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针孔单光子发射计算机断层扫描:一种用于小型实验动物体内高分辨率单光子发射计算机断层扫描成像的方法。

Pinhole SPECT: an approach to in vivo high resolution SPECT imaging in small laboratory animals.

作者信息

Weber D A, Ivanovic M, Franceschi D, Strand S E, Erlandsson K, Franceschi M, Atkins H L, Coderre J A, Susskind H, Button T

机构信息

Medical Department, Brookhaven National Laboratory, Upton, New York 11973.

出版信息

J Nucl Med. 1994 Feb;35(2):342-8.

PMID:8295008
Abstract

UNLABELLED

The performance of pinhole SPECT and the application of this technology to investigate the localization properties of radiopharmaceuticals in vivo in small laboratory animals are presented.

METHODS

System sensitivity and spatial resolution measurements of a rotating scintillation camera system are made for a low-energy pinhole collimator equipped with 1.0-, 2.0- and 3.3-mm aperture pinhole inserts. The spatial detail offered by pinhole SPECT for in vivo imaging was investigated in studies of the brain and heart in Fisher 344 rats by administering 201TICI, 99mTc-HMPAO, 99mTc-DTPA and 99mTc-MIBI. Image acquisition is performed using a rotating scintillation camera equipped with a pinhole collimator; projection data are acquired in conventional step-and-shoot mode as the camera is rotated 360 degrees around the subject. Pinhole SPECT images are reconstructed using a modified cone-beam algorithm developed from a two-dimensional fanbeam filtered backprojection algorithm.

RESULTS

The reconstructed transaxial resolution of 2.8 mm FWHM and system sensitivity of 0.086 c/s/kBq with the 2.0-mm pinhole collimator aperture provide excellent spatial detail and adequate sensitivity for imaging the regional uptake of the radiopharmaceuticals in tumor, organs and other tissues in small laboratory animals.

CONCLUSION

The resolution properties of pinhole SPECT are superior to those which have been achieved thus far with conventional SPECT or PET imaging technologies. Pinhole SPECT provides an important approach for investigating localization properties of radiopharmaceuticals in vivo.

摘要

未标注

介绍了针孔单光子发射计算机断层扫描(SPECT)的性能以及该技术在小型实验动物体内研究放射性药物定位特性方面的应用。

方法

对配备有孔径为1.0毫米、2.0毫米和3.3毫米针孔插入物的低能针孔准直器的旋转闪烁相机系统进行系统灵敏度和空间分辨率测量。通过给予201铊(201TICI)、99m锝-六甲基丙烯胺肟(99mTc-HMPAO)、99m锝-二乙三胺五乙酸(99mTc-DTPA)和99m锝-甲氧基异丁基异腈(99mTc-MIBI),在Fisher 344大鼠的脑和心脏研究中,研究针孔SPECT用于体内成像所提供的空间细节。使用配备针孔准直器的旋转闪烁相机进行图像采集;当相机围绕受试者旋转360度时,以传统的步进采集模式采集投影数据。使用从二维扇形束滤波反投影算法开发的改进锥束算法重建针孔SPECT图像。

结果

对于孔径为2.0毫米的针孔准直器,重建的横断面半高宽(FWHM)分辨率为2.8毫米,系统灵敏度为0.086计数/秒/千贝克勒尔,可为小型实验动物肿瘤、器官和其他组织中放射性药物的区域摄取成像提供出色的空间细节和足够的灵敏度。

结论

针孔SPECT的分辨率特性优于迄今为止传统SPECT或正电子发射断层扫描(PET)成像技术所达到的分辨率特性。针孔SPECT为研究放射性药物在体内的定位特性提供了一种重要方法。

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