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    • 33. 发明授权
    • Endoscope with variable direction of view
    • 具有可变视角的内窥镜
    • US09398840B2
    • 2016-07-26
    • US13450712
    • 2012-04-19
    • Oliver Rehe
    • Oliver Rehe
    • A61B1/06A61B1/00A61B1/002A61B1/04A61B1/055
    • A61B1/00183A61B1/002A61B1/042A61B1/055
    • An endoscope with a variable direction of view is provided, which includes an endoscope shaft and imaging optics arranged inside the endoscope shaft. These image an object located before the distal end of the endoscope and produce an image of the object in the proximal area of the endoscope in which a field stop is arranged. The produced image is larger than the field stop. In the proximal area of the endoscope an image module is arranged with which the relative position between the produced image and the field stop can be changed for changing the section of the produced image visible after the field stop in order to change the direction of view of the endoscope.
    • 提供具有可变视方向的内窥镜,其包括内窥镜轴和布置在内窥镜轴内部的成像光学元件。 这些图像是位于内窥镜的远端之前的物体,并且在其中布置有场停止件的内窥镜的近侧区域中产生物体的图像。 产生的图像大于场停止。 在内窥镜的近侧区域中,布置图像模块,通过该图像模块可以改变所产生的图像和场停止点之间的相对位置,以便改变在场停止之后可见的所产生的图像的部分,以便改变视场的方向 内窥镜。
    • 34. 发明申请
    • ENDOSCOPE WITH ADJUSTABLE VIEWING DIRECTION
    • 内窥镜具有可调节的观察方向
    • US20160192831A1
    • 2016-07-07
    • US15067480
    • 2016-03-11
    • OLYMPUS WINTER & IBE GMBH
    • Peter SCHOUWINKTakayuki KATO
    • A61B1/00A61B1/05
    • A61B1/00183A61B1/00096A61B1/00163A61B1/00179A61B1/00188A61B1/05G02B17/04G02B23/02G02B23/2423G02B23/243
    • An endoscope having an adjustable viewing direction. The endoscope including: an endoscope shaft having a longitudinal axis, a first optical unit disposed in the endoscope shaft, the first optical unit having a first prism pivotable about a pivot axis in order to deflect light, a second optical unit having at least a second prism for deflecting light, which is again deflected by the first prism, the second prism being arranged in a direction parallel to a longitudinal axis of the endoscope shaft, wherein the first prism has a light exit surface facing the second prism, and the second prism has a light admission surface facing towards the light exit surface of the first prism, and a lifting mechanism for lifting the first prism such that upon actuating the lifting mechanism the first prism executes a lifting movement in the direction of the pivot axis.
    • 一种具有可调节观察方向的内窥镜。 所述内窥镜包括:具有纵轴的内窥镜轴,配置在所述内窥镜轴内的第一光学单元,所述第一光学单元具有能够围绕枢转轴线枢转以便使光偏转的第一棱镜;具有至少第二光学单元的第二光学单元 用于偏转光的棱镜,其再次被第一棱镜偏转,第二棱镜沿与内窥镜轴的纵向轴线平行的方向设置,其中第一棱镜具有面向第二棱镜的光出射面,第二棱镜 具有面向第一棱镜的光出射表面的光入射表面,以及用于提升第一棱镜的提升机构,使得在致动升降机构时第一棱镜在枢转轴线的方向上执行提升运动。
    • 36. 发明申请
    • ROTATABLE OBLIQUE-VIEWING STEREOENDOSCOPE
    • 可旋转的OBLIQUE-VIEWING STEREOENDOSCOPE
    • US20160178886A1
    • 2016-06-23
    • US14962688
    • 2015-12-08
    • Visionsense Ltd.
    • Mark SHECHTERMAN
    • G02B23/24G02B23/08H04N13/02
    • G02B23/2415A61B1/00096A61B1/00183A61B1/00193G02B23/08G02B23/243G02B23/2453H04N13/204
    • Rotatable, oblique-viewing stereoendoscope including a dual-pupil aperture divided to a first pupil and a second pupil, a proximal objective assembly positioned proximally to the dual-pupil aperture, a first image sensor configured to detect a first image focused by the proximal objective assembly and a second image sensor configured to detect a second image focused by the proximal objective assembly, a relay system positioned distally to the dual-pupil aperture and a front optical system positioned distally to the relay system, the front optical system including a folding prism, wherein the front optical system is configured to reimage the dual-pupil aperture at a distal end thereof, thereby producing an image of the first pupil and an image of the second pupil at a distal pupil plane and wherein the stereoendoscope does not include a negative power lens positioned distally to the folding prism.
    • 可旋转的倾斜立体幻灯片内窥镜,包括分为第一瞳孔和第二瞳孔的双瞳孔,近端物镜组件位于双光瞳孔近侧;第一图像传感器,被配置为检测由近端物镜聚焦的第一图像 组件和第二图像传感器,其被配置为检测由所述近端物镜组件聚焦的第二图像,位于所述双光瞳孔的远侧的中继系统和位于所述中继系统的远侧的前光学系统,所述前光学系统包括折叠棱镜 ,其中所述前光学系统被配置为在其远端处重新对所述双瞳孔进行成像,从而在远端瞳孔平面处产生所述第一瞳孔的图像和所述第二瞳孔的图像,并且其中所述立体显示器不包括负 功率透镜位于折叠棱镜的远端。