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Hyper-spectral imaging system for imaging O_2Hb and HHb concentration changes in tissue for various clinical applications

机译:用于组织中O_2Hb和HHb浓度变化成像的高光谱成像系统

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To observe local variations in temperature, oxygenation and blood perfusion over time, four imaging systems were developed and compared: Two systems consisting of white broadband light source and a CCD camera in combination with a Liquid Crystal Tunable Filter, one in the visual domain, 420-730 nm, and one in the infrared domain, 650-1100 nm. Thirdly, a CCD camera in combination with a software controlled hyper-spectral light source consisting of a panel with 600 LEDs divided in 17 spectral groups in the range from 370 to 880 nm so that specific spectral distributions can be generated at high repetition rate (>1000 Hz) and, fourthly a standard IR thermal camera for comparison. From the acquired images at the selected wavelengths chromophores concentration images of oxy and deoxy hemoglobin can be calculated applying different algorithms.rnThese imaging techniques were applied and compared for various clinical applications: Tumor demarcation, early inflammation, effectiveness of peripheral nerve block anesthesia, and localization of epileptic seizure. The relative changes in oxygenation and temperature could be clearly observed in good correlation with the physiological condition. The algorithms and data collection/processing can be optimized to enable a real-time diagnostic technique.
机译:为了观察一段时间内温度,氧合和血液灌注的局部变化,开发并比较了四个成像系统:两个系统由白宽带光源和CCD摄像头与液晶可调滤镜组合组成,其中一个在视觉范围内,420 -730 nm,其中一个在红外域,650-1100 nm。第三,CCD相机与软件控制的高光谱光源相结合,该光源由一个面板组成,该面板具有600个LED,分为370至880 nm范围内的17个光谱组,从而可以高重复率生成特定的光谱分布(> 1000 Hz),第四是用于比较的标准红外热像仪。从选定的波长处获得的图像中,可以使用不同的算法来计算氧和脱氧血红蛋白的生色团浓度图像。这些成像技术已被应用并进行了各种临床应用的比较:肿瘤标定,早期炎症,周围神经阻滞麻醉的有效性和定位癫痫发作。可以清楚地观察到氧合作用和温度的相对变化,并且与生理状况良好相关。可以优化算法和数据收集/处理,以启用实时诊断技术。

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