...
首页> 外文期刊>Magnetic resonance imaging: An International journal of basic research and clinical applications >Rapid whole-brain quantitative magnetization transfer imaging using 3D selective inversion recovery sequences
【24h】

Rapid whole-brain quantitative magnetization transfer imaging using 3D selective inversion recovery sequences

机译:快速全脑定量磁化转移成像使用3D选择性反转恢复序列

获取原文
获取原文并翻译 | 示例
           

摘要

Selective inversion recovery (SIR) is a quantitative magnetization transfer (qMT) method that provides estimates of parameters related to myelin content in white matter, namely the macromolecular pool-size-ratio (PSR) and the spin-lattice relaxation rate of the free pool (R-1f), without the need for independent estimates of Delta B-o, B-1(+), and T (1). Although the feasibility of performing SIR in the human brain has been demonstrated, the scan times reported previously were too long for whole-brain applications. In this work, we combined optimized, short-TR acquisitions, SENSE/partial-Fourier accelerations, and efficient 3D readouts (turbo spin-echo, SIR-TSE; echo-planar imaging, SIR-EPI; and turbo field echo, SIR-TFE) to obtain whole-brain data in 18, 10, and 7 min for SIR-TSE, SIR-EPI, SIR-TFE, respectively. Based on numerical simulations, all schemes provided accurate parameter estimates in large, homogenous regions; however, the shorter SIR-TFE scans underestimated focal changes in smaller lesions due to blurring. Experimental studies in healthy subjects (n = 8) yielded parameters that were consistent with literature values and repeatable across scans (coefficient of variation: PSR = 2.2-6.4%, R-1f = 0.6-1.4%) for all readouts. Overall, SIR-TFE parameters exhibited the lowest variability, while SIR-EPI parameters were adversely affected by susceptibility-related image distortions. In patients with relapsing remitting multiple sclerosis (n = 2), focal changes in SIR parameters were observed in lesions using all three readouts; however, contrast was reduced in smaller lesions for SIR-TFE, which was consistent with the numerical simulations. Together, these findings demonstrate that efficient, accurate, and repeatable whole-brain SIR can be performed using 3D TFE, EPI, or TSE readouts; however, the appropriate readout should be tailored to the application.
机译:选择性反转恢复(SIR)是定量磁化转移(QMT)方法,提供与白质霉素含量相关的参数估计,即大分子池尺寸 - 比率(PSR)和自由池的旋转晶格松弛率(R-1F),无需独立估计Delta Bo,B-1(+)和T(1)。虽然已经证明了在人类大脑中表演先生的可行性,但扫描时间以前报告过的全脑应用太长。在这项工作中,我们组合优化,短期收购,感测/部分傅里叶加速度,有效的3D读出(Turbo Spin-Echo,Sir-TSE;回声平面成像,SiR-EPI;和涡轮田回声,先生 - TFE)分别获得18,10和7分钟的全脑数据,分别用于SIR-TSE,SIR-EPI,SIR-TFE。基于数值模拟,所有方案都提供了大型均匀区域的准确参数估计;然而,由于模糊,较短的SIR-TFE扫描较小的病变较小的焦点变化。健康受试者的实验研究(n = 8)产生与文献值一致的参数,扫描扫描(变异系数:PSR = 2.2-6.4%,R-1F = 0.6-1.4%,适用于所有读数。总的来说,SIR-TFE参数表现出最低的变化性,而SIR-EPI参数因易感性相关的图像畸变而受到不利影响。在复发剩余的多发性硬化(n = 2)中,使用所有三个读数在病变中观察到SIR参数的局灶性变化;然而,对于SIR-TFE的较小病变,对比度降低了对比度,这与数值模拟一致。这些研究结果在一起表明,可以使用3D TFE,EPI或TSE读数进行有效,准确和可重复的全脑SIR;但是,适当的读数应根据申请量身定制。

著录项

相似文献

  • 外文文献
  • 中文文献
  • 专利
获取原文

客服邮箱:kefu@zhangqiaokeyan.com

京公网安备:11010802029741号 ICP备案号:京ICP备15016152号-6 六维联合信息科技 (北京) 有限公司©版权所有
  • 客服微信

  • 服务号