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Interactive Virtual Probing of 4D MRI Blood-Flow

机译:交互式虚拟4D MRI血流探测

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Better understanding of hemodynamics conceivably leads to improved diagnosis and prognosis of cardiovascular diseases. Therefore, an elaborate analysis of the blood-flow in heart and thoracic arteries is essential. Contemporary MRI techniques enable acquisition of quantitative time-resolved flow information, resulting in 4D velocity fields that capture the blood-flow behavior. Visual exploration of these fields provides comprehensive insight into the unsteady blood-flow behavior, and precedes a quantitative analysis of additional blood-flow parameters. The complete inspection requires accurate segmentation of anatomical structures, encompassing a time-consuming and hard-to-automate process, especially for malformed morphologies. We present a way to avoid the laborious segmentation process in case of qualitative inspection, by introducing an interactive virtual probe. This probe is positioned semi-automatically within the blood-flow field, and serves as a navigational object for visual exploration. The difficult task of determining position and orientation along the view-direction is automated by a fitting approach, aligning the probe with the orientations of the velocity field. The aligned probe provides an interactive seeding basis for various flow visualization approaches. We demonstrate illustration-inspired particles, integral lines and integral surfaces, conveying distinct characteristics of the unsteady blood-flow. Lastly, we present the results of an evaluation with domain experts, valuing the practical use of our probe and flow visualization techniques.
机译:对血液动力学的更好理解可以想到改善心血管疾病的诊断和预后。因此,对心脏和胸动脉的血流进行详尽的分析至关重要。当代的MRI技术可获取定量的时间分辨的血流信息,从而产生捕获血流行为的4D速度场。这些领域的可视化探索提供了对不稳定血流行为的全面洞察,并在对其他血流参数进行定量分析之前。完整的检查需要对解剖结构进行精确的分割,包括一个耗时且难以自动化的过程,尤其是对于畸形的形态。通过引入交互式虚拟探针,我们提出了一种在进行定性检查时避免费力的分割过程的方法。该探头半自动定位在血流场内,并用作视觉探索的导航对象。通过将探头与速度场的方向对齐的拟合方法,可以自动确定沿视图方向的位置和方向这一艰巨的任务。对齐的探针为各种流可视化方法提供了交互式播种基础。我们展示了灵感来自插图的颗粒,整体线条和整体表面,传达了不稳定血液流动的独特特征。最后,我们介绍了与领域专家进行的评估结果,评估了我们的探针和流量可视化技术的实际使用情况。

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