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Simultaneous imaging of wall motion and flow velocity in the hearts and vessels of mice in vivo: A feasibility study

机译:体内小鼠心脏和血管中壁运动和流速同时成像:可行性研究

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The objective of this paper is to determine the feasibility of simultaneous imaging of cardiovascular wall motion and blood flow in mice in vivo. Ultrasound radio frequency (RF) of normal (n=6) and infarcted (n=5) murine left ventricles, normal (n=5) and aneurysmal (n=4) murine abdominal aortas were acquired at a high frame of 8 kHz. Both axial wall motion and blood flow velocity were simultaneously estimated using a RF-based speckle tracking method. Wall velocity and flow velocity in the normal heart were found synchronized in diastole, whereas the wall velocity occurs earlier than the flow velocity in the infarcted heart. Wall motion and flow velocity were also more synchronized in the normal than in the aneurysmal aorta. Simultaneous imaging of wall motion and flow velocity may thus provide additional important information for the diagnosis of cardiovascular disease as well as essential parameters for biomechanical modeling.
机译:本文的目的是确定体内小鼠心血管壁运动和血流量同时成像的可行性。 在高框架为8kHz的高框架中获取正常(n = 6)和梗死(n = 5)鼠梗塞(n = 5)鼠左心室的超声射频(n = 5)鼠左心室(n = 5)和动脉瘤腹主动脉瘤。 使用基于RF的散斑跟踪方法同时估计轴向壁运动和血流速度。 在DiaStole中发现正常心脏中的壁速度和流速,而壁速度比梗塞心脏的流速更早发生。 壁运动和流速在正常比在动脉瘤主动脉中也更加同步。 因此,壁运动和流速的同时成像可以为诊断心血管疾病以及生物力学建模的基本参数提供额外的重要信息。

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