DCE-MRI of the liver with sub-second temporal resolution using GRASP-Pro with navi-stack-of-stars sampling.

IF 2.7 4区 医学 Q2 BIOPHYSICS NMR in Biomedicine Pub Date : 2024-09-25 DOI:10.1002/nbm.5262
Jingjia Chen, Chenchan Huang, Krishna Shanbhogue, Ding Xia, Mary Bruno, Yuhui Huang, Kai Tobias Block, Hersh Chandarana, Li Feng
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引用次数: 0

Abstract

Respiratory motion-induced image blurring and artifacts can compromise image quality in dynamic contrast-enhanced MRI (DCE-MRI) of the liver. Despite remarkable advances in respiratory motion detection and compensation in past years, these techniques have not yet seen widespread clinical adoption. The accuracy of image-based motion detection can be especially compromised in the presence of contrast enhancement and/or in situations involving deep and/or irregular breathing patterns. This work proposes a framework that combines GRASP-Pro (Golden-angle RAdial Sparse Parallel MRI with imProved performance) MRI with a new radial sampling scheme called navi-stack-of-stars for free-breathing DCE-MRI of the liver without the need for explicit respiratory motion compensation. A prototype 3D golden-angle radial sequence with a navi-stack-of-stars sampling scheme that intermittently acquires a 2D navigator was implemented. Free-breathing DCE-MRI of the liver was conducted in 24 subjects at 3T including 17 volunteers and 7 patients. GRASP-Pro reconstruction was performed with a temporal resolution of 0.34-0.45 s per volume, whereas standard GRASP reconstruction was performed with a temporal resolution of 15 s per volume. Motion compensation was not performed in all image reconstruction tasks. Liver images in different contrast phases from both GRASP and GRASP-Pro reconstructions were visually scored by two experienced abdominal radiologists for comparison. The nonparametric paired two-tailed Wilcoxon signed-rank test was used to compare image quality scores, and the Cohen's kappa coefficient was calculated to evaluate the inter-reader agreement. GRASP-Pro MRI with sub-second temporal resolution consistently received significantly higher image quality scores (P < 0.05) than standard GRASP MRI throughout all contrast enhancement phases and across all assessment categories. There was a substantial inter-reader agreement for all assessment categories (ranging from 0.67 to 0.89). The proposed technique using GRASP-Pro reconstruction with navi-stack-of-stars sampling holds great promise for free-breathing DCE-MRI of the liver without respiratory motion compensation.

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使用 GRASP-Pro,以亚秒时间分辨率对肝脏进行 DCE-MRI 扫描,并采用导航星堆采样。
呼吸运动引起的图像模糊和伪影可能会影响肝脏动态对比增强磁共振成像(DCE-MRI)的图像质量。尽管过去几年在呼吸运动检测和补偿方面取得了重大进展,但这些技术尚未在临床上得到广泛应用。尤其是在对比度增强和/或涉及深呼吸和/或不规则呼吸模式的情况下,基于图像的运动检测的准确性会大打折扣。这项研究提出了一种框架,它将 GRASP-Pro(黄金角径向稀疏并行核磁共振成像(Golden-angle RAdial Sparse Parallel MRI with imProved performance)核磁共振成像与一种名为 "星形导航堆栈"(navi-stack-of-stars)的新型径向采样方案相结合,用于肝脏的自由呼吸 DCE-MRI 而无需明确的呼吸运动补偿。我们实施了一个原型三维黄金角径向序列,该序列采用星形导航堆取样方案,间歇获取二维导航仪。在 3T 下对 24 名受试者(包括 17 名志愿者和 7 名患者)进行了肝脏自由呼吸 DCE-MRI 检查。GRASP-Pro 重建的时间分辨率为每个容积 0.34-0.45 秒,而标准 GRASP 重建的时间分辨率为每个容积 15 秒。所有图像重建任务均未进行运动补偿。由两名经验丰富的腹部放射科医生对 GRASP 和 GRASP-Pro 重建的不同对比阶段的肝脏图像进行目测评分,以进行比较。采用非参数配对双尾 Wilcoxon 符号秩检验来比较图像质量评分,并计算科恩卡帕系数来评估读片者之间的一致性。亚秒级时间分辨率的 GRASP-Pro MRI 获得的图像质量评分明显更高(P
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来源期刊
NMR in Biomedicine
NMR in Biomedicine 医学-光谱学
CiteScore
6.00
自引率
10.30%
发文量
209
审稿时长
3-8 weeks
期刊介绍: NMR in Biomedicine is a journal devoted to the publication of original full-length papers, rapid communications and review articles describing the development of magnetic resonance spectroscopy or imaging methods or their use to investigate physiological, biochemical, biophysical or medical problems. Topics for submitted papers should be in one of the following general categories: (a) development of methods and instrumentation for MR of biological systems; (b) studies of normal or diseased organs, tissues or cells; (c) diagnosis or treatment of disease. Reports may cover work on patients or healthy human subjects, in vivo animal experiments, studies of isolated organs or cultured cells, analysis of tissue extracts, NMR theory, experimental techniques, or instrumentation.
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