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In-vivo flow cytometry for blood cell analysis using differential epi-detection of forward scattered light

机译:使用差分EPI检测前散射光的血细胞分析的体内流式细胞仪

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The present standard of blood cell analysis is an invasive procedure requiring the extraction of patient's blood, followed by ex-vivo analysis using a flow cytometer or a hemocytometer. We are developing a noninvasive optical technique that alleviates the need for blood extraction. For in-vivo blood analysis we need a high speed, high resolution and high contrast label-free imaging technique. In this proceeding report, we reported a label-free method based on differential epi-detection of forward scattered light, a method inspired by Jerome Mertz's oblique back-illumination microscopy (OBM) (Ford et al, Nat. Meth. 9(12) 2012). The differential epi-detection of forward light gives phase contrast image at diffraction-limited resolution. Unlike reflection confocal microscopy (RCM), which detects only sharp refractive index variation and suffers from speckle noise, this technique is suitable for detection of subtle variation of refractive index in biological tissue and it provides the shape and the size of cells. A custom built high speed electronic detection circuit board produces a real-time differential signal which yields image contrast based on phase gradient in the sample. We recorded blood flow in-vivo at 17.2k lines per second in line scan mode, or 30 frames per second (full frame), or 120 frame per second (quarter frame) in frame scan mode. The image contrast and speed of line scan data recording show the potential of the system for noninvasive blood cell analysis.
机译:目前的血细胞分析标准是需要提取患者血液的侵入性手术,然后使用流式细胞仪或血细胞计计进行前体内分析。我们正在开发一种非侵入性的光学技术,可减轻血液提取的需要。对于体内血液分析,我们需要高速,高分辨率和高对比度的无标签成像技术。在本次程序报告中,我们报告了一种基于正向散射光的差异ePI检测的可标记方法,该方法由杰罗姆·默兹斜反光照相显微镜(OBM)启发的方法(Ford等,NAT。9(12) 2012)。正向光的差分ePI检测在衍射限制分辨率下给出相位对比图像。与反射共聚焦显微镜(RCM)不同,其仅检测尖锐的折射率变化并遭受散斑噪声,该技术适用于检测生物组织中折射率的微妙变化,它提供细胞的形状和尺寸。定制内置的高速电子检测电路板产生实时差分信号,其基于样本中的相位梯度产生图像对比度。在帧扫描模式下,我们在线扫描模式下每秒17.2k的线/秒钟的血液流量为每秒17.2k,或每秒30帧(全帧)或120帧(四分之一帧)。线扫描数据记录的图像对比度和速度显示了非侵入性血细胞分析系统的潜力。

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