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使用磁共振弹性成像和超声技术对儿童和成人的肌肉结构进行特征描述。

Characterization of muscle architecture in children and adults using magnetic resonance elastography and ultrasound techniques.

机构信息

Biomechanics and Bioengineery Laboratory, UMR CNRS 6600, Université de Technologie de Compiègne, BP 20529, 60205 Compiègne Cedex, France.

出版信息

J Biomech. 2011 Feb 3;44(3):397-401. doi: 10.1016/j.jbiomech.2010.10.025. Epub 2010 Nov 13.

DOI:10.1016/j.jbiomech.2010.10.025
PMID:21074773
Abstract

The purpose of this study is to characterize the muscle architecture of children and adults using magnetic resonance elastography and ultrasound techniques. Five children (8-12 yr) and seven adults (24-58 yr) underwent both tests on the vastus medialis muscle at relaxed and contracted (10% and 20% of MVC) states. Longitudinal ultrasonic images were performed in the same area as the phase image showing the shear wave's propagation. Two geometrical parameters were defined: the wave angle (α(_MRE)) corresponding to the shear wave propagation and the fascicule angle (α(_US)) tracking the path of fascicles. Moreover, shear modulus was measured at different localizations within the muscle and in the subcutaneous adipose tissue. The association of both techniques demonstrates that the shear wave propagation follows the muscle fascicles path, reflecting the internal muscle architecture. At rest, ultrasound images revealed waves propagating parallel to the children fascicle while adults showed oblique waves corresponding to already oriented (α(_US)=15.4±2.54°) muscle fascicles. In contraction, the waves' propagation were in an oblique direction for children (α(_US_10%MVC)=10.6±2.27°, α(_US_20%MVC)=10.2±2.29°) as well as adults (α(_US_10%MVC)=15.4±2.54°, α(_US_20%MVC)=17.2±2.44°). A stiffness variation (1 kPa) was found between the upper and lower parts of the adult VM muscle and a lower stiffness (1.85±0.17 kPa) was measured in the subcutaneous adipose tissue. This study demonstrates the feasibility of the MRE technique to provide geometrical insights from the children and adults muscles and to characterize different physiological media.

摘要

本研究旨在利用磁共振弹性成像和超声技术对儿童和成人的肌肉结构进行特征描述。5 名儿童(8-12 岁)和 7 名成人(24-58 岁)在放松和收缩状态下(10%和 20%最大自主收缩)对股直肌进行了这两种测试。在相位图像显示剪切波传播的同一区域进行了纵向超声图像检查。定义了两个几何参数:与剪切波传播相对应的波角(α(_MRE))和跟踪肌束路径的肌束角(α(_US))。此外,在肌肉内和皮下脂肪组织的不同位置测量了剪切模量。两种技术的结合表明,剪切波的传播遵循肌肉肌束的路径,反映了内部肌肉结构。在休息时,超声图像显示儿童的波沿肌束平行传播,而成年人的波则呈斜向,对应于已经定向的肌束(α(_US)=15.4±2.54°)。在收缩时,儿童的波传播呈斜向(α(_US_10%MVC)=10.6±2.27°,α(_US_20%MVC)=10.2±2.29°),成人的波传播也呈斜向(α(_US_10%MVC)=15.4±2.54°,α(_US_20%MVC)=17.2±2.44°)。在成人 VM 肌肉的上部和下部之间发现了 1 kPa 的刚度变化,在皮下脂肪组织中测量到了较低的刚度(1.85±0.17 kPa)。本研究证明了 MRE 技术的可行性,可从儿童和成人的肌肉中提供几何结构的见解,并对不同的生理介质进行特征描述。

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