Imaging of 17O-labeled Water Using Fast T2 Mapping with T2-preparation: A Phantom Study.

Hiroyuki Kameda, Yumi Nakada, Yuta Urushibata, Hiroyuki Sugimori, Takaaki Fujii, Naoya Kinota, Daisuke Kato, Minghui Tang, Keita Sakamoto, Kohsuke Kudo
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Abstract

17O-labeled water is a T2-shortening contrast agent used in proton MRI and is a promising method for visualizing cerebrospinal fluid (CSF) dynamics because it provides long-term tracking of water molecules. However, various external factors reduce the accuracy of 17O-concentration measurements using conventional signal-intensity-based methods. In addition, T2 mapping, which is expected to provide a stable assessment, is generally limited to temporal-spatial resolution. We developed the T2-prepared based on T2 mapping used in cardiac imaging to adapt to long T2 values and tested whether it could accurately measure 17O-concentration in the CSF using a phantom. The results showed that 17O-concentration in a fluid mimicking CSF could be evaluated with an accuracy comparable to conventional T2-mapping (Carr-Purcell-Meiboom-Gill multi-echo spin-echo method). This method allows 17O-imaging with a high temporal resolution and stability in proton MRI. This imaging technique may be promising for visualizing CSF dynamics using 17O-labeled water.

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利用快速 T2 映射和 T2 准备对 17O 标记的水进行成像:模型研究
17O 标记的水是质子磁共振成像中使用的一种 T2 缩短造影剂,由于它能对水分子进行长期追踪,因此是一种很有前景的脑脊液(CSF)动态可视化方法。然而,各种外部因素降低了使用基于信号强度的传统方法测量 17O 浓度的准确性。此外,T2 映射有望提供稳定的评估,但一般仅限于时间空间分辨率。我们在心脏成像中使用的 T2 映射的基础上开发了 T2 准备,以适应长 T2 值,并使用模型测试了它是否能准确测量 CSF 中的 17O 浓度。结果表明,模拟 CSF 的液体中 17O 浓度的评估准确度可与传统 T2 映射(Carr-Purcell-Meiboom-Gill 多回波自旋回波法)媲美。这种方法可在质子磁共振成像中实现高时间分辨率和高稳定性的 17O 成像。这种成像技术在使用 17O 标记的水观察 CSF 动态方面大有可为。
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