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首页> 外文期刊>Investigative radiology >Four dimensional intravenous cone-beam computed tomographic subtraction angiography. In vitro study of feasibility.
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Four dimensional intravenous cone-beam computed tomographic subtraction angiography. In vitro study of feasibility.

机译:三维静脉锥形束CT减影血管造影。体外研究的可行性。

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OBJECTIVE: We demonstrate the feasibility of 4D intravenous computed tomographic (CT) subtraction cerebral angiography using in vitro, anthropomorphic techniques. MATERIALS AND METHODS: High-resolution 3D cone-beam CT datasets (0.45 mm isotropic voxel size, 120 kVp, 90 mA) of a cadaver-derived cerebrovascular phantom, containing a saccular aneurysm, were acquired at a rate of 1 Hz for 20 seconds. A computer-controlled pump provided physiologically realistic blood-flow waveforms using a water-glycerol blood-mimicking fluid (10 mL/s mean flow). Contrast agent injected at 0.94 mL/s for 5 seconds provided a clinically realistic intravenous vascular enhancement of approximately 300 Hounsfield units. The first 4 to 5 volumes (precontrast) provided a mask dataset for volumetric subtraction. Vascular enhancement was measured in the dynamic, time-resolved, subtracted 3D angiograms. Contrast-to-noise ratio was measured in 3D source data and maximum intensity projections (MIPs). Dose measurements were made using an ionization chamber. RESULTS: MIP images of the time-resolved volumetric data were of diagnostic quality, clearly showing the aneurysm dome and neck, and cerebral vessels. Dynamic flow information (contrast wash-in/wash-out) was observed, including differential opacification and draining of the anterior and posterior vasculature and the aneurysm. Contrast-to-noise ratio was measured to be in the range of 3 to 4.5 in averaged volumes, and 10.5 to 17 in the corresponding MIPs, at an effective patient dose of 2.8 mSv, with 4 cm of axial coverage. CONCLUSIONS: We have demonstrated the feasibility of 4D volumetric, intravenous CT subtraction angiography, in vitro, providing time-resolved, diagnostic quality 3D datasets. We were able to show time-resolved blood-flow information and high-resolution local and global anatomic renderings, from a single 20-second scan, at acceptable x-ray dose.
机译:目的:我们证明使用体外拟人技术进行4D静脉CT(CT)减影脑血管造影的可行性。材料与方法:以1 Hz的速率采集20秒钟的高分辨率3D锥束CT数据集(0.45 mm各向同性体素尺寸,120 kVp,90 mA),该图像是尸体衍生的脑血管幻影,其中包含一个囊状动脉瘤。 。计算机控制的泵使用甘油水模拟血液(10 mL / s的平均流量)提供生理上真实的血流波形。以0.94 mL / s的速度注入造影剂5秒钟,可提供临床上现实的约300豪恩斯菲尔德单位的静脉血管增强效果。前4到5卷(预对比)提供了用于体积减法的蒙版数据集。在动态的,时间分辨的,减去的3D血管造影图中测量了血管增强。在3D源数据和最大强度投影(MIP)中测量了对比度和噪声比。使用电离室进行剂量测量。结果:时间分辨的体积数据的MIP图像具有诊断质量,清楚地显示了动脉瘤的圆顶和颈部以及脑血管。观察到动态血流信息(对比冲洗/冲洗),包括不透明的混浊以及前后脉管系统和动脉瘤的引流。在患者有效剂量为2.8 mSv且轴向覆盖4 cm的情况下,平均体积的对比度与噪声比被测量为3到4.5,在相应的MIP中为10.5到17。结论:我们已经证明了体外4D体积,静脉CT减影血管造影的可行性,提供了时间分辨的,诊断质量好的3D数据集。我们能够以可接受的X射线剂量通过单次20秒扫描显示时间分辨的血流信息以及高分辨率的局部和全局解剖图。

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