Wittsack H J, Ritzl A, Mödder U
Institut für Diagnostische Radiologie, Universität Düsseldorf, Germany.
Rofo. 2002 Jun;174(6):742-6. doi: 10.1055/s-2002-32216.
Quick and user-friendly analysis of perfusion and diffusion weighted MRI by means of interactive computer software.
A Windows(R)-based software was developed for analysis of perfusion (PWI) and diffusion (DWI) MR imaging. The computer program was developed in the programming language C++ using optimized algorithms, so that a high computing speed on Win95/98/NT systems is achieved. The established SVD algorithms of Østergaard et al. for quantitative perfusion analysis were implemented.
Perfusion parameter maps of the cerebral blood flow (rCBF), the mean transit time (MTT) and the cerebral blood volume (rCBV) in consideration of the arterial input function (AIF) can be calculated and visualized using color tables. Additionally, the calculation of "time-to-peak" maps (TTP) and of maps of the percentage change in signal intensity (PC) is possible. The analysis of n = 10 normal persons shows perfusion values that agree with those found in the literature.
With the computer program developed here color-coded perfusion parameter maps can be calculated easily. Because of the high computing speed it is possible to get information about tissue perfusion on the basis of the large MR data sets even in acute investigations.
通过交互式计算机软件对灌注加权磁共振成像(MRI)和扩散加权MRI进行快速且用户友好的分析。
开发了一种基于Windows的软件,用于分析灌注加权成像(PWI)和扩散加权成像(DWI)。该计算机程序使用优化算法以C++编程语言开发,从而在Win95/98/NT系统上实现了高计算速度。实施了Østergaard等人用于定量灌注分析的既定奇异值分解(SVD)算法。
考虑动脉输入函数(AIF)的情况下,可以计算并使用颜色表可视化脑血流量(rCBF)、平均通过时间(MTT)和脑血容量(rCBV)的灌注参数图。此外,还可以计算“达峰时间”图(TTP)和信号强度百分比变化图(PC)。对n = 10名正常人的分析显示,灌注值与文献中报道的一致。
使用此处开发的计算机程序,可以轻松计算出彩色编码的灌注参数图。由于计算速度快,即使在急性检查中,也能够基于大量MR数据集获取有关组织灌注的信息。