Laboratory of Experimental Medecine (ULB 222 Unit), Medicine Faculty, Université Libre de Bruxelles, CHU de Charleroi, 6110, Montigny-le-Tilleul, Belgium.
Medical Imaging Unit, Centre Hospitalier Universitaire de Charleroi, 6042, Charleroi, Belgium.
Sci Rep. 2021 May 3;11(1):9441. doi: 10.1038/s41598-021-88420-3.
Aneurysm wall motion has been reported to be associated with rupture. However, its quantification with medical imaging is challenging and should be based on experimental ground-truth to avoid misinterpretation of results. In this work a time-resolved CT angiography (4D-CTA) acquisition protocol is proposed to detect the pulsation of intracranial aneurysms with a low radiation dose. To acquire ground-truth data, the accuracy of volume pulsation detection and quantification in a silicone phantom was assessed by applying pressure sinusoidal waves of increasing amplitudes. These experiments were carried out using a test bench that could reproduce pulsatile waveforms similar to those inside the internal carotid arteries of human subjects. 4D-CTA acquisition parameters (mAs, kVp) were then selected to achieve reliable pulsation detection and quantification with the lowest radiation dose achievable. The resulting acquisition protocol was then used to image an anterior communicating artery aneurysm in a human subject. Data reveals that in a simplified in vitro setting 4D-CTA allows for an effective and reproducible method to detect and quantify aneurysm volume pulsation with an inferior limit as low as 3 mm and a background noise of 0.5-1 mm. Aneurysm pulsation can be detected in vivo with a radiation dose approximating 1 mSv.
已有研究报道,动脉瘤壁的运动与破裂有关。然而,其在医学影像学中的定量分析具有一定的挑战性,并且应该基于实验性的真实情况,以避免对结果的误解。在这项工作中,提出了一种时间分辨 CT 血管造影(4D-CTA)采集方案,以低辐射剂量检测颅内动脉瘤的搏动。为了获取真实数据,通过施加振幅逐渐增大的正弦波压力来评估在硅树脂模型中检测和量化容积搏动的准确性。这些实验是使用一个测试台进行的,该测试台可以复制类似于人体颈内动脉内的脉动波形。然后选择 4D-CTA 采集参数(mAs,kVp),以实现具有最低辐射剂量的可靠搏动检测和量化。然后使用所得采集方案对人体前交通动脉瘤进行成像。数据表明,在简化的体外设置中,4D-CTA 允许使用一种有效且可重复的方法来检测和量化动脉瘤容积的搏动,其下限低至 3mm,背景噪声为 0.5-1mm。可以用接近 1mSv 的辐射剂量在体内检测到动脉瘤搏动。