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用于纹状体摄取半定量的基底神经节匹配工具包:描述与验证

The basal ganglia matching tools package for striatal uptake semi-quantification: description and validation.

作者信息

Calvini Piero, Rodriguez Guido, Inguglia Fabrizio, Mignone Alessandro, Guerra Ugo Paolo, Nobili Flavio

机构信息

Department of Physics, University and INFN, Genoa, Italy.

出版信息

Eur J Nucl Med Mol Imaging. 2007 Aug;34(8):1240-53. doi: 10.1007/s00259-006-0357-2. Epub 2007 Feb 8.

Abstract

PURPOSE

To design a novel algorithm (BasGan) for automatic segmentation of striatal (123)I-FP-CIT SPECT.

METHODS

The BasGan algorithm is based on a high-definition, three-dimensional (3D) striatal template, derived from Talairach's atlas. A blurred template, obtained by convolving the former with a 3D Gaussian kernel (FWHM = 10 mm), approximates striatal activity distribution. The algorithm performs translations and scale transformation on the bicommissural aligned image to set the striatal templates with standard size in an appropriate initial position. An optimization protocol automatically performs fine adjustments in the positioning of blurred templates to best match the radioactive counts, and locates an occipital ROI for background evaluation. Partial volume effect correction is included in the process of uptake computation of caudate, putamen and background. Experimental validation was carried out by means of six acquisitions of an anthropomorphic striatal phantom. The BasGan software was applied to a first set of patients with Parkinson's disease (PD) versus patients affected by essential tremor.

RESULTS

A highly significant correlation was achieved between true binding potential and measured (123)I activity from the phantom. (123)I-FP-CIT uptake was significantly lower in all basal ganglia in the PD group versus controls with both BasGan and a conventional ROI method used for comparison, but particularly with the former. Correlations with the motor UPDRS score were far more significant with the BasGan.

CONCLUSION

The novel BasGan algorithm automatically performs the 3D segmentation of striata. Because co-registered MRI is not needed, it can be used by all nuclear medicine departments, since it is freely available on the Web.

摘要

目的

设计一种用于纹状体(123)I-FP-CIT单光子发射计算机断层扫描(SPECT)自动分割的新型算法(BasGan)。

方法

BasGan算法基于从Talairach图谱衍生而来的高清三维(3D)纹状体模板。通过将前者与3D高斯核(半高宽 = 10毫米)卷积获得的模糊模板近似纹状体活动分布。该算法对双侧连合对齐图像进行平移和缩放变换,以将标准大小的纹状体模板设置在适当的初始位置。一种优化协议会自动对模糊模板的定位进行微调,以最佳匹配放射性计数,并定位枕部感兴趣区域(ROI)用于背景评估。在尾状核、壳核和背景的摄取计算过程中包括部分容积效应校正。通过对一个拟人化纹状体模型进行六次采集来进行实验验证。将BasGan软件应用于第一组帕金森病(PD)患者以及特发性震颤患者。

结果

模型的真实结合潜能与测量的(123)I活性之间实现了高度显著的相关性。与对照组相比,PD组所有基底节的(123)I-FP-CIT摄取均显著降低——使用BasGan和用于比较的传统ROI方法时均如此,但使用前者时尤其明显。与运动UPDRS评分的相关性在使用BasGan时更为显著。

结论

新型BasGan算法可自动进行纹状体的3D分割。由于不需要配准的磁共振成像(MRI),它可供所有核医学科室使用,因为可在网络上免费获取。

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