FeCl3和GdCl3溶液作为琼脂糖凝胶的超快速松弛改性剂:定量分析。

IF 2 4区 医学 Q3 RADIOLOGY, NUCLEAR MEDICINE & MEDICAL IMAGING Magnetic Resonance Materials in Physics, Biology and Medicine Pub Date : 2025-02-01 Epub Date: 2024-12-12 DOI:10.1007/s10334-024-01216-0
Nur Najihah Hamzaini, Syafia Afifi Ghazali, Ahmad Nazlim Yusoff, Faizah Mohd Zaki, Wan Noor Afzan Wan Sulaiman, Yanurita Dwihapsari
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引用次数: 0

摘要

目的:研究加入松弛调节剂后琼脂糖凝胶模型的松弛性和均匀性。我们假设这些修饰因子可以控制T1和T2弛豫以及信号的均匀性。材料和方法:制备了20种不同GdCl₃和FeCl₃体积分数的琼脂糖凝胶模型。使用3-T扫描仪对幻影进行扫描,采用涡轮自旋回波序列获取T1和T2图像。使用Image-J软件从1、3和25个感兴趣区域(roi)中计算图像的信噪比,并将其倒置为T1和T2曲线。结果:随着弛豫调节剂含量的增加,T1信噪比在极短的TR时以更快的速度增加,在TR远低于400 ms时达到饱和。含有GdCl3的琼脂糖凝胶幻影比含有FeCl3的幻影具有更高的饱和值。对于T2信噪比,在低TE下观察到图间的差异。随着TE的增大,图间信噪比不可比较。在1、3和25个roi中,两组的信噪比是一致的。讨论:可以得出结论,GdCl₃和FeCl₃溶液可以作为有效的松弛剂来减少T1,但不能减少T2的松弛时间。
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FeCl3 and GdCl3 solutions as superfast relaxation modifiers for agarose gel: a quantitative analysis.

Object: This study aimed to evaluate the relaxivity and uniformity of agarose gel phantoms added with relaxation modifiers. It is hypothesized that the modifiers could manipulate the T1 and T2 relaxations as well as the signal uniformity.

Materials and methods: Twenty agarose gel phantoms with different GdCl₃ and FeCl₃ volume fractions were prepared. The phantoms were scanned using a 3-T scanner implementing a turbo spin echo sequence to acquire T1 and T2 images. The SNR of the images were computed using Image-J software from 1, 3, and 25 regions-of-interest (ROIs) and were inverted as T1 and T2 curves.

Results: With the increase in relaxation modifier content, T1 SNR increased at a faster rate at very short TR and reached saturation at TR well below 400 ms. Agarose gel phantoms containing GdCl3 showed a higher saturation value as compared to phantoms containing FeCl3. For T2 SNR, differences between plots are observed at low TE. As TE gets larger, the SNR between plots is incomparable. The SNR for both groups was uniform among 1, 3, and 25 ROIs.

Discussions: It can be concluded that GdCl₃ and FeCl₃ solutions can be used as effective relaxation modifiers to reduce T1 but not T2 relaxation times.

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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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