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体内腰椎椎间运动评估:一种使用侧弯任务的新型动态负重磁共振成像技术的可靠性

Assessment of In Vivo Lumbar Inter-Vertebral Motion: Reliability of a Novel Dynamic Weight-Bearing Magnetic Resonance Imaging Technique Using a Side-Bending Task.

作者信息

Mahato Niladri Kumar, Montuelle Stephane, Clark Brian C

机构信息

The University of The West Indies, St. Augustine, Trinidad and Tobago.

Ohio Musculoskeletal and Neurological Institute, Ohio University, Athens, OH, USA.

出版信息

Asian Spine J. 2019 Jun;13(3):377-385. doi: 10.31616/asj.2018.0219. Epub 2019 Jan 30.

Abstract

STUDY DESIGN

Between-session reliability of a magnetic resonance imaging (MRI) based experimental technique to quantify lumbar inter-vertebral motion in humans.

PURPOSE

We have developed a novel, dynamic, MRI-based approach for quantifying in vivo lumbar inter-vertebral motion. In this study, we present the protocol's reliability results to quantify inter-vertebral spine motion.

OVERVIEW OF LITERATURE

Morphometric studies on intervertebral displacements using static, supine MRI and quantification of dynamic spine motion using different X-ray based radiography techniques are commonly found in the literature. However, reliability testing of techniques assessing real-time lumbar intervertebral motion using weight-bearing MRI has rarely been reported.

METHODS

Ten adults without a history of back pain performed a side-bending task on two separate occasions, inside an open-MRI, in a weight-bearing, upright position. The images were acquired during the task using a dynamic magnetic resonance (MR) sequence. The MRI imaging space was externally calibrated before the study to recreate the imaging volume for subsequent use in an animation software. The dynamic MR images were processed to create side-bending movement animations in the virtual environment. Participant-specific three-dimensional models were manually superimposed over vertebral image silhouettes in a sequence of image frames, representing the motion trials. Inter-vertebral axes and translation and rotational displacements of vertebrae were quantified using the animation software.

RESULTS

Quantification of inter-vertebral rotations and translations shows high reliability. Between-session reliability results yielded high values for the intra-class correlation coefficient (0.86-0.93), coefficient of variation (13.3%-16.04%), and Pearson's correlation coefficients (0.89-0.98).

CONCLUSIONS

This technique may be developed further to improve its speed and accuracy for diagnostic applications, to study in vivo spine stability, and to assess outcomes of surgical and non-surgical interventions applied to manage pathological spine motion.

摘要

研究设计

基于磁共振成像(MRI)的实验技术在人体腰椎椎间运动量化中的组间可靠性。

目的

我们开发了一种基于MRI的新型动态方法来量化体内腰椎椎间运动。在本研究中,我们展示了该方案在量化椎间脊柱运动方面的可靠性结果。

文献综述

文献中常见使用静态仰卧位MRI对椎间位移进行形态学研究,以及使用不同的基于X射线的放射摄影技术对动态脊柱运动进行量化。然而,使用负重MRI评估实时腰椎椎间运动的技术的可靠性测试鲜有报道。

方法

10名无背痛病史的成年人在开放式MRI中,于负重直立位分两次进行侧弯任务。在任务过程中使用动态磁共振(MR)序列采集图像。在研究前对MRI成像空间进行外部校准,以重建成像体积,供后续在动画软件中使用。对动态MR图像进行处理,以在虚拟环境中创建侧弯运动动画。在一系列图像帧中,将参与者特定的三维模型手动叠加在椎体图像轮廓上,代表运动试验。使用动画软件对椎间轴以及椎体的平移和旋转位移进行量化。

结果

椎间旋转和平移的量化显示出高可靠性。组间可靠性结果在组内相关系数(0.86 - 0.93)、变异系数(13.3% - 16.04%)和皮尔逊相关系数(0.89 - 0.98)方面均得出较高值。

结论

该技术可进一步开发,以提高其在诊断应用中的速度和准确性,用于研究体内脊柱稳定性,并评估用于管理病理性脊柱运动的手术和非手术干预的效果。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/4db5/6547391/9ba62bd001b7/asj-2018-0219f1.jpg

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