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Portable laser speckle perfusion imaging system based on digital signal processor

机译:基于数字信号处理器的便携式激光散斑灌注成像系统

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The ability to monitor blood flow in vivo is of major importance in clinical diagnosis and in basic researches of life science. As a noninvasive full-field technique without the need of scanning, laser speckle contrast imaging (LSCI) is widely used to study blood flow with high spatial and temporal resolution. Current LSCI systems are based on personal computers for image processing with large size, which potentially limit the widespread clinical utility. The need for portable laser speckle contrast imaging system that does not compromise processing efficiency is crucial in clinical diagnosis. However, the processing of laser speckle contrast images is time-consuming due to the heavy calculation for enormous high-resolution image data. To address this problem, a portable laser speckle perfusion imaging system based on digital signal processor (DSP) and the algorithm which is suitable for DSP is described. With highly integrated DSP and the algorithm, we have markedly reduced the size and weight of the system as well as its energy consumption while preserving the high processing speed. In vivo experiments demonstrate that our portable laser speckle perfusion imaging system can obtain blood flow images at 25 frames per second with the resolution of 640 × 480 pixels. The portable and lightweight features make it capable of being adapted to a wide variety of application areas such as research laboratory, operating room, ambulance, and even disaster site. © 2010 American Institute of Physics Article Outline INTRODUCTION INSTRUMENT DESIGN Hardware of image processing module Software design SYSTEM PERFORMANCE EVALUATION IN VIVO CEREBRAL BLOOD FLOW MEASUREMENT CONCLUSIONS
机译:体内监测血流的能力在临床诊断和生命科学的基础研究中至关重要。作为不需要扫描的无创全场技术,激光散斑对比度成像(LSCI)被广泛用于以高时空分辨率研究血流。当前的LSCI系统基于用于大尺寸图像处理的个人计算机,这潜在地限制了广泛的临床实用性。在临床诊断中,对不影响处理效率的便携式激光散斑对比成像系统的需求至关重要。但是,由于对巨大的高分辨率图像数据进行了大量的计算,因此激光散斑对比图像的处理非常耗时。为了解决这个问题,描述了一种基于数字信号处理器(DSP)的便携式激光散斑灌注成像系统和一种适用于DSP的算法。通过高度集成的DSP和算法,我们在保持较高处理速度的同时,显着减少了系统的尺寸和重量以及能耗。体内实验表明,我们的便携式激光散斑灌注成像系统可以每秒25帧的速度获取血流图像,分辨率为640×480像素。轻巧的便携式功能使其能够适应广泛的应用领域,例如研究实验室,手术室,救护车,甚至是灾难现场。 ©2010美国物理研究所文章大纲简介仪器设计图像处理模块的硬件软件设计体内脑血流测量的系统性能评估结论

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