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诊断性动作期间腰椎的动态节段运动学

Dynamic segmental kinematics of the lumbar spine during diagnostic movements.

作者信息

McMullin Paul, Emmett Darian, Gibbons Andrew, Clingo Kelly, Higbee Preston, Sykes Andrew, Fullwood David T, Mitchell Ulrike H, Bowden Anton E

机构信息

Department of Mechanical Engineering, Brigham Young University, Provo, UT, United States.

Department of Exercise Sciences, Brigham Young University, Provo, UT, United States.

出版信息

Front Bioeng Biotechnol. 2023 Sep 28;11:1209472. doi: 10.3389/fbioe.2023.1209472. eCollection 2023.

Abstract

measurements of segmental-level kinematics are a promising avenue for better understanding the relationship between pain and its underlying, multi-factorial basis. To date, the bulk of the reported segmental-level motion has been restricted to single plane motions. The present work implemented a novel marker set used with an optical motion capture system to non-invasively measure dynamic, 3D segmental kinematics of the lower spine in a laboratory setting. Lumbar spinal kinematics were measured for 28 subjects during 17 diagnostic movements. Overall regional range of motion data and lumbar angular velocity measurement were consistent with previously published studies. Key findings from the work included measurement of differences in ascending descending segmental velocities during functional movements and observations of motion coupling paradigms in the lumbar spinal segments. The work contributes to the task of establishing a baseline of segmental lumbar movement patterns in an asymptomatic cohort, which serves as a necessary pre-requisite for identifying pathological and symptomatic deviations from the baseline.

摘要

节段水平运动学测量是更好地理解疼痛与其潜在多因素基础之间关系的一个有前景的途径。迄今为止,所报道的节段水平运动大多局限于单平面运动。本研究采用了一种新型标记集与光学运动捕捉系统相结合,在实验室环境中对下脊柱的动态三维节段运动学进行非侵入性测量。对28名受试者在17种诊断性动作过程中的腰椎运动学进行了测量。整体区域运动范围数据和腰椎角速度测量结果与先前发表的研究一致。该研究的主要发现包括测量功能运动过程中节段上升和下降速度的差异,以及观察腰椎节段的运动耦合模式。这项工作有助于在无症状队列中建立节段性腰椎运动模式基线的任务,这是识别与基线的病理和症状性偏差的必要前提。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/7356/10568473/aaab6fffde32/fbioe-11-1209472-g001.jpg

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