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首页> 外文期刊>Magnetic resonance in medicine: official journal of the Society of Magnetic Resonance in Medicine >Rapid 3D-imaging of phosphocreatine recovery kinetics in the human lower leg muscles with compressed sensing
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Rapid 3D-imaging of phosphocreatine recovery kinetics in the human lower leg muscles with compressed sensing

机译:具有压缩感知功能的人类小腿肌肉中磷酸肌酸恢复动力学的快速3D成像

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摘要

The rate of phosphocreatine (PCr) resynthesis following physical exercise is an accepted index of mitochondrial oxidative metabolism and has been studied extensively with unlocalized 31P-MRS methods and small surface coils. Imaging experiments using volume coils that measure several muscles simultaneously can provide new insights into the variability of muscle function in healthy and diseased states. However, they are limited by long acquisition times relative to the dynamics of PCr recovery. This work focuses on the implementation of a compressed sensing technique to accelerate imaging of PCr resynthesis following physical exercise, using a modified three-dimensional turbo-spin-echo sequence and principal component analysis as sparsifying transform. The compressed sensing technique was initially validated using 2-fold retrospective undersampling of fully sampled data from four volunteers acquired on a 7T MRI system (voxel size: 1.6 mL, temporal resolution: 24 s), which led to an accurate estimation of the mono-exponential PCr resynthesis rate constant (mean error 6.4%). Acquisitions with prospective 2-fold acceleration (temporal resolution: 12 s) demonstrated that three-dimensional mapping of PCr resynthesis is possible at a temporal resolution that is sufficiently high for characterizing the recovery curve of several muscles in a single measurement.
机译:体育锻炼后磷酸肌酸(PCr)的再合成速率是线粒体氧化代谢的公认指标,并且已通过非本地化31P-MRS方法和小的表面线圈进行了广泛研究。使用同时测量多条肌肉的体积线圈进行的成像实验可以为健康和患病状态下肌肉功能的变化提供新的见解。但是,它们受到相对于PCr恢复动态变化的较长采集时间的限制。这项工作的重点是实施压缩的传感技术,以加快体育锻炼后PCr重新合成的成像,它使用改良的三维涡轮自旋回波序列和主成分分析作为稀疏变换。压缩感测技术最初是通过对在7T MRI系统(体素大小:1.6 mL,时间分辨率:24 s)上采集的四名志愿者的全部采样数据进行2次回顾性欠采样而得到验证的,从而可以对单指数PCr重新合成速率常数(平均误差<6.4%)。具有预期的2倍加速度的采集(时间分辨率:12 s)表明,PCr重新合成的三维映射可能具有足够高的时间分辨率,以在一次测量中表征几条肌肉的恢复曲线。

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