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首页> 外文期刊>Magnetic resonance in medicine: official journal of the Society of Magnetic Resonance in Medicine >High spatial and temporal resolution cardiac cine MRI from retrospective reconstruction of data acquired in real time using motion correction and resorting.
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High spatial and temporal resolution cardiac cine MRI from retrospective reconstruction of data acquired in real time using motion correction and resorting.

机译:通过使用运动校正和手段对实时采集的数据进行回顾性重建,从而获得高时空分辨率的心脏MRI。

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摘要

Cine MRI is used for assessing cardiac function and flow and is typically based on a breath-held, segmented data acquisition. Breath holding is particularly difficult for patients with congestive heart failure or in pediatric cases. Real-time imaging may be used without breath holding or ECG triggering. However, despite the use of rapid imaging sequences and accelerated parallel imaging, real-time imaging typically has compromised spatial and temporal resolution compared with gated, segmented breath-held studies. A new method is proposed that produces a cardiac cine across the full cycle, with both high spatial and temporal resolution from a retrospective reconstruction of data acquired over multiple heartbeats during free breathing. The proposed method was compared with conventional cine images in 10 subjects. The resultant image quality for the proposed method (4.2 +/- 0.4) without breath holding or gating was comparable to the conventional cine (4.4 +/- 0.5) on a five-point scale (P = n.s.). Motion-corrected averaging of real-time acquired cardiac images provides a means of attaining high-quality cine images with many of the benefits of real-time imaging, such as free-breathing acquisition and tolerance to arrhythmias.
机译:电影MRI用于评估心脏功能和血流,通常基于屏气,分段数据采集。对于患有充血性心力衰竭的患者或儿科患者,屏气尤其困难。可以在没有屏气或ECG触发的情况下使用实时成像。但是,尽管使用了快速成像序列和加速并行成像,但与门控,分段呼吸测量研究相比,实时成像通常会损害空间和时间分辨率。提出了一种新方法,该方法可通过对自由呼吸过程中多次心跳采集的数据进行回顾性重构,从而在整个周期内产生具有高时空分辨率的心脏电影。将所提出的方法与10位受试者的常规电影图像进行了比较。所建议的方法(4.2 +/- 0.4)在没有屏住呼吸或门控的情况下所得到的图像质量在五点等级(P = n.s.)上可与常规电影(4.4 +/- 0.5)相媲美。实时采集的心脏图像的运动校正平均值提供了一种获得高质量电影图像的方法,该图像具有实时成像的许多优点,例如自由呼吸采集和对心律不齐的耐受性。

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