会员体验
专利管家(专利管理)
工作空间(专利管理)
风险监控(情报监控)
数据分析(专利分析)
侵权分析(诉讼无效)
联系我们
交流群
官方交流:
QQ群: 891211   
微信请扫码    >>>
现在联系顾问~
热词
    • 1. 发明申请
    • Scanning microscope and adjusting method for the same
    • 扫描显微镜和调整方法相同
    • US20080259442A1
    • 2008-10-23
    • US12079153
    • 2008-03-25
    • Yasunari MatsukawaMasaharu TomiokaAkinori ArayaToshiyuki Hattori
    • Yasunari MatsukawaMasaharu TomiokaAkinori ArayaToshiyuki Hattori
    • G02B21/06
    • G02B21/008G02B21/365
    • A scanning microscope includes an objective lens for focusing illumination light onto a specimen; a scanning device for deflecting and scanning the illumination light; a pupil-projection optical system for illuminating a pupil of the objective lens with the scanned illumination light; and a total-magnification specifying unit for specifying a total magnification. An optical-system selecting unit changes at least one of the objective lens and the pupil-projection optical system such that a magnification of an optical system including the objective lens and the pupil-projection optical system is equal to or less than the total magnification specified by the total-magnification specifying unit and that the numerical aperture of the optical system is maximized. A deflection-angle determination unit determines a deflection angle of the illumination light deflected by the scanning device based on the ratio of the magnification of the optical system to the total magnification to achieve the total magnification.
    • 扫描显微镜包括用于将照明光聚焦到样本上的物镜; 用于偏转和扫描照明光的扫描装置; 用于利用扫描的照明光照射物镜的光瞳的光瞳投影光学系统; 以及用于指定总放大率的总放大率指定单元。 光学系统选择单元改变物镜和瞳孔投影光学系统中的至少一个,使得包括物镜和瞳孔投影光学系统的光学系统的放大倍数等于或小于指定的总倍率 通过总倍率指定单元,并且光学系统的数值孔径最大化。 偏转角确定单元基于光学系统的倍率与总放大率的比率确定由扫描装置偏转的照明光的偏转角,以实现总放大率。
    • 4. 发明授权
    • Microscope apparatus and microscope system
    • 显微镜仪器和显微镜系统
    • US07876500B2
    • 2011-01-25
    • US12059043
    • 2008-03-31
    • Toshiyuki HattoriTatsuo NakataYasunari MatsukawaAkinori ArayaMasaharu Tomioka
    • Toshiyuki HattoriTatsuo NakataYasunari MatsukawaAkinori ArayaMasaharu Tomioka
    • G02B21/00
    • G02B21/367
    • It is possible to check for observation success or failure and the observation history without waiting for observation to be completely finished, thus saving time and energy required for observation, and avoiding lost opportunities for observation of precious samples etc. Provided is a microscope apparatus including an image acquisition unit for acquiring a plurality of frame images while varying a plurality of parameters; an image saving unit for successively saving the frame images acquired by the image acquisition unit; a property-information saving unit for saving property information in which identifying information of the saved frame images is associated with the parameters; and a control unit for controlling these units, wherein the control unit saves updated property information in the property-information saving unit each time the frame image is saved in the image saving unit.
    • 可以检查观察成功或失败以及观察历史,而不等待观察完全完成,从而节省观察所需的时间和精力,并避免丢失观察珍贵样品等的机会。提供一种显微镜装置,包括 图像获取单元,用于在改变多个参数的同时获取多个帧图像; 图像保存单元,用于连续地保存由图像获取单元获取的帧图像; 属性信息保存单元,用于保存其中保存的帧图像的识别信息与参数相关联的属性信息; 以及用于控制这些单元的控制单元,其中,每当帧图像被保存在图像保存单元中时,控制单元将更新的属性信息保存在属性信息保存单元中。
    • 5. 发明授权
    • Scanning microscope and adjusting method for the same
    • 扫描显微镜和调整方法相同
    • US07773297B2
    • 2010-08-10
    • US12079153
    • 2008-03-25
    • Yasunari MatsukawaMasaharu TomiokaAkinori ArayaToshiyuki Hattori
    • Yasunari MatsukawaMasaharu TomiokaAkinori ArayaToshiyuki Hattori
    • G02B21/06
    • G02B21/008G02B21/365
    • A scanning microscope includes an objective lens for focusing illumination light onto a specimen; a scanning device for deflecting and scanning the illumination light; a pupil-projection optical system for illuminating a pupil of the objective lens with the scanned illumination light; and a total-magnification specifying unit for specifying a total magnification. An optical-system selecting unit changes at least one of the objective lens and the pupil-projection optical system such that a magnification of an optical system including the objective lens and the pupil-projection optical system is equal to or less than the total magnification specified by the total-magnification specifying unit and that the numerical aperture of the optical system is maximized. A deflection-angle determination unit determines a deflection angle of the illumination light deflected by the scanning device based on the ratio of the magnification of the optical system to the total magnification to achieve the total magnification.
    • 扫描显微镜包括用于将照明光聚焦到样本上的物镜; 用于偏转和扫描照明光的扫描装置; 用于利用扫描的照明光照射物镜的光瞳的光瞳投影光学系统; 以及用于指定总放大率的总放大率指定单元。 光学系统选择单元改变物镜和瞳孔投影光学系统中的至少一个,使得包括物镜和瞳孔投影光学系统的光学系统的放大倍数等于或小于指定的总倍率 通过总倍率指定单元,并且光学系统的数值孔径最大化。 偏转角确定单元基于光学系统的倍率与总放大率的比率确定由扫描装置偏转的照明光的偏转角,以实现总放大率。
    • 6. 发明申请
    • MICROSCOPE APPARATUS AND MICROSCOPE SYSTEM
    • MICROSCOPE装置和显微镜系统
    • US20080246839A1
    • 2008-10-09
    • US12059043
    • 2008-03-31
    • Toshiyuki HattoriTatsuo NakataYasunari MatsukawaAkinori ArayaMasaharu Tomioka
    • Toshiyuki HattoriTatsuo NakataYasunari MatsukawaAkinori ArayaMasaharu Tomioka
    • H04N7/18
    • G02B21/367
    • It is possible to check for observation success or failure and the observation history without waiting for observation to be completely finished, thus saving time and energy required for observation, and avoiding lost opportunities for observation of precious samples etc. Provided is a microscope apparatus including an image acquisition unit for acquiring a plurality of frame images while varying a plurality of parameters; an image saving unit for successively saving the frame images acquired by the image acquisition unit; a property-information saving unit for saving property information in which identifying information of the saved frame images is associated with the parameters; and a control unit for controlling these units, wherein the control unit saves updated property information in the property-information saving unit each time the frame image is saved in the image saving unit.
    • 可以检查观察成功或失败以及观察历史,而不等待观察完全完成,从而节省观察所需的时间和精力,并避免丢失观察珍贵样品等的机会。提供一种显微镜装置,包括 图像获取单元,用于在改变多个参数的同时获取多个帧图像; 图像保存单元,用于连续地保存由图像获取单元获取的帧图像; 属性信息保存单元,用于保存其中保存的帧图像的识别信息与参数相关联的属性信息; 以及用于控制这些单元的控制单元,其中,每当帧图像被保存在图像保存单元中时,控制单元将更新的属性信息保存在属性信息保存单元中。
    • 7. 发明授权
    • Laser scanning microscope and microscopic observing method
    • 激光扫描显微镜和显微镜观察法
    • US07724426B2
    • 2010-05-25
    • US11805874
    • 2007-05-24
    • Yusuke YamashitaAkinori Araya
    • Yusuke YamashitaAkinori Araya
    • G02B21/06G02F1/33
    • G02B21/0076G02B21/0048G02B21/0064
    • To provide a laser scanning microscope including a laser beam source for stimulation that emits a laser beam for stimulation for applying photostimulation to a sample, a scanner that performs scanning with the laser beam for stimulation, a control device that controls the scanner, and an objective lens that condenses the laser beam for stimulation used for scanning by the scanner to the sample. The scanner has at least one acoustooptic device arranged on an optical path of the laser beam for stimulation. The control device determines a plurality of frequencies on the basis of the position and the range of a photostimulation region, and simultaneously applies the high-frequency signals of the determined plurality of frequencies to a vibrator attached to the acoustooptic device.
    • 为了提供一种激光扫描显微镜,包括用于刺激的激光束源,其发射用于刺激的激光束以对样品施加光刺激,使用激光束进行刺激的扫描仪,控制扫描仪的控制装置和目标 将用于扫描器扫描的刺激的激光束聚集到样品上的透镜。 扫描仪具有至少一个设置在激光束的光路上用于刺激的声光装置。 控制装置基于光刺激区域的位置和范围来确定多个频率,并且将确定的多个频率的高频信号同时施加到附接到声光装置的振动器。
    • 8. 发明申请
    • Laser microscope and control method for the same
    • 激光显微镜及其控制方法相同
    • US20080151366A1
    • 2008-06-26
    • US12002508
    • 2007-12-17
    • Akinori ArayaTatsuo NakataMakio Ueno
    • Akinori ArayaTatsuo NakataMakio Ueno
    • G02B21/00
    • G02B21/0036
    • It is possible to achieve a required field number and numerical aperture for microscope observation at a scanning speed equal to video-rate or higher and also to change the scanning speed with a simple configuration. The invention provides a laser microscope including a laser light source; a scanning unit configured to scan a specimen with laser light emitted from the laser light source; and an objective lens configured to focus the laser light scanned by the scanning unit on the specimen. The scanning unit is provided with an electro-optical deflecting element including an electro-optical crystal in which a refractive index gradient is induced by injecting electric current.
    • 可以以等于视频速率或更高的扫描速度实现用于显微镜观察的所需场数和数值孔径,并且还可以以简单的配置改变扫描速度。 本发明提供一种包括激光光源的激光显微镜; 扫描单元,被配置为用从所述激光光源发射的激光扫描样本; 以及配置为将由扫描单元扫描的激光聚焦在样本上的物镜。 扫描单元设置有电光偏转元件,其包括通过注入电流而引起折射率梯度的电光晶体。
    • 10. 发明授权
    • Laser scanning microscope
    • 激光扫描显微镜
    • US07964853B2
    • 2011-06-21
    • US12772361
    • 2010-05-03
    • Akinori Araya
    • Akinori Araya
    • G01N21/64
    • G02B21/004G02B21/0076
    • A laser scanning microscope that can construct a fluorescence image with high resolution even with a photodetector having a small array size is provided. A laser scanning microscope includes a line-focusing optical system that focuses laser light from a laser light source in the form of a line; a DMD having a plurality of movable micromirrors that are arrayed in the same direction of the line and reflect the focused laser light; a galvanometer mirror that scans the laser light reflected by the DMD; an irradiation optical system that irradiates a sample with the scanned laser light; a photodetector having a plurality of channels that detect light from the sample and are arrayed in a single line; and a controller that controls the DMD so as to cause the light reflected by the different movable micromirrors to enter the respective channels, and that sequentially switches between the micromirrors that reflect the light that is to enter the channels so that the light from different positions on the sample enters the channels.
    • 提供即使具有小阵列尺寸的光电检测器也可以构建高分辨率的荧光图像的激光扫描显微镜。 激光扫描显微镜包括以线形式聚焦来自激光光源的激光的线聚焦光学系统; 具有多个可移动微镜的DMD,其以相同方向排列并反射聚焦的激光; 用于扫描由DMD反射的激光的电流计镜; 照射光学系统,用扫描的激光照射样品; 具有多个通道的光电探测器,该多个通道检测来自样品的光并排列成一行; 以及控制器,其控制DMD以使得由不同的可移动微镜反射的光进入相应的通道,并且顺序地在反射进入通道的光的微反射镜之间切换,使得来自不同位置的光 样品进入通道。