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    • 4. 发明公开
    • 형광영상 획득을 위한 선택형 광원 시스템
    • 选择性照明系统进行荧光图像采集
    • KR1020110039770A
    • 2011-04-20
    • KR1020090096757
    • 2009-10-12
    • 전남대학교산학협력단(주)네오시스템
    • 이병일정운성
    • A61B6/00
    • PURPOSE: A selective lighting system for fluorescence image acquisition is provided to reduce costs by easily obtaining fluorescence image in a specific band. CONSTITUTION: In a selective lighting system for fluorescence image acquisition, an upper module(a) is comprised of a rotary shaft(143) and a step motor(140). The step motor rotates the rotary shaft. A center module(b) comprises a plurality of light source modules. The center module is connected to the rotary shaft. The center module comprises a magazine(121). The magazine is rotated by the rotary shaft. A lower module(c) is comprised of a light transmission window. The light transmission window passes the light to a target.
    • 目的:提供用于荧光图像采集的选择性照明系统,通过容易地获得特定频带中的荧光图像来降低成本。 构成:在用于荧光图像采集的选择性照明系统中,上模块(a)由旋转轴(143)和步进电机(140)组成。 步进电机旋转旋转轴。 中心模块(b)包括多个光源模块。 中心模块连接到旋转轴。 中心模块包括一个仓(121)。 刀库由旋转轴旋转。 下模块(c)由透光窗构成。 光传输窗将光传递到目标。
    • 5. 发明公开
    • 형광영상 및 감마선영상 촬영을 위한 소 동물용 이중영상 촬영장치
    • 用于荧光成像的双功能图像设备和小动物中的伽马射线成像
    • KR1020100097373A
    • 2010-09-03
    • KR1020090016283
    • 2009-02-26
    • 전남대학교산학협력단
    • 이병일민정준정운성정현
    • A61B6/00G01T1/161A61M36/00
    • A61B6/508
    • PURPOSE: A dual image photographing device is provided to obtain a fluoroscopic image and a gamma-ray image without the interference of external light by arranging a fluoroscopic video camera and a gamma-ray video camera in a divided space. CONSTITUTION: A case(110) includes an upper space, a center space, and a lower space. The upper space and the center space are divided with a fluoroscopic image partition. The center space and the lower space are divided with a gamma-ray image partition. A light source is arranged in the center space in order to irradiate light to a subject. A fluoroscopic video camera(130) is arranged in the upper space in order to obtain the fluoroscopic image of the subject. A gamma-ray video camera(140) is arranged in the lower space in order to obtain the gamma-ray image of the subject.
    • 目的:提供双重图像拍摄装置以通过在分割空间中布置荧光透视摄像机和伽马射线摄像机来获得透视图像和伽马射线图像而不受外部光的干扰。 构成:壳体(110)包括上部空间,中心空间和下部空间。 上部空间和中心空间用荧光镜图像分割分割。 中心空间和下部空间用伽马射线图像分割分割。 光源设置在中心空间中,以便将光照射到被摄体。 荧光镜摄像机(130)布置在上部空间中以获得被检体的透视图像。 为了获得被检体的γ射线图像,在下部空间配置有γ射线摄像机(140)。
    • 7. 发明公开
    • 생체광학 영상장치
    • 生物光学成像系统
    • KR1020080084359A
    • 2008-09-19
    • KR1020070026013
    • 2007-03-16
    • 전남대학교산학협력단
    • 이병일민정준김현규옥창민
    • A61B5/00
    • A bio-optical image system is provided to obtain the light of a user's desired wavelength selectively from the light passing through a subject. A bio-optical image system includes a case(100), a stage(200), a first light source(300), a driving unit(400), and an imaging module(500). The case has a door(110) to allow entrance of a subject. The stage is positioned inside the case to load the subject thereon. The first light source is positioned under the stage to irradiate light to the subject. The driving unit drives the first light source in X-Y axis directions. The imaging module is positioned above the stage to detect the light passing through the subject. The bio-optical image system further includes a lens module(600) and an optical filter module(700). The lens module is positioned at a lower end of the imaging module to condense the light passing through the subject. The optical filter module is positioned at a lower end of the lens module to pass the light of a predetermined wavelength passing through the subject.
    • 提供生物光学图像系统以从通过对象的光中选择性地获得用户期望波长的光。 生物光学图像系统包括壳体(100),平台(200),第一光源(300),驱动单元(400)和成像模块(500)。 该情况具有门(110)以允许被摄体进入。 该台被放置在壳体内以将被摄体加载到其上。 第一光源位于舞台下面以向对象照射光。 驱动单元以X-Y轴方向驱动第一光源。 成像模块位于平台上方,以检测穿过被摄体的光线。 生物光学图像系统还包括透镜模块(600)和滤光器模块(700)。 透镜模块位于成像模块的下端,以冷凝通过被摄体的光。 光学滤波器模块位于透镜模块的下端,以通过穿过被摄体的预定波长的光。
    • 9. 发明公开
    • 소동물 형광영상 동시관찰 광학분자영상장치
    • 用于实时荧光成像的双视觉光学分子成像装置
    • KR1020110018217A
    • 2011-02-23
    • KR1020090075902
    • 2009-08-17
    • 전남대학교산학협력단
    • 이병일민정준정운성정현
    • G01N21/64G01N33/533G01N21/00
    • PURPOSE: An optical molecular imaging device for simultaneously monitoring the fluorescence imaging of small animal is provided to reduce the manipulation steps of a user by simultaneously taking the two images of one object. CONSTITUTION: An optical molecular imaging device for simultaneously monitoring the fluorescence imaging of small animal comprises a housing(110), a movable stage(120), an irradiating unit(130), and a photographic unit(140). The housing forms the space shut tightly. The movable stage comprises a table(121), in which the subject locates, and is installed in the lower part of the housing. The irradiating unit radiates the light for taking a photograph of the subject.
    • 目的:提供用于同时监测小动物荧光成像的光学分子成像装置,以通过同时拍摄一个对象的两个图像来减少用户的操纵步骤。 构成:用于同时监测小动物的荧光成像的光学分子成像装置包括壳体(110),可移动台(120),照射单元(130)和照相单元(140)。 外壳形成紧密的空间。 可移动台包括被检体位于其中并安装在壳体下部的工作台(121)。 照射单元照射用于拍摄被摄体的照片的光。
    • 10. 发明授权
    • 저 광량 물체 촬영용 양배율 렌즈계 및 촬영장치
    • 用于低强度对象的摄影双倍放大镜头和摄像机
    • KR100857884B1
    • 2008-09-10
    • KR1020070026015
    • 2007-03-16
    • 전남대학교산학협력단
    • 김현규옥창민이병일민정준
    • G02B15/10G02B15/04
    • G02B13/0045G02B9/64G02B13/06G02B15/10G03B17/12H04N5/2254
    • A double magnification ratio lens and a camera for a low luminance object are provided to take an image at a magnification ratio of two by coupling a second lens system with a first lens system. A first lens system(100) has an F number of one and a magnification ratio of one. The first lens system includes a first bi-convex lens(101), a first meniscus lens(102), a first bi-concave lens(103), a second meniscus lens(104), a third meniscus lens(105), a second bi-convex lens, a third bi-convex lens(107), a fourth bi-convex lens(108), a fifth bi-convex lens(109), and a second bi-concave lens(110), which are sequentially arranged from an object side. The first lens system is contained in housing. A diaphragm(400) for adjusting a light intensity is arranged between the second and third meniscus lenses. The light emitted from the second bi-concave lens is captured by an image sensor(300).
    • 提供双倍率倍率透镜和用于低亮度物体的相机,以通过将第二透镜系统与第一透镜系统联接来以二倍的倍率拍摄图像。 第一透镜系统(100)的F数为1,放大率为1。 第一透镜系统包括第一双凸透镜(101),第一弯月透镜(102),第一双凹透镜(103),第二弯月透镜(104),第三弯月透镜(105), 第二双凸透镜,第三双凸透镜(107),第四双凸透镜(108),第五双凸透镜(109)和第二双凹透镜(110) 从物体侧排列。 第一个镜头系统包含在外壳中。 用于调节光强度的光阑(400)布置在第二和第三弯液面透镜之间。 从第二双凹透镜发射的光被图像传感器(300)捕获。