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    • 1. 发明申请
    • Examination Apparatus, Fluoroscopy Apparatus, Examination Method, And Experimental Method
    • 检查装置,荧光检查装置,检查方法和实验方法
    • US20070273877A1
    • 2007-11-29
    • US10594311
    • 2005-03-29
    • Yoshihiro KawanoKeiji ShimizuMinoru SukekawaTsuyoshi MochizukiSusumu HondaKazuhiro Hayashi
    • Yoshihiro KawanoKeiji ShimizuMinoru SukekawaTsuyoshi MochizukiSusumu HondaKazuhiro Hayashi
    • G01J3/30G02B21/36
    • G01N21/6458G02B21/248
    • Even when the magnifying power is reduced, an image can be obtained at high resolution without significantly reducing the numerical aperture, and examination accuracy is improved. There is provided a microscope examination apparatus including a light source for emitting excitation light or illumination light to a specimen placed on a stage; an objective lens opposing the stage and capable of focusing fluorescence or reflected light from the specimen; an image-forming lens for forming an image of the specimen obtained by the objective lens; and an image-capturing unit for capturing the image of the specimen forming by the image-forming lens, wherein a plurality of the objective lenses having different magnifying powers is provided, and an objective-lens switching mechanism for switching among the objective lenses is provided, and wherein a plurality of the image-forming lenses having different magnifying powers is provided, and an image-forming-lens switching mechanism for switching among the image-forming lenses 5a and 5b is provided.
    • 即使放大倍数减小,也能够以高分辨率获得图像,而不会显着降低数值孔径,提高了检查精度。 提供了一种显微镜检查装置,其包括用于向放置在台架上的样本发射激发光或照明光的光源; 与舞台相对并且能够聚焦来自样本的荧光或反射光的物镜; 用于形成由所述物镜获得的所述样本的图像的图像形成透镜; 以及图像捕获单元,用于捕获由图像形成透镜形成的样本的图像,其中提供具有不同放大倍率的多个物镜,并且提供用于在物镜之间切换的物镜切换机构 并且其中提供了具有不同放大倍率的多个图像形成透镜,并且提供了用于在成像透镜5a和5b之间切换的图像形成透镜切换机构。
    • 4. 发明授权
    • Microscope system
    • 显微镜系统
    • US06898004B2
    • 2005-05-24
    • US10252434
    • 2002-09-23
    • Keiji ShimizuShuzo MishimaYoshihiro Kawano
    • Keiji ShimizuShuzo MishimaYoshihiro Kawano
    • G02B21/06G02B21/00G02B21/16
    • G02B21/16
    • In a microscope system, illumination light rays are emitted from a light source. The illumination light rays are collimated and reflected from a mirror to the optical element array. The optical element array is located at a conjugate position of a specimen, and includes a plurality of micro mirrors arranged in a matrix form. The micro mirrors are individually controlled to selectively reflect the illumination light rays for illuminating the specimen. Thus, a predetermined pattern of the light rays is reflected from the optical element array to an objective lens. The illumination light rays are projected on the specimen from the objective lens and the specimen is illuminated by the predetermined illumination pattern.
    • 在显微镜系统中,照明光线从光源发射。 照明光线被准直并从反射镜反射到光学元件阵列。 光学元件阵列位于样本的共轭位置,并且包括以矩阵形式布置的多个微反射镜。 微镜被单独控制以选择性地反射用于照射样本的照明光线。 因此,光线的预定图案从光学元件阵列反射到物镜。 照明光线从物镜投影在样本上,并且样本被预定的照明图案照射。
    • 7. 发明申请
    • Microscope moving unit and microscope apparatus
    • 显微镜移动单元和显微镜设备
    • US20070047071A1
    • 2007-03-01
    • US11505336
    • 2006-08-17
    • Susumu HondaYoshihiro Kawano
    • Susumu HondaYoshihiro Kawano
    • G02B21/00
    • G02B21/082G02B21/002
    • A microscope moving unit is provided, the microscope moving unit being capable of preventing an increase in size and a decrease in operation speed of a microscope apparatus by reducing the size of the movable parts, improving the operability of the objective lens by providing a large space around the objective lens, and allowing a specimen to be observed at various positions without affecting the specimen. The microscope moving unit includes an arm that is rotatable around an optical axis of a laser beam guided from a laser light source and that supports a microscope main body on the side closer to a tip of the arm, the microscope main body having an objective lens, and a rotatable deflecting member, which is fixed to the arm, configured to deflect the laser beam and emit the deflected laser beam towards the microscope main body at the side closer to the tip of the arm.
    • 提供显微镜移动单元,显微镜移动单元能够通过减小可移动部件的尺寸来防止显微镜装置的尺寸增加和操作速度的降低,通过提供大的空间来提高物镜的可操作性 在物镜周围,并且允许在不影响样本的各个位置观察样本。 显微镜移动单元包括臂,其能够围绕从激光源引导的激光束的光轴旋转,并且在靠近臂的末端的一侧支撑显微镜主体,显微镜主体具有物镜 以及可旋转偏转构件,其被固定到所述臂,所述可旋转偏转构件被配置为使所述激光束偏转并且在靠近所述臂的尖端的一侧朝向所述显微镜主体发射偏转的激光束。
    • 8. 发明授权
    • Virtual-slide specimen image acquisition apparatus
    • 虚拟幻灯片图像采集装置
    • US07912267B2
    • 2011-03-22
    • US12620268
    • 2009-11-17
    • Yoshihiro KawanoMitsumori HayashidaKeiji KimuraIwao Kanamori
    • Yoshihiro KawanoMitsumori HayashidaKeiji KimuraIwao Kanamori
    • G06K9/00
    • G06K9/2009G02B21/34G02B21/36Y10S128/922
    • The present invention is a virtual-slide specimen image acquisition apparatus that captures images by dividing a specimen into a plurality of sections, having a conveying device in which a plurality of specimens can be arranged and that conveys the plurality of the arranged specimens in a first direction by a distance corresponding to the length of a side along the first direction in one of the divided sections and at first time intervals and an image capturing device that has an image capturing portion for capturing images of the specimens magnified at a predetermined magnification and that scans the specimens conveyed to a predetermined position in a second direction, by a predetermined length at second time intervals, such that the image capturing portion captures images of all of the sections that are positioned identically in the first direction and that are positioned differently in the second direction perpendicular to the first direction.
    • 本发明是一种虚拟幻灯片样本图像获取装置,其通过将样本分割成多个部分来捕获图像,该多个部分具有其中可以布置多个样本的输送装置,并且将多个排列的样本以第一 在一个分割部分中以第一时间间隔对应于沿着第一方向的一侧的长度的方向的方向和具有用于捕获以预定倍数放大的样本的图像的图像捕获部分的图像捕获装置,以及 以第二时间间隔将传送到第二方向的预定位置的样本扫描预定长度,使得图像捕获部分捕获在第一方向上相同位置并且在第二方向上不同定位的所有部分的图像 第二方向垂直于第一方向。