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Image homogenization using pre-emphasis method for high field MRI

机译:使用预加重方法进行高场MRI图像均质化

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摘要

Radiofrequency (RF) field (B1) inhomogeneity due to shortened wavelength at high field is a major cause of magnetic resonance imaging (MRI) nonuniformity in high dielectric biological samples (e.g., human body). In this work, we propose a method to improve the B1 and MRI homogeneity by using pre-emphasized non-uniform B1 distribution. The intrinsic B1 distribution that could be generated by a RF volume coil, specifically a microstrip transmission line (MTL) coil used in this work, was pre-emphasized in the sample’s periphery region of interest to compensate for the central brightness induced by high frequency interference effect due to shortened wave length. This pre-emphasized non-uniform B1 can be realized by varying the parameters of microstrip elements, such as the substrate thickness of MTL volume coil. Both numerical simulation and phantom MR imaging studies were carried out to investigate the feasibility and merit of the proposed method in achieving homogeneous MR images. The simulation results demonstrate that by using a pre-emphasized B1 distribution generated by the MTL volume coil, relatively uniform B1 distribution and homogeneous MR image (98% homogeneity) within the spherical phantom (15 cm diameter) were achieved with 4.5 mm thickness. The B1 and MRI intensity distributions of a 16-element MTL volume coil with fixed substrate thickness and five varied saline loads were modeled and experimentally tested. Similar results from both simulation and experiments were obtained, suggesting substantial improvements of B1 and MRI homogeneities within the phantom containing 125 mM saline. The overall results demonstrate an efficient B1 shimming approach for improving high field MRI.
机译:在高电场下由于波长短而导致的射频(RF)场(B1)不均匀是造成高介电生物样品(例如人体)磁共振成像(MRI)不均匀的主要原因。在这项工作中,我们提出了一种通过使用预先强调的非均匀B1分布来改善B1和MRI均匀性的方法。可能由RF体积线圈(特别是本工作中使用的微带传输线(MTL)线圈)产生的固有B1分布已在样品的周边区域预先强调,以补偿高频干扰引起的中心亮度缩短波长带来的效果。可以通过改变微带元件的参数(例如MTL体积线圈的基板厚度)来实现这种预先强调的非均匀B1。数值模拟和幻像MR成像研究均进行了研究,以探讨该方法在实现均匀MR图像中的可行性和优点。仿真结果表明,通过使用MTL体积线圈生成的预加重的B1分布,可以在4.5毫米厚的球形体模(直径15厘米)内实现相对均匀的B1分布和均匀的MR图像(98%均匀性)。对具有固定基板厚度和五个变化的盐水负荷的16元素MTL体积线圈的B1和MRI强度分布进行建模和实验测试。从模拟和实验中都获得了相似的结果,表明在包含125 mM盐水的体模中B1和MRI均匀性得到了显着改善。总体结果表明,一种有效的B1匀场方法可改善高场MRI。

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