 30 % of stance. At 6 weeks post-surgery, the Achilles group exhibited lesser (i.e., more dorsiflexed) ankle angles (minimum angle = 31.5 ± 9.4°) and vertical ground reaction forces (37.4 ± 2.6 %BW) during stance than those in healthy controls (65.0 ± 11.2° and 50.2 ± 8.3 %BW, respectively). Future studies are needed to quantify long-term biomechanical function with artificial tendons, the effect of artificial tendons on muscle function and structure, and the effect of formal rehabilitation.
人工肌腱可能是替代受损或缺失生物肌腱的有价值的临床装置。在这项初步研究中,我们定量评估了基于聚酯缝线的人工肌腱对运动生物力学的影响。新西兰白兔接受了手术,用人工肌腱替代跟腱(n=2)或胫骨前肌(TC,n=2)的生物肌腱。在术前和术后 2 至 6 周每周,我们在跳跃步态的支撑阶段量化了后肢运动学和地面接触压力。在两组中,术后运动生物力学在各个时间点均保持一致或逐渐改善。然而,跟腱组的整体生物力学和肌肉缺陷比 TC 组更大。在 TC 组中,术后 6 周,在支撑阶段的前 30%,足角度比健康对照组大约 10°。术后 6 周,跟腱组在支撑阶段的踝关节角度(最小角度=31.5±9.4°)和垂直地面反作用力(37.4±2.6%BW)小于健康对照组(分别为 65.0±11.2°和 50.2±8.3%BW)。需要进一步的研究来量化人工肌腱的长期生物力学功能、人工肌腱对肌肉功能和结构的影响以及正式康复的效果。