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用于小动物研究的采用四个针孔准直器的超高分辨率单光子发射计算机断层扫描系统。

Ultra-high resolution SPECT system using four pinhole collimators for small animal studies.

作者信息

Ishizu K, Mukai T, Yonekura Y, Pagani M, Fujita T, Magata Y, Nishizawa S, Tamaki N, Shibasaki H, Konishi J

机构信息

Department of Nuclear Medicine, Faculty of Medicine, Kyoto University, Japan.

出版信息

J Nucl Med. 1995 Dec;36(12):2282-7.

PMID:8523120
Abstract

UNLABELLED

We describe a newly developed ultra-high resolution SPECT system using four pinhole collimators for small animal studies.

METHODS

The system utilizes a clinical four-head SPECT scanner with specially designed pinhole collimators. Four types of pinholes with different configurations were designed with different effective aperture sizes (1.0, 2.0 and 4.0 mm) and rotating radii (40 mm and 50 mm). The distance from the axis of rotation to the scintillator was fixed to 180 mm. A filtered backprojection algorithm was used to reconstruct SPECT images after fanbeam-to-parallel-beam data conversion.

RESULTS

The system provided a reconstructed spatial resolution of 1.65 mm (FWHM) and sensitivity of 4.3 kcps/microCi/ml with the best type of pinholes, respectively. The 99mTc-HMPAO SPECT image in rat studies clearly visualized small brain structures, and the left ventricular myocardium and cardiac cavity were clearly separated with 99mTc-MIBI. Dynamic SPECT imaging of rat brain with [123I]iomazenil was also feasible.

CONCLUSION

This ultra-high resolution SPECT system can be used to measure the regional distribution of radiolabeled tracers in small animals in vivo and may play a significant role in the development of new radiopharmaceuticals and in studies of various disease models using living animals.

摘要

未标注

我们描述了一种新开发的超高分辨率单光子发射计算机断层扫描(SPECT)系统,该系统使用四个针孔准直器用于小动物研究。

方法

该系统利用一台临床四探头SPECT扫描仪及专门设计的针孔准直器。设计了四种不同构型的针孔,其有效孔径大小不同(1.0、2.0和4.0毫米),旋转半径也不同(40毫米和50毫米)。从旋转轴到闪烁体的距离固定为180毫米。在将扇形束数据转换为平行束数据后,使用滤波反投影算法重建SPECT图像。

结果

该系统使用最佳类型的针孔时,重建空间分辨率分别为1.65毫米(半高宽),灵敏度为4.3千计数每秒/微居里/毫升。大鼠研究中的99mTc-HMPAO SPECT图像清晰显示了小脑结构,99mTc-MIBI使左心室心肌和心腔清晰分离。用[123I]碘美托咪定对大鼠脑进行动态SPECT成像也是可行的。

结论

这种超高分辨率SPECT系统可用于测量放射性标记示踪剂在小动物体内的区域分布,在新型放射性药物的研发以及使用活体动物的各种疾病模型研究中可能发挥重要作用。

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