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A New Imaging Tool for Realtime Measurement of Flow Velocity in Intracranial Aneurysms

机译:实时测量颅内动脉瘤流速的新型成像工具

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摘要

With modern imaging modalities of the brain a significant number of unruptured aneurysms are detected. However, not every aneurysm is prone to rupture. Because treatment morbidity is about 10% it is crucial to identify unstable aneurysms for which treatment should be discussed. Recently, new imaging tools allow analysis of flow dynamics and wall stability have become available. It seems that they might provide additional data for better risk profiling. In this study we present a new imaging tool for analysis of flow dynamics, which calculates fluid velocity in an aneurysm (Phillips Electronics, N.V.). It may identify regions with high flow and calculate flow reduction after stenting of aneurysms. Contrast is injected with a stable injection speed of 2 mL/sec for 3 sec. Two clinical cases are illustrated. Velocity in aneurysms and areas of instability can be identified and calculated during angiography in real-time. After stenting and flow diverter deployment flow reduction in the internal carotid aneurysm was reduced by 60% and there was a reduction of about 65% in the posterior cerebral artery in the second case we are reporting. The dynamic flow software calculates the flow profile in the aneurysm immediately after contrast injection. It is a real-time, patient specific tool taking into account systole, diastole and flexibility of the vasculature. These factors are an improvement as compared to current models of computational flow dynamics. We think it is a highly efficient, user friendly tool. Further clinical studies are on their way.
机译:利用现代的大脑成像技术,可以检测到大量未破裂的动脉瘤。但是,并非每个动脉瘤都容易破裂。由于治疗的发病率约为10%,因此确定不稳定的动脉瘤至关重要,应对此进行讨论。最近,新的成像工具允许对流动动力学和壁稳定性进行分析。看来他们可能会提供其他数据以更好地进行风险分析。在这项研究中,我们提出了一种用于流动动力学分析的新型成像工具,该工具可以计算动脉瘤中的流体速度(Phillips Electronics,N.V.)。它可以识别高流量区域并计算在动脉瘤置入支架后的流量减少。对比剂以2 mL / sec的稳定注入速度注入3秒钟。说明了两个临床病例。可以在血管造影期间实时识别和计算动脉瘤的速度和不稳定区域。在我们报告的第二例病例中,在置入支架和分流器部署后,颈内动脉瘤的血流减少量减少了60%,而大脑后动脉的血流减少量约为65%。造影剂注射后,动态血流软件会立即计算动脉瘤中的血流曲线。它是一种实时的,针对特定患者的工具,同时考虑了收缩,舒张和脉管系统的灵活性。与当前的计算流动动力学模型相比,这些因素是一种改进。我们认为这是一种高效,用户友好的工具。进一步的临床研究正在进行中。

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