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    • 23. 发明授权
    • Image obtaining unit and image obtaining method
    • 图像获取单元和图像获取方法
    • US09322782B2
    • 2016-04-26
    • US14059791
    • 2013-10-22
    • Sony Corporation
    • Koichiro Kishima
    • G01J1/00G01N21/64
    • G01N21/6428G01N21/6458
    • An image obtaining apparatus and an image obtaining method are provided. The image obtaining apparatus including a light source configured to generate excitation light causing a fluorescent label of a biological sample to emit light; an image sensor; an optical system configured to cause the image sensor to form a fluorescent image of the partial area of the biological sample; a movement control unit; a generation unit configured to continuously expose the image sensor during the movement of the focal position of the optical system, and to generate a long-time exposed image of the partial area; and a calculation unit configured to analyze a frequency of the generated long-time exposed image, and to calculate positional information in the optical axis direction of the fluorescent label by using at least results of the analysis.
    • 提供了图像获取装置和图像获取方法。 所述图像获取装置包括被配置为产生使生物样品的荧光标记物发光的激发光的光源; 图像传感器; 光学系统,被配置为使所述图像传感器形成所述生物样品的部分区域的荧光图像; 运动控制单元; 生成单元,被配置为在所述光学系统的焦点位置移动期间连续地曝光所述图像传感器,并且生成所述部分区域的长时间曝光图像; 以及计算单元,被配置为分析生成的长时间曝光图像的频率,并且通过至少使用分析结果来计算荧光标签的光轴方向上的位置信息。
    • 25. 发明申请
    • SENSOR POWER MANAGEMENT
    • 传感器电源管理
    • US20160047679A1
    • 2016-02-18
    • US14462393
    • 2014-08-18
    • Charles Carter Jernigan
    • Charles Carter Jernigan
    • G01D18/00G01C19/00G01N19/10G01D3/00G01C17/00G01L9/00G01V8/00G01J1/00G01P15/02G01K7/00
    • G01V8/00G01C17/00G01C19/00G01D3/10G01L9/00G01N19/10G01P15/0802
    • Embodiments of the present disclosure provide techniques and configurations for an apparatus to reduce sensor power consumption, in particular, through predictive data measurements by one or more sensors. In one instance, the apparatus may include one or more sensors and a sensor management module coupled with the sensors and configured to cause the sensors to initiate measurements of data indicative of a process in a first data measurement mode, determine a pattern of events comprising the process based on a portion of the measurements collected by the sensors in the first data measurement mode over a time period, and initiate measurements of the data by the one or more sensors in a second data measurement mode. The second data measurement mode may be based on the pattern of events comprising the process. The pattern may indicate a prediction of appearance of events in the process. Other embodiments may be described and/or claimed.
    • 本公开的实施例提供了用于降低传感器功率消耗的装置的技术和配置,特别是通过一个或多个传感器的预测数据测量。 在一种情况下,设备可以包括一个或多个传感器和与传感器耦合的传感器管理模块,并且被配置为使得传感器启动指示第一数据测量模式中的处理的数据的测量,确定包括 基于由传感器在一段时间内以第一数据测量模式收集的测量的一部分的过程,并且在第二数据测量模式中启动由一个或多个传感器测量数据。 第二数据测量模式可以基于包括该过程的事件的模式。 该模式可以指示该过程中事件的出现的预测。 可以描述和/或要求保护其他实施例。
    • 26. 发明授权
    • Apparatus configured to generate terahertz wave and apparatus configured to detect terahertz wave
    • 被配置为产生太赫兹波的装置和被配置为检测太赫兹波的装置
    • US09261401B2
    • 2016-02-16
    • US14300069
    • 2014-06-09
    • CANON KABUSHIKI KAISHA
    • Takeaki Itsuji
    • G01J1/00G01J1/04G01J3/42G01J3/02G01N21/3581G01N21/3586
    • G01J1/0448G01J3/0208G01J3/42G01N21/3581G01N21/3586
    • An apparatus including: an element configured to generate or detect a terahertz wave; a semi-spherical lens configured to guide the terahertz wave outgoing from the element or entering the element; and a holder configured to hold the semi-spherical lens and the element in a state in which a flat surface of the semi-spherical lens and the element are in contact with each other or in a state in which the flat surface of the semi-spherical lens and the element clamp a substance which allows the terahertz wave to pass therethrough and the flat surface of the semi-spherical lens and the element are in contact with the substance, wherein the holder includes: a resiliently deformable portion; and a position adjusting unit configured to adjust a relative position between the semi-spherical lens and the element in a direction parallel to the flat surface of the semi-spherical lens by resiliently deforming the resiliently deformable portion.
    • 一种装置,包括:被配置为产生或检测太赫兹波的元件; 半球形透镜,被配置为引导从元件出射或进入元件的太赫兹波; 以及保持器,其被配置为将所述半球形透镜和所述元件保持在所述半球形透镜和所述元件的平坦表面彼此接触的状态下或者在所述半球形透镜和所述元件的平坦表面的状态下, 球形透镜和元件夹紧允许太赫兹波通过的物质,半球形透镜和元件的平坦表面与物质接触,其中保持器包括:可弹性变形的部分; 以及位置调整单元,其被配置为通过使所述弹性变形部弹性变形来调节所述半球形透镜和所述元件之间的平行于所述半球形透镜的平坦表面的方向上的相对位置。
    • 28. 发明授权
    • Spherical lighting device with backlighting coronal ring
    • 带背光冠状环的球形照明装置
    • US09218667B2
    • 2015-12-22
    • US14088615
    • 2013-11-25
    • International Business Machines Corporation
    • John F. KelleyDouglas E. LhotkaKristin S. MooreTodd P. Seager
    • G06K9/00G06T7/00G01J1/00
    • G06K9/4661G01J1/00G06K9/4604G06K9/4652G06K2009/4666G06T7/11G06T7/13G06T7/90H04N13/20
    • A method for capturing three-dimensional photographic lighting of a spherical lighting device is described. Calculation of boundaries of the spherical lighting device based on lighting properties of at least one light source in a set location of the spherical lighting device is performed. A mapping of multitude points of the spherical lighting device to three-dimensional vectors of at least one camera device using a logical grid is performed. A measurement of brightness of the logical grid of the spherical lighting device is performed. The method further comprises determining brightest grid point of the logical grid of the spherical lighting device, wherein the brightest grid point of the logical grid is measured within a region brightness of the spherical lighting device. The method further comprises calculating the region of brightness of the spherical lighting device based on the determined brightest grid point of the logical grid.
    • 描述了一种用于捕获球形照明装置的三维摄影照明的方法。 执行基于球面照明装置的设定位置中的至少一个光源的照明特性的球面照明装置的边界的计算。 执行球形照明装置的多个点与使用逻辑网格的至少一个相机装置的三维向量的映射。 执行球面照明装置的逻辑网格的亮度的测量。 该方法还包括确定球形照明装置的逻辑网格的最亮格网点,其中在球形照明装置的区域亮度内测量逻辑网格的最亮格网点。 该方法还包括基于确定的逻辑网格的最亮网格点来计算球形照明装置的亮度区域。