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首页> 外文期刊>Journal of magnetic resonance imaging: JMRI >Accelerated T2*-compensated fat fraction quantification using a joint parallel imaging and compressed sensing framework.
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Accelerated T2*-compensated fat fraction quantification using a joint parallel imaging and compressed sensing framework.

机译:使用联合并行成像和压缩传感框架,加速了T2 *补偿的脂肪分数的定量。

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摘要

To develop a T2*-compensated parallel imaging and compressed sensing framework for water-fat separation, and to demonstrate accelerated quantitative imaging of proton density fat fraction.The proposed method extends a previously developed framework for water-fat separation by additionally compensating for T2* decay. A two-stage estimation was formulated that first determines an approximation of the B0 field map and then jointly estimates and refines the R2* (=1/T2*) and B0 field maps, respectively. The method was tested using a set of water-fat phantoms as well as liver datasets that were acquired from seven asymptomatic adult volunteers. The fat fraction estimates were compared to those from a commonly used nonaccelerated water-fat imaging method and also to a sequential parallel imaging and water-fat imaging method.The proposed method properly compensated for T2* decay to yield accurate fat fraction estimates in the water-fat phantoms. Further, linear regression analysis from the liver datasets showed that the proposed method accurately estimated fat fraction at acceleration factors that were higher than those achievable by the sequential parallel imaging and water-fat imaging method. Accurate fat fraction estimates were demonstrated at acceleration factors up to 4×, although some image artifacts were observed.The proposed T2*-compensated parallel imaging and compressed sensing framework demonstrates the potential to further accelerate water-fat imaging while maintaining accurate estimates of proton density fat fraction. J. Magn. Reson. Imaging 2013;38:1267-1275. ? 2013 Wiley Periodicals, Inc.
机译:开发用于水脂分离的T2 *补偿并行成像和压缩传感框架,并演示质子密度脂肪分数的加速定量成像。拟议的方法通过额外补偿T2 *扩展了先前开发的水脂分离框架衰变。制定了两阶段的估算方法,该方法首先确定B0场图的近似值,然后分别估算和细化R2 *(= 1 / T2 *)和B0场图。使用一组水脂模型以及从七名无症状成人志愿者那里获得的肝脏数据集对该方法进行了测试。将脂肪分数估算值与常用的非加速水脂肪成像方法得出的脂肪分数估算值进行了比较,还与顺序并行成像和水脂肪成像方法的脂肪分数估算值进行了比较。所提出的方法可以适当补偿T2 *衰减,从而在水中产生准确的脂肪分数估算值胖幻影。此外,从肝脏数据集进行的线性回归分析表明,所提出的方法能够以比连续并行成像和水脂成像方法所能达到的更高的加速因子准确估算脂肪分数。尽管观察到一些图像伪影,但在加速因子高达4倍的情况下仍能显示出准确的脂肪分数估算值。建议的T2 *补偿平行成像和压缩传感框架证明了在保持质子密度的精确估算的同时进一步加速水脂肪成像的潜力脂肪部分。 J.Magn。雷森成像2013; 38:1267-1275。 ? 2013 Wiley期刊公司

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