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Applications of Doppler Optical Coherence Tomography based on zero-crossing detection to flow monitoring inside a stenosis phantom

机译:基于零交叉检测的多普勒光学相干断层扫描在狭窄体模内血流监测中的应用

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Most of the time, arterial stenoses caused by atherosclerosis, hardening of the artery walls, or buildup of fatty deposits prevent the blood from flowing normally. Blood flow characteristics in the vicinity of a stenosis are therefore very important since the restriction may accelerate fatty deposits and thus quickly clog the artery. Doppler Optical Coherence Tomography (DOCT) is a biomedical technique that allows simultaneous structural imaging and flow monitoring inside biological tissues and materials with spatial resolution at least one order of magnitude better than ultrasound This study deals with the application of a Near Infrared DOCT system for imaging and monitoring of liquid flow inside a stenosis phantom inserted in a glass tube. For the measurement of the Doppler frequency, we use a numerical method based on the detection of the zero-crossing points of the OCT signal.
机译:大多数时候,动脉粥样硬化引起的动脉狭窄,动脉壁的硬化,或脂肪沉积物的堆积,防止血液正常流动。因此,狭窄附近的血流特性非常重要,因为限制可以加速脂肪沉积物,从而迅速堵塞动脉。多普勒光学相干断层扫描(Doct)是一种生物医学技术,其允许同时结构成像和流动监测生物组织和流量监测,所述生物组织和物料与空间分辨率至少比超声波的数量级,本研究涉及近红外医生系统进行成像的应用并监测插入玻璃管中的狭窄幻影内的液体流动。为了测量多普勒频率,我们使用基于OCT信号的过零点的检测的数值方法。

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