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首页> 外文期刊>Magnetic resonance in medicine: official journal of the Society of Magnetic Resonance in Medicine >Partially parallel imaging with phase-sensitive data: Increased temporal resolution for magnetic resonance temperature imaging.
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Partially parallel imaging with phase-sensitive data: Increased temporal resolution for magnetic resonance temperature imaging.

机译:具有相敏数据的部分并行成像:提高磁共振温度成像的时间分辨率。

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摘要

Magnetic resonance temperature imaging can be used to monitor the progress of thermal ablation therapies, increasing treatment efficacy and improving patient safety. High temporal resolution is important when therapies rapidly heat tissue, but many approaches to faster image acquisition compromise image resolution, slice coverage, or phase sensitivity. Partially parallel imaging techniques offer the potential for improved temporal resolution without forcing such concessions. Although these techniques perturb image phase, relative phase changes between dynamically acquired phase-sensitive images, such as those acquired for MR temperature imaging, can be reliably measured through partially parallel imaging techniques using reconstruction filters that remain constant across the series. Partially parallel and non-accelerated phase-difference-sensitive data can be obtained through arrays of surface coils using this method. Average phase differences measured through partially parallel and fully Fourier encoded images are virtually identical, while phase noise increases with g(sqrt)L as in standard partially parallel image acquisitions..
机译:磁共振温度成像可用于监测热消融治疗的进展,提高治疗效果并提高患者安全性。当治疗迅速加热组织时,高时间分辨率很重要,但是许多加快图像获取速度的方法会损害图像分辨率,切片覆盖率或相位敏感性。部分并行成像技术提供了改进时间分辨率的潜力,而无需强加这样的让步。尽管这些技术会扰乱图像相位,但是可以通过使用在整个系列中保持不变的重建滤波器的部分并行成像技术,来可靠地测量动态采集的相敏图像(例如为MR温度成像采集的相敏图像)之间的相对相位变化。使用此方法,可以通过表面线圈阵列获得部分平行且非加速的相位差敏感数据。通过部分并行和完全傅里叶编码的图像测得的平均相位差实际上是相同的,而相位噪声随g(sqrt)L的增加而增加,如在标准部分并行图像采集中。

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