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    • 114. 发明授权
    • Electronic apparatus and method of controlling electronic apparatus
    • 电子设备及其控制方法
    • US08907800B2
    • 2014-12-09
    • US13008548
    • 2011-01-18
    • Kimiyasu NamekawaHiroyuki Kobayashi
    • Kimiyasu NamekawaHiroyuki Kobayashi
    • G08B17/00G01K7/42G06F1/20
    • G06F1/206G01K7/42G01K7/425G01K2207/00H04N5/2253H04N5/23241Y02D10/16
    • An electronic apparatus includes: a temperature measurement section that measures a temperature of a heat generation source generating heat by consuming power or a temperature of an inner position of a casing of which the temperature changes due to the heat generation of the heat generation source; and an environmental temperature calculation section that calculates a temperature which is calculated using a predetermined relational equation that is different in accordance with a model from a difference between a first temperature measured by the temperature measurement section at a point in time when the heat generation source starts consuming a predetermined amount of power and a second temperature measured by the temperature measurement section at a point in time after the passage of a predetermined period from the start of consumption of a predetermined amount of power by the heat generation source as an environmental temperature in an environment where the casing is placed.
    • 电子设备包括:温度测量部,其通过消耗功率或由于发热源的发热引起的温度变化的壳体的内部位置的温度来测量产生热量的发热源的温度; 以及环境温度计算部,其计算使用与根据模型不同的预定关系式,根据由所述发热源开始的时刻由所述温度测量部测量的第一温度之间的差计算出的温度 消耗由所述温度测量部测量的预定量的功率和第二温度,所述预定量的功率和所述第二温度是在由所述发热源从预定量的功率开始消耗的预定时间段之后的时间点作为环境温度 放置外壳的环境
    • 116. 发明授权
    • Transmission electron microscope, and method of observing specimen
    • 透射电子显微镜,观察样品的方法
    • US08785883B2
    • 2014-07-22
    • US12918619
    • 2009-04-27
    • Eiko NakazawaHiroyuki KobayashiSusumu Kuwabata
    • Eiko NakazawaHiroyuki KobayashiSusumu Kuwabata
    • G01N23/00G21K5/08H01J37/26H01J37/30
    • H01J37/20G01N1/2813G01N23/04G01N23/2251G01N2001/4027H01J37/26H01J37/261H01J37/3007H01J2237/2002H01J2237/20214H01J2237/204H01J2237/206
    • Provided is means which enables observation of the shape of a specimen as it is without deforming the specimen. Observation is made by allowing a specimen-holding member having an opening (for example, microgrid and mesh) to hold an ionic liquid and charging a specimen thereto, to allow the specimen to suspend in the ionic liquid. Furthermore, in the proximity of the specimen-holding member, a mechanism of injecting an ionic liquid (ionic liquid introduction mechanism) and/or an electrode are provided. When a voltage is applied to the electrode, the specimen moves or deforms in the ionic liquid. How the specimen moves or deforms can be observed. Furthermore, in the proximity of specimen-holding member, an evaporation apparatus is provided to enable charge of the specimen into the ionic liquid while evaporating. Furthermore, in the proximity of the specimen-holding member, a microcapillary is provided to charge a liquid-state specimen into the ionic liquid. Note that the specimen-holding member is designed to be rotatable.
    • 提供能够在不使样本变形的情况下观察样本的形状的装置。 通过允许具有开口的样本保持构件(例如,微网和网格)来保持离子液体并向其中充入试样以允许样品悬浮在离子液体中进行观察。 此外,在试样保持构件附近设置有注入离子液体(离子液体导入机构)和/或电极的机构。 当电极施加电压时,样品在离子液体中移动或变形。 可以观察样品移动或变形。 此外,在试样保持构件附近,设置蒸发装置,以使得能够在蒸发时将试样充入离子液体中。 此外,在样本保持构件附近,提供微毛细管以将液态样本充入离子液体中。 注意,试样保持构件被设计成可旋转。
    • 118. 发明授权
    • Electron microscope, electron-microscope image-reconstruction system and electron-microscope image-reconstruction method
    • 电子显微镜,电子显微镜图像重建系统和电子显微镜图像重建方法
    • US08704177B2
    • 2014-04-22
    • US13883989
    • 2011-10-14
    • Takashi KuboHiroyuki Kobayashi
    • Takashi KuboHiroyuki Kobayashi
    • G01N23/00G21K7/00
    • H01J37/222H01J37/26H01J2237/226H01J2237/2802
    • There is provided an image-reconstruction system capable of implementing a multi-axes reconstruction technique for lessening a burden on the part of a user, and precluding artifacts high in contrast, contamination of a sample, and restrictions imposed on a sample for use, occurring due to use of markings.A plurality of tilt-images photographed by tilting a sample at sample-tilt axes, differing from each other; are acquired, misregistration is corrected by a rotation step-angle, a rotated object under observation is tilted in angle-steps, differing from each other, to pick up images thereof, two reconstruction images obtained by correcting respective misregistrations of two reconstruction images created from respective tilt-image groups are created, and one reconstruction image is created by superimposing one of the two reconstruction images on the other.
    • 提供了能够实现用于减轻用户的负担的多轴重建技术的图像重建系统,并且排除相对较高的伪影,样本的污染以及施加在样本上的限制使用,发生 由于使用标记。 通过以不同的样品倾斜轴倾斜样品拍摄的多个倾斜图像; 通过旋转步进角校正重合失调,观察到的被旋转物体以角度方向彼此不同地倾斜以拾取其图像,通过校正由两个重建图像创建的两个重建图像的相应的不对准而获得的两个重建图像 创建相应的倾斜图像组,并且通过将两个重建图像中的一个重叠在另一个上来创建一个重建图像。
    • 120. 发明授权
    • Image processing apparatus, image processing method and computer readable information recording medium
    • 图像处理装置,图像处理方法和计算机可读信息记录介质
    • US08687846B2
    • 2014-04-01
    • US13137447
    • 2011-08-16
    • Masayoshi ShimizuHiroyuki Kobayashi
    • Masayoshi ShimizuHiroyuki Kobayashi
    • G06K9/36
    • H04N5/23277
    • An image processing apparatus includes an obtaining part configured to obtain a plurality of images including a photographing object photographed by a photographing part; a determination part configured to detects a shift in position between a first image and a second image included in the plurality of images obtained by the obtaining part, and determine whether the first image is suitable for being superposed to the second image; a selection part configured to select a certain number of images from the plurality of images based on a determination result of the determination part; and a synthesis part configured to synthesize the certain number of images selected by the selection part.
    • 一种图像处理装置,包括:获取部,被配置为获得包括由拍摄部拍摄的拍摄对象的多个图像; 确定部件,被配置为检测由所述获取部件获得的所述多个图像中包括的第一图像和第二图像之间的位置偏移,并且确定所述第一图像是否适于叠加到所述第二图像; 选择部件,被配置为基于所述确定部分的确定结果从所述多个图像中选择一定数量的图像; 以及合成部件,其被配置为合成由所述选择部件选择的所述一定数量的图像。