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Model simulations and comparative evaluations of susceptibility-based and gadolinium contrast enhancement for high-resolution brain venography

机译:基于敏感性和g对比剂增强的高分辨率脑静脉造影的模型模拟和比较评估

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The MRI signal, in terms of amplitude and phase, was simulated for susceptibility-based brain venography (BV) without and with administration of contrast agent (CA) under standard clinical parameters and field magnitude of 1.5 T (Tesla). Then, in order to compare the enhancement due to CA and that one obtained through susceptibility weighted magnitude image (SWI) processing, exploiting only the intrinsic magnetic susceptibility differences between blood and surrounding tissue, the simulated signal was processed with a well-known phase masking technique to increase signal differences as a function of tissue type, thus generating better image contrast. The simulation was carried out adopting a well-established bi-compartmental model, described by a set of analytical formulas. The based simulated signal was processed with the SWI technique considering a conventional masking procedure available in literature and a different masking method designed and described in our previous work. The resulting enhanced signals in terms of image contrast obtained with these two different phase masking procedures and with the administration of conventional CA were compared. The new designed mask (DM), compared with the conventional one, allows to get better results in terms of image contrast for all blood volume fractions considered in the simulation. Additionally, better results can be obtained also with respect to the case of CA administration only. Results from model simulations demonstrate the effectiveness of masking techniques to improve image contrast regarding all vessel sizes of clinical interest in the high resolution susceptibility-based brain venography possibly avoiding, in some cases, the need for CA administration.
机译:在标准临床参数和1.5 T(特斯拉)磁场强度下,在不使用和使用造影剂(CA)的情况下,模拟了基于振幅和相位的MRI信号,用于基于敏感性的脑静脉造影(BV)。然后,为了比较CA引起的增强和通过磁化率加权幅值图像(SWI)处理获得的增强,仅利用血液与周围组织之间的固有磁化率差异,对模拟信号进行了众所周知的相位掩蔽处理。技术,根据组织类型增加信号差异,从而产生更好的图像对比度。模拟是通过一套完善的双室模型进行的,该模型由一组解析公式描述。考虑到文献中可用的常规屏蔽程序以及在我们先前的工作中设计和描述的另一种屏蔽方法,使用SWI技术处理了基于仿真的信号。比较了通过这两种不同的相位掩盖程序以及常规CA的获得在图像对比度方面得到的增强信号。与传统的蒙版相比,新设计的蒙版(DM)可以在模拟中考虑的所有血液体积分数的图像对比度方面获得更好的结果。另外,相对于仅CA施用的情况,也可以获得更好的结果。模型仿真的结果表明,在高分辨率的基于敏感性的脑静脉造影中,掩膜技术对于改善临床上所有感兴趣的血管大小的图像对比度的有效性,在某些情况下可能避免了CA管理的需要。

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