Damon Bruce M, Wadington Megan C, Lansdown Drew A, Hornberger Jennifer L
Institute of Imaging Science, Vanderbilt University, Nashville, TN 37232, USA.
Magn Reson Imaging. 2008 Oct;26(8):1114-21. doi: 10.1016/j.mri.2008.01.023. Epub 2008 May 27.
It has previously been observed that during isometric dorsiflexion exercise, the time course of T2-weighted signal intensity (SI) changes is spatially heterogeneous. The purpose of this study was to test the hypothesis that this spatial heterogeneity would increase at higher contraction intensities. Eight subjects performed 90-s isometric dorsiflexion contractions at 30% and 60% of maximum voluntary contraction (MVC) while T2-weighted (repetition time/echo time=4000/35 ms) images were acquired. SI was measured before, during and after the contractions in regions of interest (ROIs) in the extensor digitorum longus (EDL) muscle and the deep and superficial compartments of the tibialis anterior (D-TA and S-TA, respectively). For all ROIs at 30% MVC, SI changes were similar. The maximum postcontraction SI was greater than the SI during exercise. At 60% MVC, SI changes during contraction were greater in the S-TA than in the D-TA and EDL. For the EDL and D-TA, the maximum postcontraction SI was greater than those during exercise. For the S-TA, the maximum postcontraction change was greater than the changes at t=8, 20 and 56 s but not the end-exercise value. We conclude that spatial heterogeneity increases during more intense dorsiflexion contractions, possibly reflecting regional differences in perfusion or neural activation of the muscle.
此前已有观察发现,在等长背屈运动期间,T2加权信号强度(SI)变化的时间进程在空间上是异质性的。本研究的目的是检验这样一个假设,即这种空间异质性在更高的收缩强度下会增加。八名受试者在最大自主收缩(MVC)的30%和60%下进行90秒的等长背屈收缩,同时采集T2加权(重复时间/回波时间=4000/35毫秒)图像。在趾长伸肌(EDL)以及胫骨前肌的深层和浅层肌间隔(分别为D-TA和S-TA)的感兴趣区域(ROI)中,在收缩前、收缩期间和收缩后测量SI。对于所有ROI,在30%MVC时,SI变化相似。收缩后的最大SI大于运动期间的SI。在60%MVC时,S-TA收缩期间的SI变化大于D-TA和EDL。对于EDL和D-TA,收缩后的最大SI大于运动期间的SI。对于S-TA,收缩后的最大变化大于t = 8、20和56秒时的变化,但不大于运动结束时的值。我们得出结论,在更强烈的背屈收缩过程中,空间异质性增加,这可能反映了肌肉灌注或神经激活的区域差异。