Dynamic cardiac MRI with high spatiotemporal resolution using accelerated spiral-out and spiral-in/out bSSFP pulse sequences at 1.5 T.

IF 2 4区 医学 Q3 RADIOLOGY, NUCLEAR MEDICINE & MEDICAL IMAGING Magnetic Resonance Materials in Physics, Biology and Medicine Pub Date : 2023-12-01 Epub Date: 2023-09-04 DOI:10.1007/s10334-023-01116-9
Zhixing Wang, Xue Feng, Michael Salerno, Christopher M Kramer, Craig H Meyer
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Abstract

Objective: To develop two spiral-based bSSFP pulse sequences combined with L + S reconstruction for accelerated ungated, free-breathing dynamic cardiac imaging at 1.5 T.

Materials and methods: Tiny golden angle rotated spiral-out and spiral-in/out bSSFP sequences combined with view-sharing (VS), compressed sensing (CS), and low-rank plus sparse (L + S) reconstruction were evaluated and compared via simulation and in vivo dynamic cardiac imaging studies. The proposed methods were then validated against the standard cine, in terms of quantitative image assessment and qualitative quality rating.

Results: The L + S method yielded the least residual artifacts and the best image sharpness among the three methods. Both spiral cine techniques showed clinically diagnostic images (score > 3). Compared to standard cine, there were significant differences in global image quality and edge sharpness for spiral cine techniques, while there was significant difference in image contrast for the spiral-out cine but no significant difference for the spiral-in/out cine. There was good agreement in left ventricular ejection fraction for both the spiral-out cine (- 1.6 [Formula: see text] 3.1%) and spiral-in/out cine (- 1.5 [Formula: see text] 2.8%) against standard cine.

Discussion: Compared to the time-consuming standard cine (~ 5 min) which requires ECG-gating and breath-holds, the proposed spiral bSSFP sequences achieved ungated, free-breathing cardiac movies at a similar spatial (1.5 × 1.5 × 8 mm3) and temporal resolution (36 ms) per slice for whole heart coverage (10-15 slices) within 45 s, suggesting the clinical potential for improved patient comfort or for imaging patients with arrhythmias or who cannot hold their breath.

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采用1.5 T加速螺旋出和螺旋进/出bSSFP脉冲序列的高时空分辨率动态心脏MRI。
目的:开发两种基于螺旋的bSSFP脉冲序列联合L + S重建用于1.5 t加速无门、自由呼吸动态心脏成像。材料和方法:通过模拟和体内动态心脏成像研究,评估和比较小黄金角旋转螺旋出和螺旋进/出bSSFP序列联合视图共享(VS)、压缩感知(CS)和低秩加稀疏(L + S)重建。然后,在定量图像评价和定性质量评定方面,针对标准电影验证了所提出的方法。结果:三种方法中,L + S法产生的残余伪影最少,图像清晰度最好。两种螺旋电影技术均显示临床诊断图像(评分> 3)。与标准电影相比,螺旋电影技术在整体图像质量和边缘清晰度方面存在显著差异,螺旋输出电影的图像对比度存在显著差异,而螺旋输入/输出电影的图像对比度无显著差异。在左心室射血分数上,螺旋出片(- 1.6[公式:见文]3.1%)和螺旋入/出片(- 1.5[公式:见文]2.8%)与标准片都有很好的一致性。讨论:与需要心电图门控和屏气的耗时标准电影(约5分钟)相比,所提出的螺旋bSSFP序列在45秒内获得了全心脏覆盖(10-15片)的空间(1.5 × 1.5 × 8 mm3)和时间分辨率(36 ms)的无门控,自由呼吸的心脏电影,这表明了改善患者舒适度或对心律失常或无法屏住呼吸的患者进行成像的临床潜力。
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来源期刊
CiteScore
4.60
自引率
0.00%
发文量
58
审稿时长
>12 weeks
期刊介绍: MAGMA is a multidisciplinary international journal devoted to the publication of articles on all aspects of magnetic resonance techniques and their applications in medicine and biology. MAGMA currently publishes research papers, reviews, letters to the editor, and commentaries, six times a year. The subject areas covered by MAGMA include: advances in materials, hardware and software in magnetic resonance technology, new developments and results in research and practical applications of magnetic resonance imaging and spectroscopy related to biology and medicine, study of animal models and intact cells using magnetic resonance, reports of clinical trials on humans and clinical validation of magnetic resonance protocols.
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