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Real-time blood flow visualization using the graphics processing unit

机译:使用图形处理单元实时显示血流

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摘要

Laser speckle imaging (LSI) is a technique in which coherent light incident on a surface produces a reflected speckle pattern that is related to the underlying movement of optical scatterers, such as red blood cells, indicating blood flow. Image-processing algorithms can be applied to produce speckle flow index (SFI) maps of relative blood flow. We present a novel algorithm that employs the NVIDIA Compute Unified Device Architecture (CUDA) platform to perform laser speckle image processing on the graphics processing unit. Software written in C was integrated with CUDA and integrated into a LabVIEW Virtual Instrument (VI) that is interfaced with a monochrome CCD camera able to acquire high-resolution raw speckle images at nearly 10 fps. With the CUDA code integrated into the LabVIEW VI, the processing and display of SFI images were performed also at ∼10 fps. We present three video examples depicting real-time flow imaging during a reactive hyperemia maneuver, with fluid flow through an in vitro phantom, and a demonstration of real-time LSI during laser surgery of a port wine stain birthmark.
机译:激光散斑成像(LSI)是一种技术,其中入射在表面上的相干光会产生反射的散斑图案,该散斑图案与光学散射体(例如红血球)的基本运动有关,指示血液流动。图像处理算法可用于生成相对血流的散斑血流指数(SFI)图。我们提出了一种采用NVIDIA Compute Unified设备架构(CUDA)平台在图形处理单元上执行激光散斑图像处理的新颖算法。用C语言编写的软件已与CUDA集成在一起,并已集成到LabVIEW虚拟仪器(VI)中,该虚拟仪器与单色CCD相机接口,能够以近10 fps的速度获取高分辨率的原始斑点图像。通过将CUDA代码集成到LabVIEW VI中,SFI图像的处理和显示也以约10 fps的速度执行。我们提供了三个视频示例,这些示例描绘了反应性充血操作期间的实时流量成像,流体流过体外体模,并演示了对葡萄酒色斑胎记进行激光手术期间的实时LSI。

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