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Hyperspectral Imaging Utilizing LCTF and DLP Technology for Surgical and Clinical Applications

机译:利用LCTF和DLP技术在外科和临床应用中进行高光谱成像

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Two different, already characterized, hyperspectral imaging systems created for visualizing the spatial distribution of tissue oxygenation non-invasively for in vivo clinical use are described. Individual components of both liquid crystal tunable filter (LCTF) and digital light processing (DLP) systems were characterized, calibrated, and found to be well within manufacturer specifications. Coupling LCTF with charge coupled device (CCD) technology and acquiring images at multiple, contiguous wavelengths and at narrow bandwidths are formatted into a hyperspectral data cube consisting of one spectral and two spatial dimensions. DLP® technology has the novel ability to conform light to any desired spectral illumination scheme. Subsequently the collected multispectral data are processed into chemically relevant images that are color encoded at each pixel detector for the relative percentage of oxyhemoglobin. Using spectral illumination methods unique to the DLP hyperspectral imager results in producing chemically relevant images at near video rate; 4 frames per second. As an example, both systems are used to collect spectral data from a 27.22 kg porcine kidney whose renal artery has been occluded for 60 minutes. Both systems return nearly identical spectra collected from the surface of the kidney, with a root mean square deviation between the two spectra of 0.02.
机译:描述了两个不同的,已经表征的,高光谱成像系统,其创建用于无创地可视化体内供临床使用的组织氧合的空间分布。对液晶可调滤光片(LCTF)和数字光处理(DLP)系统的各个组件进行了表征,校准并发现它们完全符合制造商的规格。将LCTF与电荷耦合器件(CCD)技术耦合,并在多个连续波长和窄带宽处获取图像,将其格式化为由一个光谱和两个空间维度组成的高光谱数据立方体。 DLP®技术具有使光符合任何所需光谱照明方案的新颖能力。随后,将收集的多光谱数据处理成化学相关的图像,在每个像素检测器上对氧合血红蛋白的相对百分比进行颜色编码。使用DLP高光谱成像仪独有的光谱照明方法可产生接近视频速率的化学相关图像。每秒4帧。例如,两个系统都用于从27.22 kg的猪肾收集光谱数据,该猪的肾动脉已被阻塞60分钟。这两个系统返回从肾脏表面收集的几乎相同的光谱,两个光谱之间的均方根偏差为0.02。

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