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Development and application of a high-resolution nuclear medicine imaging system.

机译:高分辨率核医学成像系统的开发和应用。

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摘要

Recent advances in the ability to perform genetic alterations in mice that define specific phenotypes have revolutionized biomedical research by helping to elucidate the relationship between genes and disease. New instruments for measurement of biological parameters, especially those that can be applied in vivo, will greatly facilitate biomedical experimentation. While modern medical imaging instruments provide detailed information in human patients non-invasively, they typically have inadequate spatial resolution for imaging mice.; This dissertation describes the development, performance characterization, and application of a high-resolution single photon emission computed tomography (SPECT) imaging system for mice. The system consists of a standard scintillation camera configured in a pinhole geometry to achieve millimeter spatial resolution by producing a magnified image of the object. System spatial resolution, sensitivity, image uniformity, and spatial linearity were characterized by analyzing images of test patterns of radioactivity (phantoms).; System performance for myocardial perfusion imaging was tested using a novel phantom modeling normal and abnormal murine myocardial perfusion. A protocol defining the pinhole geometry, injected dose of the radiopharmaceutical, acquisition time, and anesthesia was developed for high-resolution myocardial perfusion imaging of mice. Studies of control mice with normal perfusion produced images comparable to those obtained clinically in humans. A murine model of coronary occlusion was developed in which ligation of a coronary artery produced an acute myocardial infarction distal to the ligation. Myocardial perfusion imaging was performed on a group of mice (n = 11), and the size of each infarct as a percentage of the myocardial volume was measured from the in vivo images and compared to the result determined from digital autoradiography, a gold-standard ex vivo measurement, resulting in a correlation of 0.80 (p 0.005).; In summary, this dissertation describes the development and characterization of a high-resolution radionuclide imaging system for mice. Myocardial perfusion images with clinical image quality were produced, and the feasibility of measurement of the size of myocardial infarction was demonstrated. The system also is suitable for radionuclide imaging of mice used as biomedical models of cancer and other diseases.
机译:在定义特定表型的小鼠中进行基因改变的能力的最新进展通过帮助阐明基因与疾病之间的关系,彻底改变了生物医学研究。用于测量生物学参数的新仪器,特别是那些可以在体内应用的仪器,将极大地促进生物医学实验。尽管现代医学成像仪器无创地为人类患者提供了详细的信息,但它们通常无法为小鼠成像提供足够的空间分辨率。本文描述了一种高分辨率的小鼠单光子发射计算机断层扫描(SPECT)成像系统的开发,性能表征和应用。该系统由配置为针孔几何形状的标准闪烁照相机组成,以通过产生物体的放大图像来实现毫米级的空间分辨率。系统的空间分辨率,灵敏度,图像均匀性和空间线性度通过分析放射性测试图(幻像)来表征。使用新型体模对正常和异常鼠类心肌灌注进行测试,测试心肌灌注成像的系统性能。协议定义了针孔的几何形状,放射性药物的注射剂量,采集时间和麻醉,用于小鼠的高分辨率心肌灌注成像。具有正常灌注的对照小鼠的研究产生的图像可与人类临床上获得的图像相比。建立了冠状动脉阻塞的小鼠模型,其中冠状动脉的结扎在结扎远端产生了急性心肌梗塞。在一组小鼠(n = 11)上进行了心肌灌注显像,并从 in vivo 图像中测量了每个梗塞的大小(占心肌体积的百分比),并将其与从数字放射自显影,一项金标准的“离体”测量,相关系数为0.80(p <0.005)。总而言之,本文描述了一种用于小鼠的高分辨率放射性核素成像系统的开发和表征。产生具有临床图像质量的心肌灌注图像,并证明了测量心肌梗塞大小的可行性。该系统还适用于小鼠的放射性核素成像,用作癌症和其他疾病的生物医学模型。

著录项

  • 作者

    Wu, Max Chang.;

  • 作者单位

    University of California, San Francisco with the University of California, Berkeley.;

  • 授予单位 University of California, San Francisco with the University of California, Berkeley.;
  • 学科 Engineering Biomedical.; Health Sciences Radiology.
  • 学位 Ph.D.
  • 年度 2001
  • 页码 113 p.
  • 总页数 113
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类 生物医学工程;预防医学、卫生学;
  • 关键词

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