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    • 15. 发明授权
    • Ophthalmologic photographing apparatus
    • 眼科拍摄设备
    • US07506982B2
    • 2009-03-24
    • US11980042
    • 2007-10-30
    • Ryoichi YahagiHiroyuki OotsukaTakanori Takeda
    • Ryoichi YahagiHiroyuki OotsukaTakanori Takeda
    • A61B3/14A61B3/10
    • A61B3/12A61B3/0033A61B3/0091A61B3/14
    • An opthalmologic photographing apparatus which is used to observe and photograph a fundus oculi of an eye to be examined, includes an observation light source illuminating the eye to observe the fundus oculi of the eye, a photographing light source illuminating the eye to photograph an image of the fundus oculi of the eye, an aperture through which light illuminated from either the observation light source or the photographing light source and reflected on the fundus oculi of the eye is observed or photographed, and a control device which is configured to control an opening area of the aperture. The control device sets the opening area of the aperture to an opened observing opening area when observing the fundus oculi, and to a narrowed photographing opening area when photographing the image of the fundus oculi.
    • 用于观察和拍摄被检眼的眼底的眼科摄影装置包括照亮眼睛以观察眼底的观察光源,照射眼睛的拍摄光源拍摄眼睛的图像 眼睛的眼底,观察或拍摄从观察光源或拍摄光源照射并被反射在眼底的光的孔,以及控制装置,其被配置为控制开口面积 的孔径。 控制装置在观察眼底时将开口的开口面积设定为打开的观察开口面积,并且在拍摄眼底的图像时将狭窄的拍摄开口区域设定。
    • 18. 发明授权
    • Slit lamp microscope
    • 狭缝灯显微镜
    • US07410257B2
    • 2008-08-12
    • US11037187
    • 2005-01-19
    • Takanori Takeda
    • Takanori Takeda
    • A61B3/10
    • A61B3/12A61B3/135
    • Disclosed is a slit lamp microscope capable of forming a slit superior in terms of parallelism. The slit lamp microscope includes casings (100L and 100R) to the bottoms surfaces of which slit blades (107L) and (107R) are fixed and which are connected together so as to be rotatable around shaft members (102), and an inter-casing distance varying member (87) adapted to change the distance between the casings (100L and 100R) in correspondence with vertical movement of an ascent/descent shaft (86). Coil-like portions of torsion springs (103) are wound around the shaft members (102) to which the casings (100L and 100R) are connected. The torsion springs (103) urge the casings (100L and 100R) so as to bring the slit blades (107L and 107R) close to each other. Further, the casings (100L and 100R) are equipped with U-shaped springs (106) urging protrusions (100L′ and 100R′) thereof so as to press them against the shaft members (102).
    • 公开了能够形成平行度优异的狭缝的裂隙灯显微镜。 裂隙灯显微镜包括固定有切割刀片(107L)和(107R)的底部表面的壳体(100L和100R),并且可围绕轴构件(102)旋转并连接在一起;以及 适于根据上升/下降轴(86)的垂直运动改变壳体(100L和100R)之间的距离的套管间距离变化构件(87)。 螺旋弹簧(103)的线圈状部分缠绕在壳体(100L和100R)连接到的轴构件(102)上。 扭转弹簧(103)推动壳体(100L和100R),以使狭缝刀片(107L和107R)彼此靠近。 此外,壳体(100L和100R)配备有U形弹簧(106),以推动其突起(100L'和100R'),以将它们压靠在轴构件(102)上。
    • 19. 发明授权
    • Ophthalmologic photographing apparatus
    • 眼科拍摄设备
    • US07147328B2
    • 2006-12-12
    • US10413571
    • 2003-04-15
    • Yuichi SuginoTomoyoshi AbeTakanori TakedaTaisaku Kogawa
    • Yuichi SuginoTomoyoshi AbeTakanori TakedaTaisaku Kogawa
    • A61B3/14
    • A61B3/14
    • An ophthalmologic photographing apparatus including: an apparatus main body having an illumination system for illuminating an eye to be examined and an observation system for observing an image of the eye to be examined which is illuminated by the illumination system; a photographing device for taking a light flux from the eye to be examined from an optical path of the observation system, photographing the image of the eye to be examined and recording the image; a storage unit for storing a photographing condition related to the apparatus main body and a photographing processing condition related to the photographing device for each of plural kinds of photographing processing modes in photographing and storing the eye to be examined; a designating unit for designating a photographing processing mode for the eye to be examined; and a setting unit for reading out a photographing condition related to the apparatus main body and a photographing processing condition related to the photographing device for a corresponding photographing processing mode from the storage unit according to designation by the designating unit and setting the photographing condition related to the apparatus main body and the photographing processing condition related to the photographing device.
    • 一种眼科摄影装置,包括:具有用于照射被检眼的照明系统的装置主体和用于观察照明系统照明的被检眼的图像的观察系统; 拍摄装置,用于从观察系统的光路检测来自眼睛的光通量,拍摄待检查的眼睛的图像并记录图像; 存储单元,用于存储与所述装置主体相关的拍摄条件和与所述拍摄装置相关的拍摄处理条件,用于拍摄和存储所述被检眼的多种拍摄处理模式; 用于指定要检查的眼睛的拍摄处理模式的指定单元; 以及设置单元,用于根据指定单元的指定,从存储单元读出与装置主体相关的拍摄条件和与拍摄装置相关的用于相应拍摄处理模式的拍摄处理条件,并设置与 设备主体和与拍摄装置相关的拍摄处理条件。
    • 20. 发明申请
    • Slit lamp microscope
    • 狭缝灯显微镜
    • US20050185136A1
    • 2005-08-25
    • US11037187
    • 2005-01-19
    • Takanori Takeda
    • Takanori Takeda
    • A61B3/12A61B3/135A61B3/10
    • A61B3/12A61B3/135
    • Disclosed is a slit lamp microscope capable of forming a slit superior in terms of parallelism. The slit lamp microscope includes casings (100L and 100R) to the bottoms surfaces of which slit blades (107L) and (107R) are fixed and which are connected together so as to be rotatable around shaft members (102), and an inter-casing distance varying member (87) adapted to change the distance between the casings (100L and 100R) in correspondence with vertical movement of an ascent/descent shaft (86). Coil-like portions of torsion springs (103) are wound around the shaft members (102) to which the casings (100L and 100R) are connected. The torsion springs (103) urge the casings (100L and 100R) so as to bring the slit blades (107L and 107R) close to each other. Further, the casings (100L and 100R) are equipped with U-shaped springs (106) urging protrusions (100L′ and 100R′) thereof so as to press them against the shaft members (102).
    • 公开了能够形成平行度优异的狭缝的裂隙灯显微镜。 裂隙灯显微镜包括固定有切割刀片(107L)和(107R)的底部表面的壳体(100L和100R),并且可围绕轴构件(102)旋转并连接在一起;以及 适于根据上升/下降轴(86)的垂直运动改变壳体(100L和100R)之间的距离的套管间距离变化构件(87)。 螺旋弹簧(103)的线圈状部分缠绕在壳体(100L和100R)连接到的轴构件(102)上。 扭转弹簧(103)推动壳体(100L和100R),以使狭缝刀片(107L和107R)彼此靠近。 此外,壳体(100L和100R)配备有U形弹簧(106),以推动其突起(100L'和100R'),以将它们压靠在轴构件(102)上。