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DLP Hyperspectral Imaging for Surgical and Clinical Utility

机译:DLP高光谱成像用于外科和临床效用

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We describe a novel digital light processing, DLP hyperspectral imaging system for visualizing chemical composition of in vivo tissues during surgical procedures non-invasively and at near video rate. The novelty of the DLP hyperspectral imaging system resides in (1) its ability to conform light to rapidly sweep through a series of pre-programmed spectral illuminations as simple as a set of contiguous bandpasses to any number of complex spectra, and (2) processing the reflected spectroscopic image data using unique supervised and unsupervised chemometric methods that color encode molecular content of tissue at each image detector pixel providing an optical biopsy. Spectral illumination of tissue is accomplished utilizing a DLP based spectral illuminator incorporating a series of bandpass spectra and measuring the reflectance image with a CCD array detector. Wavelength dependent images are post processed with a multivariate least squares analysis method using known reference spectra of oxyand eoxyhemoglobin. Alternatively, illuminating with complex reference spectra reduces the number of spectral images required for generating chemically relevant images color encoded for relative percentage of oxyhemoglobin are collected and displayed in real time near-video rate, (3 to 4) frames per second (fps). As a proof of principle application, a kidney of an anesthetized pig was imaged before and after renal vasculature occlusion showing the clamped kidney to be 61% of the unclamped kidney percentage of oxyhemoglobin. Using the "3-Shot" spectral illumination method and gathering data at (3 to 4) fps shows a non-linear exponential de-oxygenation of hemoglobin reaching steady state within 30 seconds post occlusion.
机译:我们描述了一种新型数字光处理,DLP高光谱成像系统,用于在外科手术期间无侵入地和近视频速率可视化体内组织的化学成分。 DLP高光谱成像系统的新颖性驻留在(1)其符合光以快速扫描的能力,以一系列预编程的光谱照明,作为一组连续的带通量到任何数量的复杂光谱,以及(2)处理反射光谱图像数据使用独特的监督和无监督的化学计量方法,其颜色编码在每个图像检测器像素处的组织的分子含量提供光学活组织检查。使用基于DLP的光谱照明器来实现组织的光谱照射,其包含一系列带通光谱并用CCD阵列检测器测量反射图像。用羟基氧杂环蛋白的已知参考光谱,用多变量最小二乘分析方法处理波长依赖性图像。或者,利用复杂的参考光谱照射减少了产生用于在氧气血红蛋白的相对百分比编码的化学相关图像所需的光谱图像的数量,并以实时近的视频速率,(3至4)每秒(FPS)帧。作为原理应用的证据,在肾脉管系统闭塞之前和之后的肾脏血管系统闭塞前和肾小球肾上腺素的未碾压肾百分比的61%,肾脏血管瘤的肾脏成像。使用“3次”光谱照明方法和(3至4)FPS的收集数据显示出在闭塞后30秒内达到稳态的非线性指数去氧化。

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