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X-ray region of interest imaging system for rapid-sequence angiography and fluoroscopy: The micro-angiographic fluoroscope.

机译:用于快速序列血管造影和透视的X射线感兴趣区域成像系统:显微血管造影荧光镜。

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摘要

Neuro-endovascular interventional diagnosis and treatment require high resolution x-ray imaging guidance of fluoroscopy and angiography. Our group has developed a small field of view, 5 frames per second, high-resolution micro-angiographic imager. This imager has demonstrated substantial high-resolution advantages for angiography over the conventional image intensifier. The work of this dissertation is to build a new micro-angiographic fluoroscope (MAF) to expand the capabilities of the micro-angiographic imager to include fluoroscopic imaging over a small field of view.The components of the MAF are all commercially available including CsI (T1) scintillator, fiber-optic taper, light image intensifier (LII), mirror, lens, and CCD camera. The critical component is the microchannel plate based LII with very high spatial resolution. The LII has a large range of gain that can be controlled easily by a 5V to 9V DC voltage. This property enables the MAF to be used for angiography with a low gain of the LII, and for fluoroscopy with a high gain of the LII.This design was justified by the quantum accounting diagram calculation. The preliminary experimental results from the test model MAF demonstrated the feasibility of this design. The improved prototype MAF model demonstrates high-resolution imaging for both fluoroscopy and angiography. The performance descriptors of the prototype MAF such as MTF, NPS, and DQE, were measured in both angiographic mode and fluoroscopic mode. For angiographic mode, at spatial frequencies of 4 and 10 lp/mm, the MTF for the MAF was 14% and 1.5% respectively, the DQE for the MAF was 12% and 1.2% respectively, while the DQE (0) was about 60%. For fluoroscopic mode, at spatial frequency of 4 lp/mm, the MTF for the MAF was 11%, and the DQE for the MAF was 9.5%. The image lag for the MAF in fluoroscopic mode at a rate of 30 fps was measured to be minimal. The allowable maximum entrance exposure rate was found to be related with the maximum LII phosphor screen luminance due to the maximum current limitations of the LII. Real-time dark field and flat field correction and roadmapping at a rate of 30 fps in fluoroscopic mode were realized and applied in small animal interventional studies.The current work is the first stage in the development of a new level of high resolution image guidance for neuro-interventional procedures that has the potential to greatly advance the accuracy and effectiveness of minimally invasive catheter-based interventional procedures.
机译:神经血管内介入诊断和治疗需要荧光透视和血管造影的高分辨率X射线成像指导。我们的小组开发了一个小视野,每秒5帧的高分辨率微血管成像仪。与传统的图像增强器相比,该成像器在血管造影方面已显示出显着的高分辨率优势。本论文的工作是建立一种新的微血管造影荧光镜(MAF),以扩大微血管造影成像仪的功能,使其在较小的视场中包括荧光透视成像.MAF的所有组件都可以通过商业途径获得,包括CsI( T1)闪烁体,光纤锥度,光图像增强器(LII),反射镜,镜头和CCD摄像机。关键组件是具有很高空间分辨率的基于微通道板的LII。 LII具有很大的增益范围,可以通过5V至9V直流电压轻松控制。该特性使MAF可以用于低LII增益的血管造影术和高LII增益的荧光透视检查。测试模型MAF的初步实验结果证明了该设计的可行性。改进的原型MAF模型展示了用于荧光检查和血管造影的高分辨率成像。 MAF原型的性能指标,例如MTF,NPS和DQE,是在血管造影模式和荧光检查模式下测量的。对于血管造影模式,在4和10 lp / mm的空间频率下,MAF的MTF分别为14%和1.5%,MAF的DQE分别为12%和1.2%,而DQE(0)约为60 %。对于荧光透视模式,在4 lp / mm的空间频率下,MAF的MTF为11%,MAF的DQE为9.5%。在荧光镜模式下以30 fps的速率对MAF的图像滞后进行了测量,结果是最小。由于LII的最大电流限制,发现允许的最大入口曝光率与LII荧光屏的最大亮度有关。在小动物介入研究中,实现了以荧光镜模式以30 fps的速率进行实时暗场和平坦场校正以及制图。目前的工作是开发新水平的高分辨率图像制导的第一步。神经介入手术有可能极大地提高基于微创导管的介入手术的准确性和有效性。

著录项

  • 作者

    Wu, Ye.;

  • 作者单位

    State University of New York at Buffalo.;

  • 授予单位 State University of New York at Buffalo.;
  • 学科 Health Sciences Radiology.Physics Radiation.Biophysics Medical.
  • 学位 Ph.D.
  • 年度 2005
  • 页码 150 p.
  • 总页数 150
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

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