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    • 1. 发明申请
    • ENDOSCOPE SYSTEM
    • 内窥镜系统
    • US20160278612A1
    • 2016-09-29
    • US15080768
    • 2016-03-25
    • OLYMPUS CORPORATION
    • Miho MINAMIZATOJun HASEGAWA
    • A61B1/00A61B1/005A61B1/303A61B5/06A61B1/307A61B1/05A61B1/06
    • A61B1/00009A61B1/00045A61B1/005A61B1/051A61B1/0638A61B1/0646A61B1/0684A61B1/303A61B1/307A61B5/062
    • An endoscope system includes: an insertion portion to be inserted into a predetermined luminal organ in a subject; an image pickup section provided in a vicinity of a distal end of the insertion portion, the image pickup section picking up an image of a predetermined range; an image pickup information acquiring section acquiring position information and gaze information about the image pickup section; a model image generating section generating a planar model image of the predetermined luminal organ; an image pasting processing section generating a pasted image obtained by pasting a subject image of an inside of the predetermined luminal organ onto the planar model image based on the position information and gaze information about the image pickup section; and an image pasting/presentation processing section presenting an image pickup range of the image pickup section on the pasted image based on the position information about the image pickup section.
    • 内窥镜系统包括:被插入到被检体内的规定的管腔内的插入部; 图像拾取部分,设置在所述插入部分的远端附近,所述图像拾取部分拾取预定范围的图像; 图像拾取信息获取部分获取关于图像拾取部分的位置信息和注视信息; 模型图像生成部,其生成所述规定的管腔器官的平面模型图像; 图像粘贴处理部,其基于所述位置信息和关于所述图像拾取部的注视信息,生成将所述规定的管腔器官内部的被摄体图像粘贴到所述平面模型图像上而获得的粘贴图像; 以及图像粘贴/呈现处理部分,基于关于图像拾取部分的位置信息,在粘贴的图像上呈现图像拾取部分的图像拾取范围。
    • 7. 发明申请
    • IMAGE PROCESSING APPARATUS FOR SCANNING ENDOSCOPE
    • 用于扫描内窥镜的图像处理装置
    • US20160198933A1
    • 2016-07-14
    • US15075447
    • 2016-03-21
    • OLYMPUS CORPORATION
    • Soichiro KOSHIKAKazuma KANEKOMasanori SUMIYOSHIJun HASEGAWA
    • A61B1/00A61B1/04
    • A61B1/07A61B1/00009A61B1/0002A61B1/00172A61B1/04A61B1/042A61B1/0669G02B23/2469G02B23/26G02B26/103
    • An image processing apparatus for scanning endoscope includes: a number-of-interpolations determination section that receives detection signals from a detector for sequentially sampling return light from a subject and determines a number of detection signals used in an interpolation process by an interpolation section based on distances between a coordinate position of a predetermined lattice point in pixel data of a raster scan system and sampling coordinate positions of the detection signals around the coordinate position of the predetermined lattice point; and the interpolation section that generates pixel data of the predetermined lattice point by using signals of the sampling coordinate positions, wherein a number of the signals is equal to the number of detection signals determined by the number-of-interpolations determination section near the sampling coordinate position corresponding to the coordinate position of the predetermined lattice point.
    • 一种用于扫描内窥镜的图像处理装置,包括:插入数量确定部,其接收来自检测器的检测信号,用于顺序地对来自被检体的返回光进行采样,并且基于内插部确定用于内插处理的检测信号的数量,基于 光栅扫描系统的像素数据中的预定格子点的坐标位置与围绕预定格点的坐标位置的检测信号的采样坐标位置之间的距离; 以及内插部,其通过使用采样坐标位置的信号来生成预定格子点的像素数据,其中,所述信号的数量等于由所述采样坐标附近的所述内插数确定部确定的检测信号的数量 对应于预定格点的坐标位置的位置。
    • 8. 发明申请
    • MEDICAL INSTRUMENT
    • 医用仪器
    • US20160100772A1
    • 2016-04-14
    • US14974424
    • 2015-12-18
    • OLYMPUS CORPORATION
    • Soichi IKUMAJun HASEGAWA
    • A61B5/06A61B1/00
    • A61B5/062A61B1/00004A61B1/0002A61B1/00055A61B5/065A61B5/6852A61B2034/2051
    • A medical instrument includes an insertion portion, first transmitting coils, second transmitting coils, a signal control unit, a position detection unit, a memory, and a position estimating unit. The signal control unit controls the first transmitting coils to transmit magnetic fields during a first predetermined period and controls the second transmitting coils to transmit magnetic fields during a second predetermined period. The position detection unit detects positions of the first transmitting coils during the first predetermined period and detects positions of the second transmitting coils during the second predetermined period. The memory stores the positions of the first transmitting coils. The position estimating unit estimates a shape of the insertion portion based on the positions of the second transmitting coils and the positions of the first transmitting coils stored in the memory.
    • 医疗器械包括插入部,第一发送线圈,第二发送线圈,信号控制部,位置检测部,存储器和位置估计部。 信号控制单元控制第一发送线圈在第一预定周期期间发送磁场,并且控制第二发送线圈在第二预定周期期间发送磁场。 位置检测单元在第一预定周期期间检测第一发射线圈的位置,并检测在第二预定周期期间第二发射线圈的位置。 存储器存储第一发送线圈的位置。 位置估计单元基于第二发送线圈的位置和存储在存储器中的第一发送线圈的位置来估计插入部分的形状。
    • 9. 发明申请
    • ENDOSCOPE SYSTEM
    • 内窥镜系统
    • US20160073927A1
    • 2016-03-17
    • US14948804
    • 2015-11-23
    • OLYMPUS CORPORATION
    • Syunya AKIMOTOJun HASEGAWA
    • A61B5/06A61B1/05A61B1/06A61B1/00
    • A61B5/066A61B1/00009A61B1/0005A61B1/05A61B1/06A61B1/0638A61B1/307A61B2034/2051G06T19/00G06T2207/10068G06T2210/41
    • The endoscope system includes: an endoscope including an insertion portion to be inserted into a subject, and an image pickup portion that picks up an image of inside of the subject; an image pickup information acquisition portion that acquires positional information of the image pickup portion; an insertion form information acquisition portion that acquires insertion form information of the insertion portion inside the subject; and a control portion that, on a stereoscopic model image that simulates a predetermined organ inside the subject, superimposes an insertion form image that is based on insertion form information that is acquired by the insertion form information acquisition portion, and based on positional information of the image pickup portion that is acquired by the image pickup information acquisition portion, also pastes an image pickup image that is picked up by the image pickup portion, and presents the resulting stereoscopic model image.
    • 内窥镜系统包括:内窥镜,其具有插入到被检体内的插入部,以及拍摄被检体内部的图像的摄像部; 摄像信息获取部分,其获取所述摄像部分的位置信息; 插入形式信息获取部,其获取被检体内的插入部的插入形式信息; 以及控制部,其在模拟对象内的预定器官的立体模型图像上叠加基于由插入形式信息获取部获取的插入形式信息的插入形式图像,并且基于所述插入形式图像的位置信息, 由图像拾取信息获取部分获取的图像拾取部分还粘贴由图像拾取部分拾取的图像拾取图像,并呈现所得到的立体模型图像。