Muscle Imaging and Modeling Lab, Department of Radiology, University of California, San Diego, California, USA.
Physics, University of California, San Diego, California, USA.
Magn Reson Med. 2018 Feb;79(2):912-922. doi: 10.1002/mrm.26759. Epub 2017 May 30.
This study explores changes in strain rate (SR) (rate of regional deformation) parameters extracted from velocity-encoded MRI and their relationship to muscle force loss following 4-week unilateral lower limb suspension in healthy humans.
Two-dimensional SR maps were derived from three directional velocity-encoded MR phase-contrast images of the medial gastrocnemius in seven subjects. Atrophy-related and regional differences in the SR eigenvalues, angle between the SR and muscle fiber (SR-fiber angle), and strain rates in the fiber basis were statistically analyzed using analysis of variance and linear regression.
During isometric contraction, SR in the fiber cross section (SR ) was significantly lower, and the SR-fiber angle was significantly higher postsuspension (P < 0.05). On multiple variable regression analysis, the volume of medial gastrocnemius, SR , and SR-fiber angle were significantly associated with force and changes in the, and the SR eigenvalues and shear SR were significantly associated with change in force with disuse.
Changes in SR-fiber angle, SR , and shear SR as well as their ability to predict force and force changes may reflect the role of remodeling of the extracellular matrix in disuse atrophy and its functional consequence in reducing lateral transmission of force. Magn Reson Med 79:912-922, 2018. © 2017 International Society for Magnetic Resonance in Medicine.
本研究旨在探讨健康人体下肢单侧 4 周悬吊后,从速度编码 MRI 提取的应变速率(SR)(区域变形率)参数的变化及其与肌肉力量损失的关系。
对 7 名受试者的内侧比目鱼肌的三个方向的速度编码 MR 相位对比图像,导出二维 SR 图。采用方差分析和线性回归,对 SR 本征值、SR 与肌纤维之间的夹角(SR-纤维角)以及纤维基础上的应变速率的与萎缩相关的和区域性差异进行统计学分析。
在等长收缩期间,悬吊后纤维横截面上的 SR(SR )显著降低,SR-纤维角显著升高(P<0.05)。在多变量回归分析中,内侧比目鱼肌的体积、SR 和 SR-纤维角与力量及其变化显著相关,而 SR 本征值和切变 SR 与失用引起的力量变化显著相关。
SR-纤维角、SR 和切变 SR 的变化及其预测力量和力量变化的能力,可能反映了细胞外基质重构在失用性萎缩中的作用及其在减少力的横向传递方面的功能后果。磁共振医学 79:912-922,2018。© 2017 国际磁共振学会。