Department of Diagnostic and Interventional Radiology, University of Würzburg, Germany.
Magn Reson Med. 2019 Apr;81(4):2464-2473. doi: 10.1002/mrm.27576. Epub 2018 Nov 4.
This study aimed to develop a 3D MRI technique to assess lung ventilation in free-breathing and without the administration of contrast agent.
A 3D-UTE sequence with a koosh ball trajectory was developed for a 3 Tesla scanner. An oversampled k-space was acquired, and the direct current signal from the k-space center was used as a navigator to sort the acquired data into 8 individual breathing phases. Gradient delays were corrected, and iterative SENSE was used to reconstruct the individual timeframes. Subsequently, the signal changes caused by motion were eliminated using a 3D image registration technique, and ventilation-weighted maps were created by analyzing the signal changes in the lung tissue. Six healthy volunteers and 1 patient with lung cancer were scanned with the new 3D-UTE and the standard 2D technique. Image quality and quantitative ventilation values were compared between both methods.
UTE-based self-gated noncontrast-enhanced functional lung (SENCEFUL) MRI provided a time-resolved reconstruction of the breathing motion, with a 49% increase of the SNR. Ventilation quantification for healthy subjects was in statistical agreement with 2D-SENCEFUL and the literature, with a mean value of 0.11 ± 0.08 mL/mL for the whole lung. UTE-SENCEFUL was able to visualize and quantify ventilation deficits in a patient with lung tumor that were not properly depicted by 2D-SENCEFUL.
UTE-SENCEFUL represents a robust MRI method to assess both morphological and functional information of the lungs in 3D. When compared to the 2D approach, 3D-UTE offered ventilation maps with higher resolution, improved SNR, and reduced ventilation artifacts.
本研究旨在开发一种无需对比剂的自由呼吸状态下评估肺部通气的 3D MRI 技术。
为 3T 扫描仪开发了一种具有 koosh 球轨迹的 3D-UTE 序列。采集过采样的 k 空间,并使用 k 空间中心的直流信号作为导航,将采集的数据分为 8 个独立的呼吸相。校正梯度延迟,并使用迭代 SENSE 重建各个时间帧。然后,使用 3D 图像配准技术消除运动引起的信号变化,并通过分析肺部组织中的信号变化来创建通气加权图。对 6 名健康志愿者和 1 名肺癌患者进行了新的 3D-UTE 和标准 2D 技术扫描。比较了两种方法的图像质量和定量通气值。
基于 UTE 的无对比剂增强功能肺部自门控(SENCEFUL)MRI 提供了呼吸运动的时间分辨重建,SNR 增加了 49%。健康受试者的通气定量与 2D-SENCEFUL 和文献一致,整个肺部的平均值为 0.11±0.08mL/mL。UTE-SENCEFUL 能够可视化和量化 2D-SENCEFUL 未能正确显示的肺癌患者的通气缺陷。
UTE-SENCEFUL 是一种强大的 MRI 方法,可在 3D 中评估肺部的形态和功能信息。与 2D 方法相比,3D-UTE 提供了具有更高分辨率、改善的 SNR 和减少的通气伪影的通气图。