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首页> 外文期刊>Clinical and experimental pharmacology & physiology >Quantitative functional imaging and kinetic studies with high-Z contrast agents using synchrotron radiation computed tomography.
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Quantitative functional imaging and kinetic studies with high-Z contrast agents using synchrotron radiation computed tomography.

机译:定量功能成像和动力学研究与高Z对比剂使用同步辐射计算机断层扫描。

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摘要

1. There is an increasing demand in diagnostic radiology for extracting additional morphological and functional quantitative parameters from three-dimensional computed tomography (CT) images. Synchrotron radiation computed tomography (SRCT) is the state-of-the-art method in preclinical X-ray CT, because its performance is close to the theoretical limits in terms of accuracy and precision. 2. The SRCT method with monochromatic X-ray beams yields absolute high-Z element contrast agent concentrations, without errors arising from beam hardening or scatter artefacts, by using digital subtraction techniques of the sinograms. Each pixel of the reconstructed difference images provides a quantitative concentration versus time curve of inhaled or injected high-Z contrast agents (xenon or iodine) with a high sensitivity. This is the key point of two functional imaging techniques that were developed at the European Synchrotron Radiation Facility: brain perfusion and lung function (ventilation and perfusion). 3. These two imaging techniques provide parametric images expressed in absolute perfusion parameters (blood volume, blood flow, mean transit time and capillary permeability) or ventilation parameters (lung volume, regional lung ventilation, bronchial lumen size, regional airway and lung compliance) with a high accuracy and precision. 4. The aim of the present brief review is to give a snapshot of the status and perspectives of these two imaging techniques, with emphasis on the performances and interests for functional imaging. Two separate sections will then describe the results obtained so far using SRCT as an in vivo functional imaging tool for measuring changes in haemodynamics and ventilation, in the investigation of experimental pathophysiology and in the effects of therapeutic intervention.
机译:1.诊断放射学中越来越需要从三维计算机断层扫描(CT)图像中提取其他形态和功能定量参数。同步辐射计算机断层扫描(SRCT)是临床前X射线CT的最先进方法,因为其性能在准确性和精确度上都接近理论极限。 2.通过使用正弦图的数字减法技术,使用单色X射线束的SRCT方法可产生绝对的高Z元素造影剂浓度,而不会因束硬化或散射伪影而产生误差。重建的差异图像的每个像素都以高灵敏度提供了吸入或注射的高Z对比剂(氙或碘)的浓度-时间曲线。这是欧洲同步加速器辐射设施开发的两种功能成像技术的重点:脑灌注和肺功能(通气和灌注)。 3.这两种成像技术可提供以绝对灌注参数(血液体积,血流量,平均通过时间和毛细血管通透性)或通气参数(肺体积,局部肺通气,支气管腔大小,局部气道和肺顺应性)表示的参数图像。高精度和高精度。 4.本简要审查的目的是简要介绍这两种成像技术的现状和前景,重点是功能成像的性能和兴趣。然后分两个部分描述迄今为止使用SRCT作为体内功能成像工具测量血液动力学和通气变化,实验病理生理学研究和治疗干预效果的结果。

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