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    • 1. 发明申请
    • MOBILE MICROSCOPY DEVICE AND METHOD THEREFOR
    • 移动显微镜装置及其方法
    • US20140267670A1
    • 2014-09-18
    • US13844634
    • 2013-03-15
    • Pooncharas TipgunlakantLester F. Ludwig
    • Pooncharas TipgunlakantLester F. Ludwig
    • G02B21/36H04N5/225
    • G02B21/361G02B21/0008G02B21/082G02B21/16G02B21/24H04N5/2256
    • A mobile microscopy apparatus usable in connection with a mobile computing device comprising a memory unit and camera, the mobile microscopy apparatus comprising: an illumination module for illuminating a removable media with an illuminating light, an image acquisition optics for creating an image of the sample for acquisition by the camera of the mobile computing device, and a mounting frame assembly for detachably mounting the illumination module and the image acquisition optics to the mobile computing device and for holding the removable media in a predetermined position. In various implementations, the illumination module may provide either backside or frontside illumination of the removable media using the light generated by a light source of the mobile computing device. The mobile microscopy apparatus may operate in the microscope configuration, visible colormatic microarray configuration, and/or fluorescent microarray configuration.
    • 一种移动显微镜装置,其可与包括存储器单元和照相机的移动计算设备相关联地使用,所述移动显微镜装置包括:用照明光照射可移除介质的照明模块,用于创建所述样本的图像的图像采集光学器件, 通过移动计算设备的相机的采集,以及用于将照明模块和图像采集光学器件可拆卸地安装到移动计算设备并用于将可移动介质保持在预定位置的安装框架组件。 在各种实现中,照明模块可以使用由移动计算设备的光源产生的光来提供可移动介质的背面照射或前侧照明。 移动显微镜装置可以在显微镜配置,可见的微阵列配置和/或荧光微阵列配置中操作。
    • 4. 发明申请
    • MICROPROCESSOR-CONTROLLED MICROFLUIDIC PLATFORM FOR PATHOGEN, TOXIN, BIOMARKER, AND CHEMICAL DETECTION WITH REMOVABLE UPDATABLE SENSOR ARRAY FOR FOOD AND WATER SAFETY, MEDICAL, AND LABORATORY APPLICATIONS
    • 微生物控制微生物平台,用于病毒,毒素,生物标记和化学检测,具有可移除的可更新的传感器阵列,用于食品和水的安全,医学和实验室应用
    • US20130217598A1
    • 2013-08-22
    • US13761142
    • 2013-02-06
    • Lester F. LudwigPooncharas Tipgunlakant
    • Lester F. LudwigPooncharas Tipgunlakant
    • G01N33/543
    • G01N33/54373
    • The invention provides a platform technology with rich ability to flexibly perform, create, deploy, maintain, and update a wide range of panels, assay, array, and/or sequence of tests for a wide range of substances and pathogens. The invention provides a unifying framework for widely-ranging miniature sensor implementation, fluidic/gas interfacing, electrical interfaces and optical interfaces, and further by collocating, allowing the integration a large number highly-selective sensors and chemical sensors—together as needed with appropriately selected supplemental sensors (for example temperature, pH, selective ions, etc.), into a common readily-manufacturable framework. The diverse sensor arrays give rise to statistical enhancing through novel statistical processing approaches. The invention is deployable and useable in a wide range of situations previously unavailable, and addresses many otherwise problematic aspects of field testing for food safety, water safety, epidemic outbreaks, routine diagnosis, and disease monitoring.
    • 本发明提供了一种平台技术,其能够灵活地执行,创建,部署,维护和更新各种各样的物质和病原体的各种面板,测定,阵列和/或测序序列。 本发明为广泛范围的微型传感器实施,流体/气体接口,电接口和光学接口提供了统一的框架,并且进一步通过并置,允许将大量高度选择性的传感器和化学传感器集成在一起,并根据需要进行适当选择 补充传感器(例如温度,pH,选择性离子等)成为一个易于制造的共同框架。 各种传感器阵列通过新的统计处理方法产生统计增强。 本发明可以在以前不可用的广泛情况下部署和使用,并解决了食品安全,水安全,疫情爆发,常规诊断和疾病监测的现场测试的许多其他问题。
    • 9. 发明授权
    • Optical tomography for microscopy, cell cytometry, microplate array instrumentation, crystallography, and other applications
    • 光学断层扫描显微镜,细胞计数仪,微孔板阵列仪,晶体学等应用
    • US09594239B1
    • 2017-03-14
    • US13963917
    • 2013-08-09
    • Lester F. Ludwig
    • Lester F. LudwigKaren HaoFrank HuAlice HuangPooncharas Tipgunlakant
    • H04N7/18G02B21/06
    • G01N21/05G01N15/1475G01N2021/058G02B21/06G02B21/367
    • An electronic imaging flow-microscope for remote environmental sensing, bioreactor process monitoring, and optical microscopic tomography applications is described. A fluid conduit has a port on each end of a thin flat transparent fluid transport region. A planar illumination surface contacts one flat side of the transparent fluid transport region and a planar image sensing surface contacts the other flat side. Light from the illumination surface travels through the transparent fluid transport region to the planar image sensing surface, producing a light field affected by the fluid and objects present. The planar image sensing surface creates electrical image signals responsive to the light field. The planar illumination surface can be light emitting elements such as LEDs, OLEDs, or OLET. whose illumination can be sequenced in an image formation process. The flow microscope can further comprise flow-restricting valves, pumps, energy harvesting arrangements, and power management.
    • 描述了用于远程环境感测,生物反应器过程监测和光学显微镜层析成像应用的电子成像流动显微镜。 流体导管在薄平坦的透明流体输送区域的每一端具有一个端口。 平面照明面接触透明流体输送区域的一个平坦侧面,平面摄像面与另一平坦面接触。 来自照明表面的光穿过透明流体输送区域到达平面图像感测表面,产生受流体和存在的物体影响的光场。 平面图像感测表面产生响应于光场的电图像信号。 平面照明表面可以是诸如LED,OLED或OLET的发光元件。 其照明可以在图像形成过程中被排序。 流动显微镜还可以包括流量限制阀,泵,能量收集装置和电力管理。