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High Resolution Medical Imaging System for 3-D Imaging of Radioactive Sources with 1 mm FWHM Spatial Resolution

机译:高分辨率医学成像系统,用于放射源的3D成像,FWHM空间分辨率为1毫米

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This paper describes a modification of a new imaging system developed at Argonne National Laboratory that has the potential of achieving a spatial resolution of 1 mm FWHM. The imaging system uses a crystal diffraction lens to focus gamma rays from the radioactive source. The medical imaging application of this system would be to detect small amounts of radioactivity in the human body that would be associated with cancer. The best spatial resolution obtained with the present lens at the time of the presentation made at the Medical Imaging Symposium 2001, was 6.7 mm FWHM for a 1-mm-diameter source. Since then it has been possible to improve the spacial resolution of the lens system to 3 mm FWHM. Experiments with the original lens system have led to a new design for a lens system that could have a spacial resolution of 1 mm FWHM. This is accomplished by: one, reducing the radial dimension of the crystals, and two, by replacing the small individual crystals with bent strips of single-crystalline material. Experiments are under way to test this approach.
机译:本文介绍了在Argonne National实验室开发的新成像系统的修改,该系统具有实现1毫米FWHM的空间分辨率。成像系统使用晶体衍射透镜来从放射源聚焦伽马射线。该系统的医学成像应用是检测与癌症相关的人体中的少量放射性。用在医学成像研讨会2001中的呈现时用本发明透镜获得的最佳空间分辨率为1mm直径为6.7mm FWHM。从那时起,已经可以将镜头系统的空间分辨率提高到3mm FWHM。具有原始透镜系统的实验导致了一种新的设计,可以具有1mm FWHM的空间分辨率的镜头系统。这是通过以下方式完成的:一种,通过用弯曲的单晶材料替换小单晶来减小晶体的径向尺寸和两个。实验正在进行测试这种方法。

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