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首页> 外文期刊>Clinical and experimental pharmacology & physiology >Synchrotron-based angiography for investigation of the regulation of vasomotor function in the microcirculation in vivo.
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Synchrotron-based angiography for investigation of the regulation of vasomotor function in the microcirculation in vivo.

机译:基于同步加速器的血管造影术,用于研究体内微循环中血管舒缩功能的调节。

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摘要

1. Real-time imaging of the vascular networks of any organ system in vivo is possible with synchrotron radiation (SR) angiography. In this review, we discuss the advantages of SR angiography over clinical X-ray imaging and other non-ionizing imaging modalities. Current limitations are also described. 2. The usefulness of dual-energy and temporal subtraction approaches to K-edge iodine imaging are compared. 3. High-resolution images of the microcirculation in small animals are now being collected routinely by multiple research groups through public access research programmes at synchrotrons worldwide. Such images are permitting unrivalled insights into vasomotor regulation deep within intact organ systems, such as the brain, kidney, lung and heart. For example, recent observations indicate changes in vascular control mechanisms in pulmonary hypertension that are specific to certain branching segments of the pulmonary circulation. 4. New possibilities for non-iodinated contrast agents in SR angiography are briefly described. 5. High-resolution angiography in vivo using SR will now allow us to identify vessels with localized or non-uniform vasoconstriction in states such as diabetes or to characterize the extent of endothelial dysfunction in the circulation following hypertension or ischaemic-reperfusion injury. In the near future, this research is expected to reveal the contribution of resistance vessel dysfunction to diverse pathophysiological states, such as stroke, hypertension and ischaemic heart disease.
机译:1.利用同步加速器辐射(SR)血管造影术可以对体内任何器官系统的血管网络进行实时成像。在这篇综述中,我们讨论了SR血管造影相对于临床X射线成像和其他非电离成像方式的优势。还介绍了当前的限制。 2.比较了双能量和时间相减方法对K边缘碘成像的有效性。 3.现在,多个研究小组通过全球同步加速器的公共获取研究计划,定期收集小型动物中微循环的高分辨率图像。此类图像可让您深入了解完整器官系统(如脑,肾,肺和心脏)深处的血管舒缩调控。例如,最近的观察表明,肺动脉高压中血管控制机制的变化特定于肺循环的某些分支部分。 4.简要介绍了SR血管造影中非碘化造影剂的新可能性。 5.现在,使用SR进行的体内高分辨率血管造影术将使我们能够识别处于糖尿病等状态的局部或不均匀血管收缩的血管,或表征高血压或缺血再灌注损伤后循环中内皮功能障碍的程度。预计在不久的将来,这项研究将揭示耐药性血管功能障碍对多种病理生理状态的影响,例如中风,高血压和缺血性心脏病。

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