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    • 34. 发明公开
    • LIGHT SHEET MICROSCOPE AND CONTROL METHOD OF LIGHT SHEET MICROSCOPE
    • 薄片显微镜及薄片显微镜控制方法
    • EP3276388A1
    • 2018-01-31
    • EP17181645.7
    • 2017-07-17
    • Olympus Corporation
    • SHIMADA, Yoshihiro
    • G02B21/00G02B21/24G02B21/36G02B27/00
    • G02B21/006G02B5/005G02B15/14G02B21/0004G02B21/0032G02B21/241G02B21/245G02B21/365G02B21/367G02B27/0025
    • A light sheet microscope (100; 200) includes an objective (7), an illumination optical system (4), a correction device (18, 31), an image pickup device (12), first adjustment means (8), second adjustment means (6) and a controller (20; 40). The controller (20; 40) performs a first focus process and a spherical aberration correction process. The first focus process is a process in which the first adjustment means (8) is controlled on the basis of light that is from the light sheet plane and that is detected via the objective so that the light sheet plane and a focal plane of the objective become closer when a relative position between the light sheet plane and a sample has been changed. The spherical aberration correction process is process in which the correction device is controlled so that an evaluation value of the image of the sample obtained by the image pickup device becomes greater when the first adjustment means (8) has changed the relative position between the light sheet plane and the objective.
    • 一种光学片显微镜(100; 200),包括物镜(7),照明光学系统(4),校正装置(18,31),图像拾取装置(12),第一调整装置(8),第二调整装置 装置(6)和控制器(20; 40)。 控制器(20; 40)执行第一聚焦处理和球面像差校正处理。 第一聚焦过程是这样的过程,其中基于来自光片平面并且经由物镜检测到的光来控制第一调节装置(8),使得光片平面和物镜的焦平面 当光片平面和样品之间的相对位置已经改变时,它们变得更近。 球面像差校正处理是这样的处理,其中控制校正装置,使得当第一调整装置(8)已经改变光片之间的相对位置时,由图像拾取装置获得的样本的图像的评估值变得更大 飞机和目标。
    • 37. 发明公开
    • RASTERMIKROSKOP
    • EP3234680A1
    • 2017-10-25
    • EP15817826.9
    • 2015-12-21
    • Leica Microsystems CMS GmbH
    • FÖLLING, Jonas
    • G02B21/00
    • G02B21/006G02B21/0044G02B21/0064G02B21/0076G02B21/0084G02B21/361G02B21/367
    • The invention relates to a scanning microscope (100), comprising an objective (112) which focuses an illumination beam (102) at a specimen (115), a scanning element (104), which is arranged upstream of the objective (112) and which can be adjusted in order to deflect the illumination beam (102) in a time-varying manner in order to guide the focused illumination beam (102) across the specimen (115) in a scanning motion, and an image sensor (122), onto which the objective (112) focuses a detection beam (114) originating at the specimen (115) illuminated with the focused illumination beam (102). The image sensor (122) has a plurality of sensor elements (124) which can be individually read out by a controller (126) and across which the detection beam (114) is guided in a motion corresponding to the scanning motion of the focused illumination beam (102). A dispersive element (120) of predetermined dispersion effect is provided, which spatially separates different spectral components of the detection beam (114) from each other on the image sensor (122). The controller (126) senses the time-varying adjustment of the scanning element (104), assigns the spectral components of the detection beam (114) to the sensor elements (124) of the image sensor (122) in accordance with said adjustment while taking into account the predetermined dispersion effect of the dispersive element (120), and reads out the sensor elements (124) assigned to the respective spectral components.
    • 本发明涉及一种扫描显微镜(100),其包括将照明光束(102)聚焦在样本(115)处的物镜(112),布置在物镜(112)上游的扫描元件(104)和 为了在扫描运动中引导聚焦的照明光束(102)越过样本(115),可以调整所述照明光束(102)以便以时变方式偏转照明光束(102),以及图像传感器(122) 物镜(112)在其上聚焦检测光束(114),该检测光束源于用聚焦照明光束(102)照射的样本(115)。 图像传感器(122)具有多个传感器元件(124),所述多个传感器元件能够由控制器(126)单独地读出并且以与聚焦照明的扫描运动对应的运动引导检测束(114) 梁(102)。 提供预定分散效应的色散元件(120),其在图像传感器(122)上在空间上将检测光束(114)的不同光谱分量彼此分开。 控制器(126)感测扫描元件(104)的时变调节,根据所述调节将检测光束(114)的光谱分量分配给图像传感器(122)的传感器元件(124),同时 考虑色散元件(120)的预定分散效应,并且读出分配给各个光谱分量的传感器元件(124)。