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    • 41. 发明授权
    • Microscope and filter inserting method
    • 显微镜和滤芯插入法
    • US08982454B2
    • 2015-03-17
    • US13210057
    • 2011-08-15
    • Takashi YamamotoNorihiro Tanabe
    • Takashi YamamotoNorihiro Tanabe
    • G02B21/18
    • G02B21/18
    • A microscope includes a first imaging optical system that images light beams from a cell tissue sample, a second imaging optical system having a light beam splitting element which splits a portion of the light beams from the cell tissue sample from the first imaging optical system, an imaging element which captures phase contrast images of a portion of the light beams, which have been split, from the cell tissue sample, and one or a plurality of optical elements which forms the phase contrast images on the imaging element, and a filter inserting unit that inserts an optical filter absorbing light of a predetermined wavelength into an optical path of the second imaging optical system, wherein the filter inserting unit inserts the optical filter absorbing light of a wavelength corresponding to a complementary color of a color of an observed target according to the color of the observed target.
    • 显微镜包括:第一成像光学系统,其对来自细胞组织样本的光束进行成像;第二成像光学系统,具有将来自第一成像光学系统的细胞组织样本的一部分光束分裂的光束分离元件; 成像元件,其捕获已经从细胞组织样本分离的一部分光束的相位对比图像,以及在成像元件上形成相位图像的一个或多个光学元件,以及滤光器插入单元 其将吸收预定波长的光的滤光器插入到第二成像光学系统的光路中,其中滤光器插入单元插入吸收与观察目标的颜色的互补色相对应的波长的光学滤光器,根据 观察目标的颜色。
    • 44. 发明申请
    • Molecular imaging and related methods
    • 分子成像及相关方法
    • US20140323325A1
    • 2014-10-30
    • US13999508
    • 2014-03-04
    • Marc BealRonald M. CookPeter Jay CoassinArturo OrjaloJekwan Ryu
    • Marc BealRonald M. CookPeter Jay CoassinArturo OrjaloJekwan Ryu
    • C12Q1/68G01N21/64
    • C12Q1/6841C12Q1/6883C12Q1/6886C12Q2600/158G01N21/6428G01N21/6458G02B21/0004G02B21/0096G02B21/082G02B21/16G02B21/18C12Q2537/143C12Q2543/10C12Q2563/107C12Q2565/601
    • The present invention generally relates to imaging single molecules, or one or more collections of single molecules, and methods related to the imaging. In a method aspect, the present invention provides a method of imaging single molecules. The method comprises the steps of: a) exposing a test sample to a probe, wherein the probe comprises a first portion that specifically binds to a target molecule and a second portion that is detectable as the result of one or more chemical groups that interact with light at one or more wavelengths, wherein the probe binds to a target molecule to provide a complex; b) exposing the complex to one or more wavelengths of light that interact with the one or more chemical groups; c) detecting a result from the interacting of one or more wavelengths of light that interact with the one or more chemical groups to provide an image of one or more single molecules. The image possesses a resolution better than 450 nm over a view field area of at least 1×105 μm2, and wherein the image is obtained in a single detection step without variation of any detection settings.
    • 本发明一般涉及成像单分子,或单个分子的一个或多个集合,以及与成像有关的方法。 在方法方面,本发明提供了单分子成像的方法。 该方法包括以下步骤:a)将测试样品暴露于探针,其中所述探针包含特异性结合靶分子的第一部分和作为一个或多个化学基团相互作用的结果可检测的第二部分 一个或多个波长的光,其中所述探针结合靶分子以提供复合物; b)将所述复合物暴露于与所述一个或多个化学基团相互作用的一个或多个波长的光; c)检测与一个或多个化学基团相互作用的一种或多种波长的光的相互作用的结果,以提供一个或多个单个分子的图像。 该图像在至少1×105μm2的视野区域中的分辨率优于450nm,并且其中在单个检测步骤中获得图像而不改变任何检测设置。
    • 45. 发明授权
    • Optical element for distributing light
    • 用于分配光的光学元件
    • US08625201B2
    • 2014-01-07
    • US13296689
    • 2011-11-15
    • Frank EisenkraemerSteffen GuentherHans-Martin Heuck
    • Frank EisenkraemerSteffen GuentherHans-Martin Heuck
    • G02B27/14
    • G02B27/145G02B21/18G02B27/0025G02B27/1066G02B27/142G02B27/144
    • An optical element for distributing light has a predefined spectral energy distribution in a predetermined working wavelength range. The optical element encompasses a transparent body into which the light enters, and a beam splitter layer embodied inside the transparent body, which layer has in the working wavelength range a predefined wavelength-dependent reflectance with which it reflects the light entering the transparent body in order to generate a reflected exit light bundle, and a wavelength-dependent transmittance with which it transmits the light entering the transparent body to generate a transmitted exit light bundle. The optical element encompasses a compensation layer arrangement, embodied on the transparent body separately from the beam splitter layer, whose transmittance with regard to the light passing through the compensation layer arrangement is defined as a function of the reflectance and transmittance of the beam splitter layer.
    • 用于分配光的光学元件在预定工作波长范围内具有预定的光谱能量分布。 光学元件包括光入射到其中的透明体,以及在透明体内部实现的分束器层,该层在工作波长范围内具有预定的波长相关反射率,依次反射进入透明体的光 以产生反射的出射光束和透射进入透明体的光的波长相关透射率,以产生透射的出射光束。 光学元件包括补偿层布置,该透明体与分束器层分开实现,透射体相对于通过补偿层布置的光的透射率被定义为分束器层的反射率和透射率的函数。
    • 46. 发明申请
    • MICROSCOPIC DEVICE AND MICROSCOPIC METHOD FOR THE THREE-DIMENSIONAL LOCALIZATION OF POINT-LIKE OBJECTS
    • 用于点对象物体的三维局部化的微观器件和微观方法
    • US20130229494A1
    • 2013-09-05
    • US13600463
    • 2012-08-31
    • Marcus Dyba
    • Marcus Dyba
    • G02B21/36
    • G02B21/367G02B21/18
    • A microscopic device provides three-dimensional localization of point-like objects and includes two imaging optics, each configured to image a same point-like object located in an object space into two separate image spaces as a focused light distribution. Two detector units are respectively associated with the imaging optics and configured to capture an analyzable light spot in detection points of a detection surface disposed in the respective image space. Each imaging optics includes an optical device that orients the focused light distributions obliquely to a detection axis such that, taking into account the detection point correspondence, the two light spots shift in opposite directions based on a z-position of the point-like object. An evaluation unit brings the detection points of the two detection surfaces into mutual pairwise correspondence and analyzes the two light spots so as to ascertain a lateral x-y position and an axial z-position of the point-like object.
    • 微观装置提供点样物体的三维定位,并且包括两个成像光学元件,每个成像光学元件被配置为将位于物体空间中的相同点样物体成像为聚焦光分布的两个分开的图像空间。 两个检测器单元分别与成像光学元件相关联,并且被配置为在设置在各个图像空间中的检测表面的检测点中捕获可分析的光斑。 每个成像光学器件包括光学装置,其将聚焦光分布倾斜于检测轴定向,使得考虑到检测点对应,基于点状物体的z-位置,两个光点在相反方向上移动。 评估单元将两个检测表面的检测点相互成对地对应,并分析两个光点,以确定点状物体的横向x-y位置和轴向z位置。
    • 50. 发明申请
    • Digital Microscope System
    • 数字显微镜系统
    • US20120169862A1
    • 2012-07-05
    • US13325800
    • 2011-12-14
    • Jin-Wug SONJin-Whan Yun
    • Jin-Wug SONJin-Whan Yun
    • H04N7/18
    • G02B21/365G02B6/0006G02B6/3514G02B6/3598G02B21/18
    • Disclosed is a digital microscope system capable of controlling two or more microscope units with a controlling unit. The digital microscope system includes (i) two or more microscope units, (ii) a camera interface, (iii) a controlling unit and (iv) a light output device. The microscope unit includes a lens tube, a digital camera, a light terminator and a stand. The camera interface includes two or more camera interface (I/F) channels and a camera interface channel selector. The controlling unit includes a memory, a display device, a CPU (Central Processing Unit) and a power supply.
    • 公开了一种能够用控制单元控制两个或更多个显微镜单元的数字显微镜系统。 数字显微镜系统包括(i)两个或更多个显微镜单元,(ii)照相机接口,(iii)控制单元和(iv)光输出装置。 显微镜单元包括透镜管,数字照相机,光终端器和支架。 相机接口包括两个或更多个摄像机接口(I / F)通道和摄像机接口通道选择器。 控制单元包括存储器,显示装置,CPU(中央处理单元)和电源。