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基于放射性墨水的叠层体模校准及其在核医学中的应用

Calibration of a radioactive ink-based stack phantom and its applications in nuclear medicine.

作者信息

El-Ali H, Ljungberg M, Strand S-E, Palmer J, Malmgren L, Nilsson J

机构信息

The Jubileum Institute, Radiation Physics Department, Lund University, Sweden.

出版信息

Cancer Biother Radiopharm. 2003 Apr;18(2):201-7. doi: 10.1089/108497803765036364.

Abstract

This paper describes a stack phantom useful for imaging complex activity distributions. It is based on images printed with radioactive ink using a commercial ink-jet printer. The application for the phantom is in the evaluation of planar and SPECT scintillation camera images and for validation of Monte Carlo simulated images. The accuracy in generating the activity distributions on paper sheets is especially important. Here we describe the calibration procedure for the ink-jet printer. The goal of the printer calibration is to find the relationship between the digital image count (voxel grey level) and its corresponding activity on the paper sheets (radioactivity). The relationship between the voxel grey level and the radioactivity on the paper sheets (measured by scanning technique and well counter) was found to be logarithmic, and a 3rd degree polynomial was found to fit the relationship. The distribution of radioactivity in the ink cartridge was investigated by pinhole SPECT. The distribution of (99m)Tc solution was found to be homogeneous in the ink solution. Experimental studies were done directly on Monte Carlo simulated heart images from the NCAT phantom. The result showed that the simulated images are similar to the images measured using the ink-jet technique. This stack phantom could be a promising solution with an advantage that the exact geometry generated in Monte Carlo could be imitated in the phantom. The phantom is a very flexible device and clearly much more versatile than conventional phantoms which have a fixed geometry and spatial limitation.

摘要

本文描述了一种有助于对复杂活动分布进行成像的堆叠体模。它基于使用商用喷墨打印机用放射性墨水打印的图像。该体模的应用在于评估平面闪烁相机图像和单光子发射计算机断层扫描(SPECT)图像,以及验证蒙特卡罗模拟图像。在纸张上生成活动分布的准确性尤为重要。在此我们描述喷墨打印机的校准程序。打印机校准的目标是找到数字图像计数(体素灰度级)与其在纸张上相应活动(放射性)之间的关系。发现体素灰度级与纸张上的放射性(通过扫描技术和井型计数器测量)之间的关系是对数关系,并且发现三次多项式适合该关系。通过针孔SPECT研究了墨盒中放射性的分布。发现锝-99m((^{99m}Tc))溶液在墨水溶液中分布均匀。直接对来自NCAT体模的蒙特卡罗模拟心脏图像进行了实验研究。结果表明,模拟图像与使用喷墨技术测量的图像相似。这种堆叠体模可能是一种很有前景的解决方案,其优点是可以在体模中模仿蒙特卡罗中生成的精确几何形状。该体模是一种非常灵活的设备,显然比具有固定几何形状和空间限制的传统体模用途广泛得多。

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