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跑步机上行走时绵羊后肢矢状面运动的二维和三维运动学分析技术比较

A Comparison of Two-Dimensional and Three-Dimensional Techniques for Kinematic Analysis of the Sagittal Motion of Sheep Hindlimbs During Walking on a Treadmill.

作者信息

Diogo Camila Cardoso, Camassa José Arthur, Fonseca Bárbara, Maltez da Costa Luís, Pereira José Eduardo, Filipe Vítor, Couto Pedro Alexandre, Raimondo Stefania, Armada-da-Silva Paulo A, Maurício Ana Colette, Varejão Artur S P

机构信息

Department of Veterinary Sciences, University of Trás-os-Montes e Alto Douro, Vila Real, Portugal.

Animal and Veterinary Research Center (CECAV), Centre for Animal Sciences and Veterinary Studies, University of Trás-os-Montes e Alto Douro, Vila Real, Portugal.

出版信息

Front Vet Sci. 2021 Aug 17;8:545708. doi: 10.3389/fvets.2021.545708. eCollection 2021.

Abstract

Compared to rodents, sheep offer several attractive features as an experimental model for testing different medical and surgical interventions related to pathological gait caused by neurological diseases and injuries. To use sheep for development of novel treatment strategies in the field of neuroscience, it is key to establish the relevant kinematic features of locomotion in this species. To use sheep for development of novel treatment strategies in the field of neuroscience, it is crucial to understand fundamental baseline characteristics of locomotion in this species. Despite their relevance for medical research, little is known about the locomotion in the ovine model, and next to nothing about the three-dimensional (3D) kinematics of the hindlimb. This study is the first to perform and compare two-dimensional (2D) and 3D hindlimb kinematics of the sagittal motion during treadmill walking in the ovine model. Our results show that the most significant differences took place throughout the swing phase of the gait cycle were for the distal joints, ankle and metatarsophalangeal joint, whereas the hip and knee joints were much less affected. The results provide evidence of the inadequacy of a 2D approach to the computation of joint kinematics in clinically normal sheep during treadmill walking when the interest is centered on the hoof's joints. The findings from the present investigation are likely to be useful for an accurate, quantitative and objective assessment of functionally altered gait and its underlying neuronal mechanisms and biomechanical consequences.

摘要

与啮齿动物相比,绵羊作为一种实验模型具有几个吸引人的特点,可用于测试与神经疾病和损伤引起的病理性步态相关的不同医学和外科干预措施。要将绵羊用于神经科学领域新治疗策略的开发,关键在于确定该物种运动的相关运动学特征。要将绵羊用于神经科学领域新治疗策略的开发,了解该物种运动的基本基线特征至关重要。尽管它们对医学研究具有相关性,但人们对绵羊模型中的运动知之甚少,对后肢的三维(3D)运动学几乎一无所知。本研究首次在绵羊模型中进行并比较了跑步机行走过程中矢状运动的二维(2D)和3D后肢运动学。我们的结果表明,在步态周期的整个摆动阶段,最显著的差异发生在远端关节,即踝关节和跖趾关节,而髋关节和膝关节受影响较小。结果证明,当关注蹄关节时,二维方法在计算临床正常绵羊跑步机行走时的关节运动学方面是不够的。本研究的结果可能有助于对功能改变的步态及其潜在的神经元机制和生物力学后果进行准确、定量和客观的评估。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/9b02/8415828/e933bd301ca5/fvets-08-545708-g0001.jpg

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