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小鼠微小黄金角超短回波时间肺部成像。

Tiny golden angle ultrashort echo-time lung imaging in mice.

机构信息

Department of Internal Medicine II, Ulm University Medical Centre, Ulm, Germany.

Department of Cardiology, The First Affiliated Hospital of Shandong First Medical University & Shandong Provincial Qianfoshan Hospital, Shandong Medicine and Health Key Laboratory of Cardiac Electrophysiology and Arrhythmia, People's Republic of China.

出版信息

NMR Biomed. 2021 Nov;34(11):e4591. doi: 10.1002/nbm.4591. Epub 2021 Jul 28.

DOI:10.1002/nbm.4591
PMID:34322941
Abstract

Imaging the lung parenchyma with MRI is particularly difficult in small animals due to the high respiratory and heart rates, and ultrashort T2* at high magnetic field strength caused by the high susceptibilities induced by the air-tissue interfaces. In this study, a 2D ultrashort echo-time (UTE) technique was combined with tiny golden angle (tyGA) ordering. Data were acquired continuously at 11.7 T and retrospective center-of-k-space gating was applied to reconstruct respiratory multistage images. Lung (proton) density (f ), T2*, signal-to-noise ratio (SNR), fractional ventilation (FV) and perfusion (f) were quantified, and the application to dynamic contrast agent (CA)-enhanced (DCE) qualitative perfusion assessment tested. The interobserver and intraobserver and interstudy reproducibility of the quantitative parameters were investigated. High-quality images of the lung parenchyma could be acquired in all animals. Over all lung regions a mean T2* of 0.20 ± 0.05 ms was observed. FV resulted as 0.31 ± 0.13, and a trend towards lower SNR values during inspiration (EX: SNR = 12.48 ± 6.68, IN: SNR = 11.79 ± 5.86) and a significant (P < 0.001) decrease in lung density (EX: f  = 0.69 ± 0.13, IN: f  = 0.62 ± 0.13) were observed. Quantitative perfusion results as 34.63 ± 9.05 mL/cm /min (systole) and 32.77 ± 8.55 mL/cm /min (diastole) on average. The CA dynamics could be assessed and, because of the continuous nature of the data acquisition, reconstructed at different temporal resolutions. Where a good to excellent interobserver reproducibility and an excellent intraobserver reproducibility resulted, the interstudy reproducibility was only fair to good. In conclusion, the combination of tiny golden angles with UTE (2D tyGA UTE) resulted in a reliable imaging technique for lung morphology and function in mice, providing uniform k-space coverage and thus low-artefact images of the lung parenchyma after gating.

摘要

在小动物中,由于呼吸和心跳率高,以及空气-组织界面引起的高磁敏感性导致的高磁场强度下的超短 T2*,用 MRI 对肺实质进行成像特别困难。在这项研究中,将二维超短回波时间(UTE)技术与微小黄金角(tyGA)排序相结合。数据在 11.7T 下连续采集,并应用回顾性中心空间门控重建呼吸多期图像。定量了肺(质子)密度(f)、T2*、信噪比(SNR)、分通气量(FV)和灌注量(f),并测试了动态对比剂(CA)增强(DCE)定性灌注评估的应用。研究了定量参数的观察者间和观察者内及研究间可重复性。所有动物的肺实质都可以获得高质量的图像。在所有肺区,平均 T2*为 0.20±0.05ms。FV 结果为 0.31±0.13,并且在吸气(EX:SNR=12.48±6.68,IN:SNR=11.79±5.86)期间 SNR 值呈下降趋势,并且肺密度显著降低(EX:f=0.69±0.13,IN:f=0.62±0.13)。平均灌注量结果为 34.63±9.05mL/cm /min(收缩期)和 32.77±8.55mL/cm /min(舒张期)。可以评估 CA 动力学,并且由于数据采集的连续性,可以在不同的时间分辨率下重建。结果具有良好到极好的观察者间可重复性和极好的观察者内可重复性,而研究间可重复性仅为良好到中等。总之,微小黄金角与 UTE(二维 tyGA UTE)的结合为小鼠的肺部形态和功能提供了一种可靠的成像技术,在门控后提供均匀的 k 空间覆盖,从而获得低伪影的肺实质图像。

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