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一种用于 3T 下磁化传递率图校正和归一化的快速 B1 映射方法。

A fast B1-mapping method for the correction and normalization of magnetization transfer ratio maps at 3 T.

机构信息

Brain Imaging Center, University Hospital, Schleusenweg 2-16, 60528 Frankfurt, Germany.

出版信息

Neuroimage. 2010 Feb 15;49(4):3015-26. doi: 10.1016/j.neuroimage.2009.11.054. Epub 2009 Dec 4.

Abstract

In neuroimaging, there is increasing interest in magnetization transfer (MT) techniques which yield information about bound water protons. One of the main applications is the investigation of the myelin integrity in the central nervous system (CNS). However, several problems may arise, in particular at high magnetic field strengths: B1 inhomogeneities may yield deviations of the MT saturation angle and thus non-uniformities of the measured MT ratio (MTR). This effect can be corrected for but requires in general additional time consuming B1 mapping. Furthermore, increased values of the specific absorption rate (SAR) may require a reduction of the saturation angle for individual subjects, impairing comparability of results. In this work, a B1 mapping method based on magnetization-prepared FLASH with slice selective preparation and excitation pulses and correction for relaxation effects is presented, yielding B1 maps with whole brain coverage, an in-plane resolution of 4 mm, a slice thickness of 3 mm, and a clinically acceptable duration of 46 s. The method is tested both in vitro and in vivo and applied in a subsequent in vivo study to show that MTR values in human brain tissue depend approximately linearly on the preparation angle, with a slope similar to values reported for 1.5 T. Calibration data and B1 maps are applied to B1 inhomogeneity corrections of MTR maps. Subsequently, it is shown that B1-corrected MTR maps acquired at reduced preparation angles due to individual SAR restrictions can be normalized, allowing for a direct comparison with maps acquired at the full angle.

摘要

在神经影像学中,人们对磁化传递(MT)技术越来越感兴趣,因为该技术可以提供关于结合水质子的信息。其中一个主要应用是研究中枢神经系统(CNS)中的髓鞘完整性。然而,在高磁场强度下,可能会出现几个问题:B1 不均匀性可能导致 MT 饱和角的偏差,从而导致测量的 MT 比(MTR)不均匀。可以对这种影响进行校正,但通常需要额外的耗时的 B1 映射。此外,吸收率(SAR)的增加可能需要为个别受试者降低饱和角,从而影响结果的可比性。在这项工作中,提出了一种基于磁化准备 FLASH 的 B1 映射方法,具有切片选择性准备和激发脉冲,并校正了弛豫效应,可获得具有全脑覆盖、4 毫米平面分辨率、3 毫米切片厚度和临床可接受的 46 秒持续时间的 B1 图谱。该方法在体外和体内进行了测试,并应用于随后的体内研究,以表明人脑组织中的 MTR 值与制备角大致呈线性关系,斜率与 1.5 T 报道的值相似。校准数据和 B1 图谱被应用于 MTR 图谱的 B1 不均匀性校正。随后表明,由于个体 SAR 限制而在降低的制备角下获得的 B1 校正 MTR 图谱可以归一化,从而可以与在全角获得的图谱进行直接比较。

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