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    • 22. 发明申请
    • Fully Automatic Rapid Microscope Slide Scanner
    • 全自动快速显微镜幻灯片
    • US20110037847A1
    • 2011-02-17
    • US12910696
    • 2010-10-22
    • Dirk G. Soenksen
    • Dirk G. Soenksen
    • H04N7/18
    • G02B21/367G02B21/002G02B21/0036G02B21/008G02B21/14G02B21/245G02B21/26G02B21/32G02B21/34G02B21/365G06F19/00H04N1/053H04N1/1903H04N1/193H04N1/19573H04N5/2256H04N5/23206H04N7/18H04N7/183H04N2201/04727H04N2201/04755
    • Apparatus for and method of fully automatic rapid scanning and digitizing of an entire microscope sample, or a substantially large portion of a microscope sample, using a linear array detector synchronized with a positioning stage that is part of a computer controlled microscope slide scanner. The invention provides a method for composing the image strips obtained from successive scans of the sample into a single contiguous digital image. The invention also provides a method for statically displaying sub-regions of this large digital image at different magnifications, together with a reduced magnification macro-image of the entire sample. The invention further provides a method for dynamically displaying, with or without operator interaction, portions of the contiguous digital image. In one preferred embodiment of the invention, all elements of the scanner are part of a single-enclosure that has a primary connection to the Internet or to a local intranet. In this embodiment, the preferred sample type is a microscope slide and the illumination and imaging optics are consistent with transmission mode optics optimized for diffraction-limited digital imaging.
    • 使用与作为计算机控制的显微镜幻灯片扫描器的一部分的定位台同步的线性阵列检测器,全自动快速扫描和数字化整个显微镜样品或显微镜样本的大部分的装置和方法。 本发明提供了一种用于组合从样本的连续扫描获得的图像条带到单个邻接数字图像中的方法。 本发明还提供了一种用于以不同放大率静态显示该大数字图像的子区域的方法,以及整个样本的缩小的放大宏图像。 本发明还提供了一种用于在或不与操作者交互的情况下动态显示邻接数字图像的部分的方法。 在本发明的一个优选实施例中,扫描器的所有元件都是具有到互联网或本地内部网的主要连接的单个外壳的一部分。 在该实施例中,优选的样品类型是显微镜载玻片,并且照明和成像光学元件与针对衍射极限数字成像优化的透射模式光学元件一致。
    • 23. 发明授权
    • Fully automatic rapid microscope slide scanner
    • 全自动快速显微镜幻灯片扫描仪
    • US06917696B2
    • 2005-07-12
    • US10798457
    • 2004-03-11
    • Dirk G. Soenksen
    • Dirk G. Soenksen
    • G01N21/17G02B21/00G02B21/26G02B21/32G02B21/36G06T1/00G21K7/00H04N1/04G06K9/00
    • G02B21/367G02B21/002G02B21/0036G02B21/008G02B21/14G02B21/245G02B21/26G02B21/32G02B21/34G02B21/365G06F19/00H04N1/053H04N1/1903H04N1/193H04N1/19573H04N5/2256H04N5/23206H04N7/18H04N7/183H04N2201/04727H04N2201/04755
    • Apparatus for and method of fully automatic rapid scanning and digitizing of an entire microscope sample, or a substantially large portion of a microscope sample, using a linear array detector synchronized with a positioning stage that is part of a computer controlled microscope slide scanner. The invention provides a method for composing the image strips obtained from successive scans of the sample into a single contiguous digital image. The invention also provides a method for statically displaying sub-regions of this large digital image at different magnifications, together with a reduced magnification macro-image of the entire sample. The invention further provides a method for dynamically displaying, with or without operator interaction, portions of the contiguous digital image. In one preferred embodiment of the invention, all elements of the scanner are part of a single-enclosure that has a primary connection to the Internet or to a local intranet. In this embodiment, the preferred sample type is a microscope slide and the illumination and imaging optics are consistent with transmission mode optics optimized for diffraction-limited digital imaging.
    • 使用与作为计算机控制的显微镜幻灯片扫描器的一部分的定位台同步的线性阵列检测器,全自动快速扫描和数字化整个显微镜样品或显微镜样本的大部分的装置和方法。 本发明提供了一种用于组合从样本的连续扫描获得的图像条带到单个邻接数字图像中的方法。 本发明还提供了一种用于以不同放大率静态显示该大数字图像的子区域的方法,以及整个样本的缩小的放大宏图像。 本发明还提供了一种用于在或不与操作者交互的情况下动态显示邻接数字图像的部分的方法。 在本发明的一个优选实施例中,扫描器的所有元件都是具有到互联网或本地内部网的主要连接的单个外壳的一部分。 在该实施例中,优选的样品类型是显微镜载玻片,并且照明和成像光学元件与针对衍射极限数字成像优化的透射模式光学元件一致。
    • 29. 发明授权
    • System and method for assessing image interpretability in anatomic pathology
    • 用于评估解剖病理学图像解释度的系统和方法
    • US08023714B2
    • 2011-09-20
    • US11772748
    • 2007-07-02
    • Dirk G. Soenksen
    • Dirk G. Soenksen
    • G06K9/00
    • G06T7/0012G06F19/00G06F19/321G06K9/00127G06K9/036
    • A portion of imagery data is obtained from a digital slide and a protocol of image analysis/diagnostic tasks is performed on the portion of imagery data by a pathologist or an image analysis module. The result of each task (e.g., success or no success) is recorded and a score is determined for the portion of the imagery data. Multiple portions of imagery data from the digital slide are analyzed and scored and the various scores from the multiple portions of imagery data are calculated to determine an overall score for the digital slide. Regions of the digital slide can be scored separately. Multiple rounds of scoring (by different pathologists and/or different image analysis algorithms) may be employed to increase the accuracy of the score for a digital slide or region thereof.
    • 从数字幻灯片获得一部分图像数据,并且通过病理学家或图像分析模块对图像数据的一部分执行图像分析/诊断任务的协议。 记录每个任务的结果(例如成功或不成功),并且确定图像数据的一部分的得分。 对来自数字幻灯片的图像数据的多个部分进行分析和评分,并计算来自图像数据的多个部分的各种分数,以确定数字幻灯片的总分。 数字幻灯片的区域可以分开划分。 可以采用多轮评分(由不同的病理学家和/或不同的图像分析算法)来增加数字幻灯片或其区域的分数的准确性。