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一项关于使用磁共振成像来确定腰椎旁肌肉功能横截面积的研究。

An investigation into the use of MR imaging to determine the functional cross sectional area of lumbar paraspinal muscles.

作者信息

Ranson Craig A, Burnett Angus F, Kerslake Robert, Batt Mark E, O'Sullivan Peter B

机构信息

School of Biomedical and Sports Science, Edith Cowan University, Perth, Western Australia.

出版信息

Eur Spine J. 2006 Jun;15(6):764-73. doi: 10.1007/s00586-005-0909-3. Epub 2005 May 14.

Abstract

The purpose of this study was to investigate the use of magnetic resonance (MR) imaging and image processing software to determine the functional cross-sectional area (FCSA) (the area of muscle isolated from fat) of the lumbar paraspinal muscles. The measurement of the morphology of the lumbar paraspinal muscles has become the focus of several recent investigations into the aetiology of low back pain. However, the reliability and validity of determining the FCSA of the lumbar paraspinal muscles using MR imaging are yet to be reported. T2 axial MR scans at the L1-S1 spinal levels of six subjects were obtained using identical MR systems and scanning parameters. Lean paraspinal muscle, vertebral body bone and intermuscular fat were manually segmented using image analysis software to assign a grey scale range to the MR signal intensity emitted by each tissue type. The resultant grey scale range for muscle was used to determine FCSA measurements for each of the paraspinal muscles, psoas, quadratus lumborum, erector spinae and lumbar multifidus on each scan slice. As various biological, instrument and measurement factors can affect MR signal intensity, a sensitivity analysis was conducted to determine the error associated in calculating FCSA for paraspinal muscle using a discrete grey scale range. Cross-sectional area and FCSA measurements were repeated three times and reliability indices for the FCSA measurements were obtained, showing excellent reliability, intra class correlation coefficient (mean=0.97, range 0.90-0.99) and %SEM (mean=2.6%, range 0.7-4.8%). In addition, the error associated with miscalculation of the grey scale range for the MR signal intensity of muscle was calculated and found to be low with an error of 20 grey scale units at the upper end of the muscle's grey scale range resulting in a very small error in the measured muscle FCSA. The method presented in this paper has a variety of practical applications in areas such as evidence-based rehabilitation, biomechanical modelling and the determination of segmental inertial parameters.

摘要

本研究的目的是探讨利用磁共振(MR)成像和图像处理软件来确定腰椎旁肌肉的功能横截面积(FCSA,即从脂肪中分离出的肌肉面积)。腰椎旁肌肉形态的测量已成为近期几项关于腰痛病因研究的重点。然而,利用MR成像确定腰椎旁肌肉FCSA的可靠性和有效性尚未见报道。使用相同的MR系统和扫描参数,对6名受试者的L1 - S1脊柱水平进行了T2轴位MR扫描。利用图像分析软件对瘦的腰旁肌肉、椎体骨和肌间脂肪进行手动分割,为每种组织类型发出的MR信号强度分配一个灰度范围。肌肉的最终灰度范围用于确定每个扫描切片上腰大肌、腰方肌、竖脊肌和腰多裂肌等各腰旁肌肉的FCSA测量值。由于各种生物学、仪器和测量因素会影响MR信号强度,因此进行了敏感性分析,以确定使用离散灰度范围计算腰旁肌肉FCSA时的相关误差。横截面积和FCSA测量重复进行了三次,并获得了FCSA测量的可靠性指标,显示出极好的可靠性,组内相关系数(平均值 = 0.97,范围0.90 - 0.99)和%SEM(平均值 = 2.6%,范围0.7 - 4.8%)。此外,计算了与肌肉MR信号强度灰度范围误算相关的误差,发现该误差较低,在肌肉灰度范围上限处误差为20个灰度单位,导致测量的肌肉FCSA误差非常小。本文提出的方法在循证康复、生物力学建模和节段惯性参数测定等领域有多种实际应用。

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