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首页> 外文期刊>Annals of Biomedical Engineering: The Journal of the Biomedical Engineering Society >A Fast, Accurate, and Reliable Reconstruction Method of the Lumbar Spine Vertebrae Using Positional MRI
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A Fast, Accurate, and Reliable Reconstruction Method of the Lumbar Spine Vertebrae Using Positional MRI

机译:使用位置MRI的腰椎椎骨快速,准确,可靠地重建方法

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摘要

In vivo measurement of lumbar spine configuration is useful for constructing quantitative biomechanical models. Positional magnetic resonance imaging (MRI) accommodates a larger range of movement in most joints than conventional MRI and does not require a supine position. However, this is achieved at the expense of image resolution and contrast. As a result, quantitative research using positional MRI has required long reconstruction times and is sensitive to incorrectly identifying the vertebral boundary due to low contrast between bone and surrounding tissue in the images. We present a semi-automated method used to obtain digitized reconstructions of lumbar vertebrae in any posture of interest. This method combines a high-resolution reference scan with a low-resolution postural scan to provide a detailed and accurate representation of the vertebrae in the posture of interest. Compared to a criterion standard, translational reconstruction error ranged from 0.7 to 1.6 mm and rotational reconstruction error ranged from 0.3 to 2.6A degrees. Intraclass correlation coefficients indicated high interrater reliability for measurements within the imaging plane (ICC 0.97-0.99). Computational efficiency indicates that this method may be used to compile data sets large enough to account for population variance, and potentially expand the use of positional MRI as a quantitative biomechanics research tool.
机译:体内测量腰椎配置可用于构建定量生物力学模型。位置磁共振成像(MRI)容纳大多数关节的较大运动范围,而不是传统的MRI,并且不需要仰卧位。然而,这是以成本的图像分辨率和对比度实现的。结果,使用位置MRI的定量研究需要长期的重建时间,并且对由于骨骼和周围组织之间的低对比度而不正确地识别椎骨边界。我们提出了一种半自动方法,用于以任何感兴趣的姿态获得腰椎的数字化重建。该方法结合了具有低分辨率姿势扫描的高分辨率参考扫描,以在感兴趣的姿势中提供椎骨的详细和准确表示。与标准标准相比,翻译重建误差范围为0.7至1.6毫米,旋转重建误差范围为0.3至2.6A度。腹部相关系数表示成像平面内测量的高不安可靠性(ICC 0.97-0.99)。计算效率表明该方法可用于编译数据集足够大以考虑人口方差,并且可能扩展定位MRI作为定量生物力学研究工具的使用。

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