Suppr超能文献

使用结合时间滤波的灵敏度编码(TSENSE)对三种加速脉冲序列进行半定量心肌灌注成像的比较。

Comparison of three accelerated pulse sequences for semiquantitative myocardial perfusion imaging using sensitivity encoding incorporating temporal filtering (TSENSE).

作者信息

Weber Stefan, Kronfeld Andrea, Kunz R Peter, Fiebich Martin, Horstick Georg, Kreitner Karl-Friedrich, Schreiber Wolfgang G

机构信息

Section of Medical Physics, Department of Radiology, Mainz University Medical School, Mainz, Germany.

出版信息

J Magn Reson Imaging. 2007 Sep;26(3):569-79. doi: 10.1002/jmri.21047.

Abstract

PURPOSE

To investigate the parallel acquisition technique sensitivity encoding incorporating temporal filtering (TSENSE) with three saturation-recovery (SR) prepared pulse sequences (SR turbo fast low-angle shot [SR-TurboFLASH], SR true fast imaging with steady precession [SR-TrueFISP], and SR-prepared segmented echo-planar-imaging [SR-segEPI]) for semiquantitative first-pass myocardial perfusion imaging.

MATERIALS AND METHODS

In blood- and tissue-equivalent phantoms the relationship between signal intensity (SI) and contrast-medium concentration was evaluated for the three pulse sequences. In volunteers, signal-to-noise ratio (SNR), contrast-to-noise ratio (CNR), and normalized upslopes (NUS) were calculated from signal-time curves (STC). Moreover, artifacts, image noise, and overall image quality were qualitatively evaluated.

RESULTS

Phantom data showed a 40% increased linear range of the relation between SI and contrast-medium concentration with TSENSE. In volunteers, TSENSE introduced significantly residual artifacts and loss in SNR and CNR. No differences were found for NUS values with TSENSE. SR-TrueFISP yielded highest SNR, CNR, and quality scores. However, in SR-True-FISP images, dark-banding artifacts were most pronounced. NUS values obtained with SR-TrueFISP were significantly higher and with SR-segEPI significantly lower than with SR-TurboFLASH.

CONCLUSION

Semiquantitative myocardial perfusion imaging can significantly benefit from TSENSE due to shorter acquisition times and increased linearity of the pulse sequences. Among the three pulse sequences tested, SR-TrueFISP yielded best image quality. SR-segEPI proved to be an interesting alternative due to shorter acquisition times, higher linearity and fewer dark-banding artifacts.

摘要

目的

研究采用时间滤波的并行采集技术敏感性编码(TSENSE)与三种饱和恢复(SR)准备的脉冲序列(SR 快速小角度激发序列[SR-TurboFLASH]、SR 稳态进动快速成像序列[SR-TrueFISP]以及 SR 准备的分段回波平面成像序列[SR-segEPI])用于半定量首次通过心肌灌注成像的情况。

材料与方法

在血液和组织等效体模中,评估了这三种脉冲序列的信号强度(SI)与造影剂浓度之间的关系。在志愿者中,根据信号时间曲线(STC)计算信噪比(SNR)、对比噪声比(CNR)和标准化上升斜率(NUS)。此外,对伪影、图像噪声和整体图像质量进行了定性评估。

结果

体模数据显示,采用 TSENSE 时,SI 与造影剂浓度之间关系的线性范围增加了 40%。在志愿者中,TSENSE 引入了明显的残余伪影以及 SNR 和 CNR 的损失。使用 TSENSE 时,NUS 值没有差异。SR-TrueFISP 产生了最高的 SNR、CNR 和质量分数。然而,在 SR-TrueFISP 图像中,暗带伪影最为明显。与 SR-TurboFLASH 相比,SR-TrueFISP 获得的 NUS 值显著更高,而 SR-segEPI 获得的 NUS 值显著更低。

结论

由于采集时间缩短和脉冲序列线性增加,半定量心肌灌注成像可从 TSENSE 中显著获益。在所测试的三种脉冲序列中,SR-TrueFISP 产生了最佳的图像质量。SR-segEPI 由于采集时间更短、线性更高且暗带伪影更少,被证明是一个有趣的替代方案。

文献AI研究员

20分钟写一篇综述,助力文献阅读效率提升50倍。

立即体验

用中文搜PubMed

大模型驱动的PubMed中文搜索引擎

马上搜索

文档翻译

学术文献翻译模型,支持多种主流文档格式。

立即体验