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Kinetics of individual limbs during level and slope walking with a unilateral transtibial bone-anchored prosthesis in the cat

机译:猫单侧经胫骨骨固定假体在水平和倾斜行走过程中各个肢体的动力学

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摘要

Ongoing animal preclinical studies on transcutaneous bone-anchored prostheses have aimed to improve biomechanics of prosthetic locomotion in people with limb loss. It is much less common to translate successful developments in human biomechanics and prosthetic research to veterinary medicine to treat animals with limb loss. Current standard of care in veterinary medicine is amputation of the whole limb if a distal segment cannot be salvaged. Bone-anchored transcutaneous prostheses, developed for people with limb loss, could be beneficial for veterinary practice. The aim of this study was to examined if and how cats utilize the limb with a bone-anchored passive transtibial prosthesis during level and slope walking. Four cats were implanted with a porous titanium implant into the right distal tibia. Ground reaction forces and full-body kinematics were recorded during level and slope (±50%) walking before and 4–6 months after implantation and prosthesis attachment. The duty factor of the prosthetic limb exceeded zero in all cats and slope conditions (p < 0.05) and was in the range of 45.0–60.6%. Thus, cats utilized the prosthetic leg for locomotion instead of walking on three legs. Ground reaction forces, power and work of the prosthetic limb were reduced compared to intact locomotion, whereas those of the contralateral hind- and forelimbs increased (p < 0.05). This asymmetry was likely caused by insufficient energy generation for propulsion by the prosthetic leg, as no signs of pain or discomfort were observed in the animals. We concluded that cats could utilize a unilateral bone-anchored transtibial prosthesis for quadrupedal level and slope locomotion.
机译:正在进行的有关经皮骨锚固假体的动物临床前研究旨在改善肢体缺失患者假体运动的生物力学。将人类生物力学和修复研究的成功发展转化为兽医学来治疗肢体丧失的动物,这种情况很少见。如果不能挽救远端,则目前兽医的护理标准是截肢。为肢体丧失者开发的骨锚式经皮假体可能对兽医有益。这项研究的目的是检查在水平和倾斜行走过程中猫是否以及如何利用带有骨锚定的被动胫骨假体的肢体。四只猫用多孔钛植入物植入右胫骨远端。在植入和假体附着之前和之后的4至6个月内,在水平和倾斜(±50%)行走过程中记录地面反作用力和全身运动学。在所有的猫和斜坡条件下,假肢的占空因数均超过零(p <0.05),范围为45.0-60.6%。因此,猫利用假肢进行运动,而不是用三只腿走路。与完整运动相比,假肢的地面反作用力,力量和功降低,而对侧后肢和前肢的反作用力,力量和功降低(p <0.05)。这种不对称性可能是由于假肢无法产生足够的能量来推动假肢,因为在动物身上没有观察到疼痛或不适的迹象。我们得出的结论是,猫可以利用单侧骨锚式胫骨假体进行四足水平和坡度运动。

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