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    • 51. 发明申请
    • CREATING AND VIEWING THREE DIMENSIONAL VIRTUAL SLIDES
    • 创建和查看三维虚拟幻灯片
    • US20110090223A1
    • 2011-04-21
    • US12979996
    • 2010-12-28
    • Ole EichhornGreg CrandallSteven HashagenDirk SoenksenMark Wrenn
    • Ole EichhornGreg CrandallSteven HashagenDirk SoenksenMark Wrenn
    • G06T15/40
    • G02B27/2278G02B21/367G06K9/00201H04N13/395
    • Systems and methods for creating and viewing three dimensional digital slides are provided. One or more microscope slides are positioned in an image acquisition device that scans the specimens on the slides and makes two dimensional images at a medium or high resolution. These two dimensional digital slide images are provided to an image viewing workstation where they are viewed by an operator who pans and zooms the two dimensional image and selects an area of interest for scanning at multiple depth levels (Z-planes). The image acquisition device receives a set of parameters for the multiple depth level scan, including a location and a depth. The image acquisition device then scans the specimen at the location in a series of Z-plane images, where each Z-plane image corresponds to a depth level portion of the specimen within the depth parameter.
    • 提供了用于创建和查看三维数字幻灯片的系统和方法。 将一个或多个显微镜载片放置在图像采集装置中,扫描载玻片上的标本,并以中等或高分辨率制作二维图像。 这些二维数字幻灯片图像被提供给图像查看工作站,在那里它们被操作者观看,该操作者平移和缩放二维图像,并且选择感兴趣的区域以在多个深度级别(Z平面)进行扫描。 图像采集装置接收包括位置和深度的多个深度级扫描的一组参数。 然后,图像获取装置在一系列Z平面图像中的位置处扫描样本,其中每个Z平面图像对应于深度参数内的样本的深度级部分。
    • 52. 发明授权
    • Creating and viewing three dimensional virtual slides
    • 创建和查看三维虚拟幻灯片
    • US07860292B2
    • 2010-12-28
    • US12731083
    • 2010-03-24
    • Ole EichhornGreg CrandallDirk SoenksenSteven HashagenMark Wrenn
    • Ole EichhornGreg CrandallDirk SoenksenSteven HashagenMark Wrenn
    • G06K9/00
    • G02B27/2278G02B21/367G06K9/00201H04N13/395
    • Systems and methods for creating and viewing three dimensional virtual slides are provided. One or more microscope slides are positioned in an image acquisition device that scans the specimens on the slides and makes two dimensional images at a medium or high resolution. This two dimensional images are provided to an image viewing workstation where they are viewed by an operator who pans and zooms the two dimensional image and selects an area of interest for scanning at multiple depth levels (Z-planes). The image acquisition device receives a set of parameters for the multiple depth level scan, including a location and a depth. The image acquisition device then scans the specimen at the location in a series of Z-plane images, where each Z-plane image corresponds to a depth level portion of the specimen within the depth parameter.
    • 提供了用于创建和查看三维虚拟幻灯片的系统和方法。 将一个或多个显微镜载片放置在图像采集装置中,扫描载玻片上的标本,并以中等或高分辨率制作二维图像。 该二维图像被提供给图像查看工作站,在那里它们被操作者观看,该操作者平移和缩放二维图像并选择感兴趣的区域以在多个深度级别(Z平面)进行扫描。 图像采集装置接收包括位置和深度的多个深度级扫描的一组参数。 然后,图像获取装置在一系列Z平面图像中的位置处扫描样本,其中每个Z平面图像对应于深度参数内的样本的深度级部分。
    • 54. 发明申请
    • Creating and Viewing Three Dimensional Virtual Slides
    • 创建和查看三维虚拟幻灯片
    • US20100177166A1
    • 2010-07-15
    • US12731083
    • 2010-03-24
    • Ole EichhornGreg CrandallSteven HashagenDirk SoenksenMark Wrenn
    • Ole EichhornGreg CrandallSteven HashagenDirk SoenksenMark Wrenn
    • H04N13/02H04N7/18
    • G02B27/2278G02B21/367G06K9/00201H04N13/395
    • Systems and methods for creating and viewing three dimensional virtual slides are provided. One or more microscope slides are positioned in an image acquisition device that scans the specimens on the slides and makes two dimensional images at a medium or high resolution. This two dimensional images are provided to an image viewing workstation where they are viewed by an operator who pans and zooms the two dimensional image and selects an area of interest for scanning at multiple depth levels (Z-planes). The image acquisition device receives a set of parameters for the multiple depth level scan, including a location and a depth. The image acquisition device then scans the specimen at the location in a series of Z-plane images, where each Z-plane image corresponds to a depth level portion of the specimen within the depth parameter.
    • 提供了用于创建和查看三维虚拟幻灯片的系统和方法。 将一个或多个显微镜载片放置在图像采集装置中,扫描载玻片上的标本,并以中等或高分辨率制作二维图像。 该二维图像被提供给图像查看工作站,在那里它们被操作者观看,该操作者平移和缩放二维图像并选择感兴趣的区域以在多个深度级别(Z平面)进行扫描。 图像采集装置接收包括位置和深度的多个深度级扫描的一组参数。 然后,图像获取装置在一系列Z平面图像中的位置处扫描样本,其中每个Z平面图像对应于深度参数内的样本的深度级部分。
    • 55. 发明申请
    • Second Opinion Network
    • 第二意见网
    • US20080292159A1
    • 2008-11-27
    • US12110185
    • 2008-04-25
    • Dirk G. SoenksenKathy Zirker-SmithOle Eichhorn
    • Dirk G. SoenksenKathy Zirker-SmithOle Eichhorn
    • G06K9/00
    • G16H80/00G06F19/00G06F19/321G16H50/50
    • Systems and methods are provided to facilitate consultations between a referral source (e.g., labs, pathologists and patients) and a consultant (e.g., pathologist, radiologist, or other digital image analyst). Links between the various referral sources and consultants are established through a scanning center via a data communication network such as the Internet. The referral source sends a slide to the scanning center where the corresponding digital slide is posted for review and analysis by the consultant. Upon completion of the analysis and report, a digital slide conference is conducted through the scanning center that provides a venue for direct communication regarding the consultation. The scanning center may also facilitate payment from the referral source to the consultant.
    • 提供系统和方法以便于转介来源(例如,实验室,病理学家和患者之间)和顾问(例如病理学家,放射科医师或其他数字图像分析者)之间的协商。 通过扫描中心通过数据通信网络(如互联网)建立各种转介来源和顾问之间的联系。 推荐来源将幻灯片发送到扫描中心,其中相应的数字幻灯片发布供顾问进行审查和分析。 完成分析报告后,通过扫描中心进行数字幻灯片会议,为会议提供直接沟通的场所。 扫描中心也可以方便从推荐来源向顾问付款。
    • 57. 发明授权
    • Systems and methods for image pattern recognition
    • 图像模式识别的系统和方法
    • US07257268B2
    • 2007-08-14
    • US10774971
    • 2004-02-09
    • Ole EichhornDirk G. Soenksen
    • Ole EichhornDirk G. Soenksen
    • G06K9/36
    • G06K9/6218G06K9/00147G06T9/008G06T9/40H04N19/94H04N19/96
    • Systems and methods for image pattern recognition comprise digital image capture and encoding using vector quantization (“VQ”) of the image. A vocabulary of vectors is built by segmenting images into kernels and creating vectors corresponding to each kernel. Images are encoded by creating a vector index file having indices that point to the vectors stored in the vocabulary. The vector index file can be used to reconstruct an image by looking up vectors stored in the vocabulary. Pattern recognition of candidate regions of images can be accomplished by correlating image vectors to a pre-trained vocabulary of vector sets comprising vectors that correlate with particular image characteristics. In virtual microscopy, the systems and methods are suitable for rare-event finding, such as detection of micrometastasis clusters, tissue identification, such as locating regions of analysis for immunohistochemical assays, and rapid screening of tissue samples, such as histology sections arranged as tissue microarrays (TMAs).
    • 用于图像模式识别的系统和方法包括使用图像的矢量量化(“VQ”)的数字图像捕获和编码。 通过将图像分割为内核并创建与每个内核相对应的向量来构建向量的词汇表。 通过创建具有指向存储在词汇表中的向量的索引的向量索引文件对图像进行编码。 向量索引文件可用于通过查找存储在词汇表中的向量来重建图像。 可以通过将图像向量与包括与特定图像特征相关的向量的预先训练的矢量集合的词汇相关联来实现图像候选区域的模式识别。 在虚拟显微镜中,系统和方法适用于罕见事件发现,例如检测微转移簇,组织鉴定,例如免疫组织化学测定的分析区域以及组织样品的快速筛选,例如排列成组织的组织切片 微阵列(TMA)。
    • 58. 发明授权
    • Image processing and analysis framework
    • US07116440B2
    • 2006-10-03
    • US10787330
    • 2004-02-26
    • Ole EichhornAllen Olson
    • Ole EichhornAllen Olson
    • G06F15/00
    • G06K9/46G06T1/00
    • A system and method for processing and analyzing virtual microscopy digital images (“virtual slides”) is provided. The system comprises an algorithm server that maintains or has access to a plurality of image processing and analysis routines. The algorithm server additionally has access to a plurality of virtual slides. The algorithm server executes a selected routine on an identified virtual slide and provides the resulting data. The virtual slide can be accessed locally or remotely across a network. Similarly, the image processing routines can be obtained from local storage or across a network, or both. Advantageously, certain common sub-routines may be stored locally for inclusion in other local or remotely obtained routines. Access to image processing and analysis may be restricted through a monitor process that authenticates requests to process or view virtual slides. Variations in restrictions to images provide a rich diversity in access levels that allow sharing of virtual slides and demonstrations of image processing algorithms.