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Image processing and machine learning for diagnostic analysis of microcirculation

机译:用于微循环诊断分析的图像处理和机器学习

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This study focuses on detection of capillaries and small blood vessels in the videos recorded from the lingual surface using Microscan SDF system. The purpose of this study is to quantitatively monitor and assess the changes that occur in microcirculation during resuscitation period. The results assist physicians in making diagnostically and therapeutically important decisions such as determination of the effectiveness of the resuscitation process. The proposed algorithm applies advanced digital image processing methods to provide quantitative assessment of video signals for detection and characterization of capillaries. The objective of the algorithm is to segment capillaries, estimate the presence and velocity of Red Blood Cells (RBCs), and identify the distribution of blood flow in capillaries for a variety of normal and abnormal cases. The algorithm first, stabilizes each frame to follow the variations in the consecutive frames. Then, time-averaging techniques are applied to the frames to reduce the motion artifact. Histogram equalization, wavelet transform, and median filtering are the subsequent steps applied to accurately detect the blood vessels in each frame. In order to estimate the velocity of RBCs, space time diagrams are obtained through cross-correlation calculations. This study aims to reduce the human interaction as well as the computation time.
机译:这项研究的重点是使用Microscan SDF系统检测从舌面录制的视频中的毛细血管和小血管。这项研究的目的是定量监测和评估复苏期间微循环中发生的变化。结果有助于医师做出诊断和治疗上重要的决定,例如确定复苏过程的有效性。所提出的算法应用先进的数字图像处理方法来提供视频信号的定量评估,以检测和表征毛细管。该算法的目的是对各种正常和异常情况下的毛细管进行细分,估计红细胞(RBC)的存在和速度,并确定毛细管中的血流分布。该算法首先稳定每个帧以跟随连续帧中的变化。然后,将时间平均技术应用于帧以减少运动伪像。直方图均衡化,小波变换和中值滤波是随后的步骤,可用于精确检测每个帧中的血管。为了估计RBC的速度,通过互相关计算获得了时空图。这项研究旨在减少人与人之间的互动以及计算时间。

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