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Application of ultrasonic particle imaging velocimetry to flows of rat arteries atherosclerosis model

机译:超声颗粒成像速度在大鼠动脉粥样硬化模型中的应用

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Purpose: Hemodynamic changes in vascular stenosis could affect blood flow component of flow distribution which changed the nature of vascular smooth muscle cells. Observation and analysis of blood flow in the heart disease have important clinical significance of treatments of arterial stenosis. Method: The ultrasonic particle image velocimetry (Echo PIV) technique is appropriate for measuring blood flows by taking advantage of PIV and B-mode ultrasound contrast imaging. This study established animal models. 60 healthy male SD rats were selected and divided into 6 groups. On the 21st day of establishment of vascular stenosis model and drug treatment, the left common carotid artery of rats in groups was observed with ultrasound biomicroscopy. Morphological and hemodynamic changes in the normal blood vessels and the stenosis of the lumen were observed with application of Echo PIV. The reliability of Echo PIV was verified by comparing with ultrasonic Doppler velocimetry methods. Conclusion: Animal studies concerning arterial flows of rats show that the Echo PIV-measured peak and average velocities within several cardiac cycles are about 5–10% and 2–8% below the values measured by the ultrasonic spectral Doppler, respectively. Echo PIV method could directly assess whole field hemodynamic changes of normal blood vessels and vascular stenosis with non-invasion and real-time monitoring of restenosis therapy. It further to explore the prevention and treatment of restenosis and vascular plaque rupture mechanism.
机译:目的:在血管狭窄血流动力学变化可能影响从而改变血管平滑肌细胞的性质的流动分布的血液流动分量。观察与在心脏疾病血流分析有动脉狭窄的治疗具有重要的临床意义。方法:超声波粒子图像测速(回声PIV)技术是适合于测量血液通过取PIV和B模式超声造影成像的优点流动。本研究建立动物模型。选择并分成6组60只健康的雄性SD大鼠。在建立血管狭窄模型和药物治疗的第21天,用超声生物显微镜观察老鼠成群左颈总动脉。与回声PIV的应用未观察到正常血管形态学和血流动力学变化和内腔的狭窄。回声PIV的可靠性由超声波多普勒测速方法比较,验证。结论:动物研究大鼠的关于动脉流动表明几个心动周期内的回波PIV-测量的峰值和平均速度是约5-10%和下面分别由超声频谱多普勒测量值2-8%。回波PIV方法可以直接评估正常血管和非入侵和实时监控治疗再狭窄的血管狭窄的整个领域的血流动力学变化。它进一步探索再狭窄和血管斑块破裂机构的预防和治疗。

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