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德国牧羊犬骨盆和尾段腰椎的三维运动学

Three-Dimensional Kinematics of the Pelvis and Caudal Lumbar Spine in German Shepherd Dogs.

作者信息

Schaub Katharina I, Kelleners Nicola, Schmidt Martin J, Eley Nele, Fischer Martin S

机构信息

Department of Veterinary Clinical Sciences, Small Animal Clinic-Surgery, Justus-Liebig-University, Giessen, Germany.

Department of Veterinary Clinical Sciences, Small Animal Clinic-Neurosurgery, Neuroradiology and Clinical Neurology, Justus-Liebig-University, Giessen, Germany.

出版信息

Front Vet Sci. 2021 Aug 26;8:709966. doi: 10.3389/fvets.2021.709966. eCollection 2021.

Abstract

Lumbosacral vertebral motion is thought to be a factor in the development of degenerative lumbosacral stenosis in German shepherd dogs. So far, few studies exist describing natural canine lumbosacral movement . Therefore, this investigation aims to achieve a detailed analysis of bone movement of the lumbosacral region to gain a better understanding of the origin of degenerative lumbosacral stenosis using three-dimensional non-invasive analysis of canine pelvic and caudal lumbar motion (at L6 and L7). Biplanar cineradiography of the pelvis and caudal lumbar spine of four clinically sound German shepherd dogs at a walk and at a trot on a treadmill was recorded. Pelvic and intervertebral motion was virtually reconstructed and analyzed with scientific rotoscoping. The use of this technique made possible non-invasive measurement of physiological vertebral motion in dogs with high accuracy. Furthermore, the gait patterns of the dogs revealed a wide variation both between individual steps and between dogs. Pelvic motion showed a common basic pattern throughout the stride cycle. Motion at L6 and L7, except for sagittal rotation at a trot, was largely asynchronous with the stride cycle. Intervertebral motion in all dogs was small with approximately 2-3° rotation and translations of approximately 1-2 mm. The predominant motion of the pelvis was axial rotation at a walk, whereas lateral rotation was predominant at a trot. L7 showed a predominance of sagittal rotation (with up to 5.1° at a trot), whereas lateral rotation was the main component of the movement at L6 (about 2.3° in both gaits). During trotting, a coupling of various motions was detected: axial rotation of L7 and the pelvis was inverse and was coupled with craniocaudal translation of L7. In addition, a certain degree of compensation of abnormal pelvic movements during walking and trotting by the caudal lumbar spine was evident.

摘要

腰骶椎运动被认为是德国牧羊犬退行性腰骶管狭窄症发展的一个因素。到目前为止,很少有研究描述犬类自然的腰骶运动。因此,本研究旨在通过对犬骨盆和尾腰椎运动(L6和L7)进行三维非侵入性分析,对腰骶部区域的骨骼运动进行详细分析,以更好地理解退行性腰骶管狭窄症的起源。记录了四只临床健康的德国牧羊犬在跑步机上行走和小跑时骨盆和尾腰椎的双平面动态X线摄影。骨盆和椎间运动通过科学的逐帧分析进行虚拟重建和分析。使用该技术可以高精度地对犬的生理性椎体运动进行非侵入性测量。此外,犬的步态模式在不同个体步幅之间以及不同犬之间都显示出很大差异。骨盆运动在整个步幅周期中呈现出一种常见的基本模式。L6和L7的运动,除了小跑时的矢状面旋转外,在很大程度上与步幅周期不同步。所有犬的椎间运动都很小,旋转约2 - 3°,平移约1 - 2毫米。骨盆的主要运动在行走时是轴向旋转,而在小跑时是横向旋转。L7以矢状面旋转为主(小跑时可达5.1°),而L6运动的主要成分是横向旋转(两种步态中约为2.3°)。在小跑过程中,检测到各种运动的耦合:L7和骨盆的轴向旋转相反,并与L7的头尾向平移耦合。此外,尾腰椎在行走和小跑过程中对异常骨盆运动有一定程度的补偿作用。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/03ba/8427507/97e349806eca/fvets-08-709966-g0001.jpg

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