Hasan Khader M, Narayana Ponnada A
Department of Radiology, University of Texas Medical School at Houston, Houston, Texas 77030, USA.
Magn Reson Med. 2003 Sep;50(3):589-98. doi: 10.1002/mrm.10552.
Diffusion tensor MRI (DT-MRI) is a promising modality for in vivo mapping of the organization of deep tissues. The most commonly used DT-MRI invariant maps are the mean diffusivity, mu(D), relative anisotropy (RA), and fractional anisotropy (FA). Because of the computational burden, anisotropy maps are generally computed offline. The availability of a simple procedure to compute RA, FA, and mu(D) online would make DT-MRI more useful in clinical applications that require immediate feedback. In this study, analytical expressions that relate the commonly used tensor anisotropy measures obtained from the decoded and diagonalized DT with those obtained from the first and second moments of the measured diffusion-weighted (DW) data are derived. Specifically, it is shown that for the principal icosahedron encoding scheme, RA is related to the mean and standard deviation (SD) of the DW measurements that can be computed online. Since FA is commonly used as an anisotropy measure, an analytical expression relating RA and FA was derived from the tensor invariants. These results were validated using both Monte Carlo simulations and high-resolution, normal whole-brain DT-MRI measurements acquired with different b-factors, encoding schemes, and signal-to-noise ratio (SNR) levels. The bias introduced by the rotationally variant encoding schemes into the diffusion measures is also investigated.
扩散张量磁共振成像(DT-MRI)是一种用于体内深部组织结构映射的很有前景的模态。最常用的DT-MRI不变量图是平均扩散率μ(D)、相对各向异性(RA)和分数各向异性(FA)。由于计算负担,各向异性图通常是离线计算的。一种能在线计算RA、FA和μ(D)的简单程序的可用性将使DT-MRI在需要即时反馈的临床应用中更有用。在本研究中,推导了将从解码和对角化的扩散张量(DT)获得的常用张量各向异性测量值与从测量的扩散加权(DW)数据的一阶和二阶矩获得的测量值相关联的解析表达式。具体而言,结果表明,对于主二十面体编码方案,RA与可在线计算的DW测量值的均值和标准差(SD)相关。由于FA通常用作各向异性测量值,因此从张量不变量中推导了一个将RA和FA相关联的解析表达式。使用蒙特卡罗模拟以及在不同b因子、编码方案和信噪比(SNR)水平下采集的高分辨率正常全脑DT-MRI测量值对这些结果进行了验证。还研究了旋转可变编码方案引入到扩散测量中的偏差。