Suppr超能文献

一种用于低场(0.14 T)19F/1H磁共振成像的改进型鸟笼谐振器的实现。

Implementation of a modified birdcage resonator for 19F/1H MRI at low fields (0.14 T).

作者信息

Samaratunga R C, Pratt R G, Zhu Y, Massoth R J, Thomas S R

机构信息

University of Cincinnati, Ohio 45267-0579.

出版信息

Med Phys. 1994 May;21(5):697-705. doi: 10.1118/1.597173.

Abstract

Fluorine-19 nuclear magnetic resonance of perfluorinated blood substitute materials provides a method for determination of oxygen tension (pO2) in vivo. Use of a double resonant 19F/1H radio frequency coil allows convenient correlation between the high resolution anatomic presentation of proton images and the fluorine distribution. However, quantitative 19F measurements require an RF coil with good H1 field homogeneity over the image volume and a high quality factor (Q) to minimize errors caused by the low signal-to-noise levels available in in vivo imaging and image nonuniformities introduced by the large chemical shift of fluorocarbons. The birdcage coil design provides a high Q structure with optimum H1 field uniformity and fill factor. However, at low resonance frequencies, the inherently low inductance of the birdcage geometry requires the use of a large number of chip capacitors giving rise to unwieldy coil fabrication and increased cost. This communication describes a modification to the birdcage design that reduces the chip capacitor requirement by at least a factor of 4 for a given dimension, yet retains the essential characteristics of the birdcage design. The modified structure was tuned for double resonance at 5.7/6.0 MHz for 19F/1H magnetic resonance imaging at 0.14 T. For a coil with a length to diameter ratio of 1.67, an H1 uniformity of +/- 2% for the 19F resonance was obtained over a cylindrical region with radius approximately 0.6r (r = radius of coil) and length approximately 1.8r within the coil.

摘要

全氟化血液替代材料的氟 - 19核磁共振提供了一种测定体内氧分压(pO₂)的方法。使用双共振19F/1H射频线圈可方便地将质子图像的高分辨率解剖呈现与氟分布相关联。然而,定量19F测量需要一个在图像体积上具有良好H1场均匀性且品质因数(Q)高的射频线圈,以最小化由体内成像中可用的低信噪比水平以及碳氟化合物的大化学位移引入的图像不均匀性所导致的误差。鸟笼式线圈设计提供了具有最佳H1场均匀性和填充因子的高Q结构。然而,在低共振频率下,鸟笼式几何结构固有的低电感需要使用大量芯片电容器,这导致线圈制造繁琐且成本增加。本通讯描述了对鸟笼式设计的一种改进,对于给定尺寸,该改进将芯片电容器需求至少降低了4倍,同时保留了鸟笼式设计的基本特征。改进后的结构针对0.14 T下的19F/1H磁共振成像在5.7/6.0 MHz进行双共振调谐。对于长度与直径比为1.67的线圈,在半径约为0.6r(r = 线圈半径)且长度约为1.8r的圆柱形区域内,19F共振的H1均匀性达到了±2%。

文献AI研究员

20分钟写一篇综述,助力文献阅读效率提升50倍。

立即体验

用中文搜PubMed

大模型驱动的PubMed中文搜索引擎

马上搜索

文档翻译

学术文献翻译模型,支持多种主流文档格式。

立即体验