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Anamorphic preclinical SPECT imaging with high-resolution silicon double-sided strip detectors.

机译:高分辨率临床前SPECT成像,带高分辨率硅双面条形检测器。

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摘要

Preclinical single-photon emission computed tomography (SPECT) is an essential tool for studying progression, response to treatment, and physiological changes in small animal models of human disease. The wide range of imaging applications is often limited by the static design of many preclinical SPECT systems.;We have developed a prototype imaging system that replaces the standard static pinhole aperture with two sets of movable, keel-edged copper-tungsten blades configured as crossed (skewed) slits. These apertures can be positioned independently between the object and detector, producing an anamorphic image in which the axial and transaxial magnications are not constrained to be equal. We incorporated a 60 mm x 60 mm, millimeter-thick megapixel silicon double-sided strip detector that permits ultrahigh-resolution imaging. While the stopping power of silicon is low for many common clinical radioisotopes, its performance is sufficient in the range of 20-60 keV to allow practical imaging experiments. The low-energy emissions of 125I fall within this energy window, and the 60-day half life provides an advantage for longitudinal studies. The flexible nature of this system allows the future application of adaptive imaging techniques.;We have demonstrated ∼225-mum axial and ∼175-mum transaxial resolution across a 2.65 cm3 cylindrical field of view, as well as the capability for simultaneous multi-isotope acquisitions. We describe the key advancements that have made this system operational, including bringing up a new detector readout ASIC, development of detector control software and data-processing algorithms, and characterization of operating characteristics. We describe design and fabrication of the adjustable slit aperture platform, as well as the development of an accurate imaging forward model and its application in a novel geometric calibration technique and a GPU-based ultrahigh-resolution reconstruction code.
机译:临床前单光子发射计算机断层扫描(SPECT)是研究人类疾病小动物模型中的进展,对治疗的反应以及生理变化的重要工具。许多临床前SPECT系统的静态设计通常限制了广泛的成像应用;我们已经开发了一种原型成像系统,该原型系统用两组配置为交叉的可移动龙骨边缘铜钨刀片代替了标准的静态针孔孔径(歪斜)缝。这些孔可以独立地放置在物体和检测器之间,从而产生一个变形图像,在该变形图像中,轴向和跨轴磁化强度不被限制为相等。我们集成了一个60 mm x 60 mm,毫米厚的百万像素硅双面检测器,可实现超高分辨率成像。尽管对于许多常见的临床放射性同位素来说,硅的阻止能力很低,但其性能在20-60 keV的范围内足够,可以进行实际的成像实验。 125 I的低能量排放量在此能量范围内,并且60天的半衰期为纵向研究提供了优势。该系统的灵活性使我们可以在未来应用自适应成像技术。;我们已经证明了在2.65 cm3圆柱视场上的〜225m轴向和〜175m跨轴分辨率,以及同时多同位素的能力收购。我们描述了使该系统可运行的关键进展,包括提出了新的探测器读出ASIC,探测器控制软件和数据处理算法的开发以及运行特性的表征。我们描述了可调缝隙孔径平台的设计和制造,以及精确成像正向模型的开发及其在新型几何校准技术和基于GPU的超高分辨率重建代码中的应用。

著录项

  • 作者

    Durko, Heather L.;

  • 作者单位

    The University of Arizona.;

  • 授予单位 The University of Arizona.;
  • 学科 Physics Optics.;Health Sciences Radiology.
  • 学位 Ph.D.
  • 年度 2014
  • 页码 204 p.
  • 总页数 204
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

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