首页> 外文会议>Conference on biomedical applications in molecular, structural, and functional imaging >Non-invasive pulmonary blood flow analysis and blood pressure mapping derived from 4D flow MRI
【24h】

Non-invasive pulmonary blood flow analysis and blood pressure mapping derived from 4D flow MRI

机译:源自4D流量MRI的无创肺血流分析和血压映射

获取原文

摘要

In diagnostics and therapy control of cardiovascular diseases, detailed knowledge about the patient-specific behavior of blood flow and pressure can be essential. The only method capable of measuring complete time-resolved three-dimensional vector fields of the blood flow velocities is velocity-encoded magnetic resonance imaging (MRI), often denoted as 4D flow MRI. Furthermore, relative pressure maps can be computed from this data source, as presented by different groups in recent years. Hence, analysis of blood flow and pressure using 4D flow MRI can be a valuable technique in management of cardiovascular diseases. In order to perform these tasks, all necessary steps in the corresponding process chain can be carried out in our in-house developed software framework MEDIFRAME. In this article, we apply MEDIFRAME for a study of hemodynamics in the pulmonary arteries of five healthy volunteers. The study included measuring vector fields of blood flow velocities by phase-contrast MRI and subsequently computing relative blood pressure maps. We visualized blood flow by streamline depictions and computed characteristic values for the left and the right pulmonary artery (LPA and RPA). In all volunteers, we observed a lower amount of blood flow in the LPA compared to the RPA. Furthermore, we visualized blood pressure maps using volume rendering and generated graphs of pressure differences between the LPA, the RPA and the main pulmonary artery, hi most volunteers, blood pressure was increased near to the bifurcation and in the proximal LPA, leading to higher average pressure values in the LPA compared to the RPA.
机译:在心血管疾病的诊断和治疗控制中,有关患者特定的血流和血压行为的详细知识可能至关重要。能够测量血流速度的完整的时间分辨三维矢量场的唯一方法是速度编码磁共振成像(MRI),通常称为4D流动MRI。此外,可以根据该数据源来计算相对压力图,如近年来不同小组所介绍的那样。因此,使用4D流量MRI对血流和压力进行分析可能是心血管疾病管理中的一种有价值的技术。为了执行这些任务,可以在我们内部开发的软件框架MEDIFRAME中执行相应流程链中的所有必要步骤。在本文中,我们将MEDIFRAME应用于五名健康志愿者的肺动脉血流动力学研究。该研究包括通过相差MRI测量血流速度的矢量场并随后计算相对血压图。我们通过流线形描绘可视化了血流,并计算了左右肺动脉(LPA和RPA)的特征值。在所有志愿者中,与RPA相比,我们观察到LPA中的血流量较低。此外,我们使用体积渲染法可视化了血压图,并生成了LPA,RPA和主要肺动脉之间的压力差图。在大多数志愿者中,分叉附近和LPA近端的血压升高,导致平均水平升高与RPA相比,LPA中的压力值。

著录项

相似文献

  • 外文文献
  • 中文文献
  • 专利
获取原文

客服邮箱:kefu@zhangqiaokeyan.com

京公网安备:11010802029741号 ICP备案号:京ICP备15016152号-6 六维联合信息科技 (北京) 有限公司©版权所有
  • 客服微信

  • 服务号