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    • 4. 发明申请
    • Non-Invasive Colorimetric-Based Infection Detector And Infection Detecting Bandage
    • 非侵入性基于比例的感染检测器和感染检测绷带
    • US20100178203A1
    • 2010-07-15
    • US12354708
    • 2009-01-15
    • James A. KaneMelissa RicciRanganathan Shashidhar
    • James A. KaneMelissa RicciRanganathan Shashidhar
    • G01N21/78
    • G01N33/528A61B5/0059A61B5/1455A61B5/412A61B5/445
    • A non-invasive, calorimetric infection detector is provided, comprised of a substrate, and one or more indicator compositions disposed upon or incorporated therein. These indicator compositions exhibit a persistent change color when exposed to gaseous oxides of nitrogen and acids formed therefrom, providing a means of detecting NO production in a wound, which has been found to occur at a high level at the onset of infection in a wound. In addition, a bandage is provided, comprised of the detector, as well as a porous portion, and preferably a hydrophobic barrier layer to protect the detector from contamination by water and other fluids draining from the wound. The non-invasive, calorimetric infection detector, and bandage containing same, can be utilized to provide a convenient, easily utilized colorimetric means of detecting the onset of wound infection, thereby enabling caregivers to effectively and timely treat infections.
    • 提供了一种非侵入性的量热感染检测器,其由基底和一个或多个指示剂组合物组成,所述指示剂组合物置于或并入其中。 这些指示剂组合物当暴露于由其形成的氮气和酸的气体氧化物时表现出持久的变色,提供检测伤口中的NO产生的方法,其已被发现在伤口发生时感染高水平发生。 此外,提供了由检测器组成的绷带,以及多孔部分,优选地是疏水阻挡层,以保护检测器免受水和从伤口排出的其它流体的污染。 可以使用非侵入性,量热感染检测器和含有其的绷带来提供方便,易于使用的比色手段来检测伤口感染的发作,从而使护理人员有效和及时地治疗感染。
    • 8. 发明授权
    • Methods and systems for detection and identification of concealed materials
    • 隐藏材料的检测和识别方法和系统
    • US09305237B2
    • 2016-04-05
    • US13741752
    • 2013-01-15
    • James A. KaneRanganathan Shashidhar
    • James A. KaneRanganathan Shashidhar
    • G06K9/00G06K9/46G01V8/00
    • G06K9/4661G01V8/005
    • Methods and systems for efficiently and accurately detecting and identifying concealed materials. The system includes an analysis subsystem configured to process a number of pixelated images, the number of pixelated images obtained by repeatedly illuminating regions with a electromagnetic radiation source from a number of electromagnetic radiation sources, each repetition performed with a different wavelength. The number of pixelated images, after processing, constitute a vector of processed data at each pixel from a number of pixels. At each pixel, the vector of processed data is compared to a predetermined vector corresponding to a predetermined material, presence of the predetermined material being determined by the comparison.
    • 有效和准确地检测和识别隐藏材料的方法和系统。 该系统包括分析子系统,被配置为处理多个像素化图像,通过用多个电磁辐射源用电磁辐射源反复照射区域获得的像素化图像的数量,每个重复使用不同的波长进行。 像素化图像的数量在处理之后构成来自多个像素的每个像素处理的数据的向量。 在每个像素处,将处理数据的矢量与对应于预定材料的预定矢量进行比较,通过比较确定预定材料的存在。