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T2 Mapping of Muscle Activity using Ultrafast Imaging

机译:使用超快速成像的肌肉活动的T 2 映射

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Measuring exercise-induced muscle activity is essential in sports medicine. Previous studies proposed measuring transverse relaxation time (T2) using muscle functional magnetic resonance imaging (mfMRI) to map muscle activity. However, mfMRI uses a spin-echo (SE) sequence that requires several minutes for acquisition. We evaluated the feasibility of T2 mapping of muscle activity using ultrafast imaging, called fast-acquired mfMRI (fast-mfMRI), to reduce image acquisition time. The current method uses 2 pulse sequences, spin-echo echo-planar imaging (SE-EPI) and true fast imaging with steady precession (TrueFISP). SE-EPI images are used to calculate T2, and TrueFISP images are used to obtain morphological information. The functional image is produced by subtracting the image of muscle activity obtained using T2 at rest from that produced after exercise. Final fast-mfMRI images are produced by fusing the functional images with the morphologic images. Ten subjects repeated ankle plantar flexion 200 times. In the fused images, the areas of activated muscle in the fast-mfMRI and SE-EPI images were identical. The geometric location of the fast-mfMRI did not differ between the morphologic and functional images. Morphological and functional information from fast-mfMRI can be applied to the human trunk, which requires limited scan duration. The difference obtained by subtracting T2 at rest from T2 after exercise can be used as a functional image of muscle activity.
机译:在运动医学中,测量运动引起的肌肉活动至关重要。先前的研究提出使用肌肉功能磁共振成像(mfMRI)来测量肌肉活动来测量横向弛豫时间(T 2 )。但是,mfMRI使用自旋回波(SE)序列,该序列需要几分钟的采集时间。我们使用称为快速获取的mfMRI(fast-mfMRI)的超快成像来评估肌肉活动的T 2 映射的可行性,以减少图像获取时间。当前方法使用2个脉冲序列,自旋回波回波平面成像(SE-EPI)和具有稳定进动的真正快速成像(TrueFISP)。 SE-EPI图像用于计算T 2 ,TrueFISP图像用于获取形态信息。功能图像是通过从运动后产生的图像中减去静止状态下使用T 2 获得的肌肉活动图像来产生的。通过将功能图像与形态图像融合,可以生成最终的快速mfMRI图像。十名受试者重复脚踝plant屈200次。在融合图像中,fast-mfMRI和SE-EPI图像中的激活肌肉区域相同。快速mfMRI的几何位置在形态图像和功能图像之间没有差异。可以将来自快速mfMRI的形态学和功能信息应用于人的躯干,这需要有限的扫描时间。运动后从T 2 减去静止时的T 2 所获得的差异可以用作肌肉活动的功能图像。

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