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Synchrotron-based intra-venous K-edge digital subtraction angiography in a pig model: A feasibility study

机译:基于同步加速器的静脉内K边缘数字减影血管造影在猪模型中的可行性研究

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Background: K-edge digital subtraction angiography (KEDSA) combined with the tunability of synchrotron beam yields an imaging technique that is highly sensitive to low concentrations of contrast agents. Thus, contrast agent can be administered intravenously, obviating the need for insertion of a guided catheter to deliver a bolus of contrast agent close to the target tissue. With the high-resolution detectors used at synchrotron facilities, images can be acquired at high spatial resolution. Thus, the KEDSA appears particularly suited for studies of neurovascular pathology in animal models, where the vascular diameters are significantly smaller than in human patients. Materials and methods: This feasibility study was designed to test the suitability of KEDSA after intravenous injection of iodine-based contrast agent for use in a pig model. Four adult male pigs were used for our experiments. Neurovascular angiographic images were acquired using KEDSA with a solid state Germanium (Ge) detector at the European Synchrotron Radiation Facility (ESRF) in Grenoble, France. Results: After intravenous injection of 0.9 ml/kg iodinated contrast agent (Xenetix~R), the peak iodine concentrations in the internal carotid and middle cerebral arteries reached 35 mg/ml. KEDSA images in radiography mode allowed the visualization of intracranial arteries of less than 1.5 mm diameter.
机译:背景:K边缘数字减影血管造影(KEDSA)与同步加速器光束的可调性相结合,产生了一种对低浓度造影剂高度敏感的成像技术。因此,可以静脉内施用造影剂,而无需插入引导导管以将大剂量的造影剂推向目标组织。使用同步加速器设施中使用的高分辨率探测器,可以以高空间分辨率获取图像。因此,KEDSA似乎特别适用于动物模型中的神经血管病理学研究,其中血管直径明显小于人类患者。材料和方法:本可行性研究旨在测试静脉注射碘基造影剂用于猪模型后KEDSA的适用性。四只成年雄性猪用于我们的实验。在法国格勒诺布尔的欧洲同步加速器辐射设施(ESRF)上使用带有固态锗(Ge)检测器的KEDSA采集神经血管造影图像。结果:静脉注射0.9 ml / kg碘化造影剂(Xenetix〜R)后,颈内动脉和大脑中动脉的碘浓度峰值达到35 mg / ml。放射线照相模式下的KEDSA图像可显示直径小于1.5毫米的颅内动脉。

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