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使用扩散张量磁共振成像评估被动肌肉伸长:纤维长度与扩散系数之间的相关性。

Assessment of passive muscle elongation using Diffusion Tensor MRI: Correlation between fiber length and diffusion coefficients.

作者信息

Mazzoli Valentina, Oudeman Jos, Nicolay Klaas, Maas Mario, Verdonschot Nico, Sprengers Andre M, Nederveen Aart J, Froeling Martijn, Strijkers Gustav J

机构信息

Department of Radiology, Academic Medical Center, Amsterdam, the Netherlands.

Orthopedic Research Laboratory, Radboud UMC, Nijmegen, the Netherlands.

出版信息

NMR Biomed. 2016 Dec;29(12):1813-1824. doi: 10.1002/nbm.3661. Epub 2016 Nov 8.

Abstract

In this study we investigated the changes in fiber length and diffusion parameters as a consequence of passive lengthening and stretching of the calf muscles. We hypothesized that changes in radial diffusivity (RD) are caused by changes in the muscle fiber cross sectional area (CSA) as a consequence of lengthening and shortening of the muscle. Diffusion Tensor MRI (DT-MRI) measurements were made twice in five healthy volunteers, with the foot in three different positions (30° plantarflexion, neutral position and 15° dorsiflexion). The muscles of the calf were manually segmented on co-registered high resolution anatomical scans, and maps of RD and axial diffusivity (AD) were reconstructed from the DT-MRI data. Fiber tractography was performed and mean fiber length was calculated for each muscle group. Significant negative correlations were found between the changes in RD and changes in fiber length in the dorsiflexed and plantarflexed positions, compared with the neutral foot position. Changes in AD did not correlate with changes in fiber length. Assuming a simple cylindrical model with constant volume for the muscle fiber, the changes in the muscle fiber CSA were calculated from the changes in fiber length. In line with our hypothesis, we observed a significant positive correlation of the CSA with the measured changes in RD. In conclusion, we showed that changes in diffusion coefficients induced by passive muscle stretching and lengthening can be explained by changes in muscle CSA, advancing the physiological interpretation of parameters derived from skeletal muscle DT-MRI.

摘要

在本研究中,我们调查了小腿肌肉被动拉长和伸展后纤维长度和扩散参数的变化。我们假设,径向扩散率(RD)的变化是由于肌肉拉长和缩短导致肌肉纤维横截面积(CSA)变化所致。对五名健康志愿者的足部处于三个不同位置(30°跖屈、中立位和15°背屈)时进行了两次扩散张量磁共振成像(DT-MRI)测量。在配准的高分辨率解剖扫描上手动分割小腿肌肉,并从DT-MRI数据重建RD和轴向扩散率(AD)图。进行纤维束成像,并计算每个肌肉组的平均纤维长度。与足部中立位相比,在背屈和跖屈位置,发现RD变化与纤维长度变化之间存在显著负相关。AD变化与纤维长度变化不相关。假设肌肉纤维为具有恒定体积的简单圆柱形模型,根据纤维长度变化计算肌肉纤维CSA的变化。与我们的假设一致,我们观察到CSA与测量的RD变化之间存在显著正相关。总之,我们表明,被动肌肉拉伸和拉长引起的扩散系数变化可以用肌肉CSA的变化来解释,这推进了对源自骨骼肌DT-MRI参数的生理学解释。

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