Tamayo P, Montes C, Perez M E, Martin E, García-Talavera J R
Nuclear Medicine Department, University Hospital of Salamanca, Spain; Institute of Biomedical Research of Salamanca, Spain.
Medical Physics Department, University Hospital of Salamanca, Spain; Institute of Biomedical Research of Salamanca, Spain.
Rev Esp Med Nucl Imagen Mol. 2015 Mar-Apr;34(2):89-94. doi: 10.1016/j.remn.2014.08.004. Epub 2014 Oct 8.
To describe and validate a novel, fully automated program specifically designed for the semiquantification of striatal (123)I-FP-CIT uptake using volumes of interest (VOI) analysis.
The proposed algorithm is based on a template that mimics the striatal (123)I-FP-CIT uptake in a healthy subjects, derived from defined anatomical VOIs available from WFU PickAtlas. Four SPECT studies of the anthropomorphic Alderson phantom filled with variable radioactive concentrations were acquired for the experimental validation. Experimental SPECT images were spatially normalized with respect to the previously created template. The binary VOIs corresponding to left caudate and putamen and right caudate and putamen, which were used to construct the template, were projected onto the experimental images to obtain the counts for these regions. To minimize the partial volume effect, a percentage of the voxels in these regions (threshold), rather than all of them, was used. A binary occipital VOI was used to quantify the non-specific uptake. Experimental binding potentials (BPs) were calculated from the counts in these regions. True BPs were calculated from aliquots taken from the solutions used to fill the phantom.
There were statistically significant differences in the experimental BP values (p<0.002) according to the percentage of voxels used. A highly significant correlation was achieved between true and experimental BP values, regardless of the percentage of voxels included for quantification.
Our novel, observer-independent program automatically performs the semiquantification of striatal (123)I-FP-CIT uptake in experimental studies.
描述并验证一种专门设计用于使用感兴趣区(VOI)分析对纹状体(123)I-FP-CIT摄取进行半定量分析的新型全自动程序。
所提出的算法基于一个模板,该模板模拟健康受试者纹状体(123)I-FP-CIT摄取情况,源自WFU PickAtlas提供的定义解剖学VOI。获取了对填充有不同放射性浓度的拟人化Alderson体模的四项单光子发射计算机断层扫描(SPECT)研究用于实验验证。将实验性SPECT图像相对于先前创建的模板进行空间归一化。将用于构建模板的对应于左侧尾状核和壳核以及右侧尾状核和壳核的二元VOI投影到实验图像上,以获得这些区域的计数。为了最小化部分容积效应,使用这些区域中一定百分比的体素(阈值),而不是全部体素。使用一个二元枕叶VOI来量化非特异性摄取。从这些区域的计数计算实验性结合电位(BP)。从用于填充体模的溶液中取出的等分试样计算真实BP。
根据所使用体素的百分比,实验性BP值存在统计学显著差异(p<0.002)。无论用于量化的体素百分比如何,真实BP值与实验性BP值之间均实现了高度显著的相关性。
我们的新型、与观察者无关的程序在实验研究中自动对纹状体(123)I-FP-CIT摄取进行半定量分析。