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    • 2. 发明授权
    • Image photographing device and method for three-dimensional measurement
    • 图像拍摄装置和三维测量方法
    • US09182220B2
    • 2015-11-10
    • US13256543
    • 2010-03-15
    • Nobuo KochiTakuya Moriyama
    • Nobuo KochiTakuya Moriyama
    • H04N13/02G01B11/24
    • G01B11/24G01B2210/52H04N13/20
    • An image photographing device for three-dimensional measurement sequentially photographs a measuring object in an overlapping manner by a single camera. The image photographing device for three-dimensional measurement photographs the measuring object with marks having self-other identifiable identification codes, extracts the marks from a photographed image, identifies the identification codes of the marks, defines an area of the measuring object in the photographed image into photographed areas surrounded by the marks, counts a number of photographing times of each of the photographed areas which are involved in different photographed images, groups the photographed areas in response to the number of photographing times, inputs positions of the marks in a coordinate space of a photographing range image of the measuring object, connects the positions of the marks input in the photographing range image such that mark symbols of the marks surrounding the photographed areas correspond to each other to match the photographed areas into the photographing range image, and indicates the photographed areas matched into the photographing range image.
    • 用于三维测量的图像拍摄装置通过单个相机以重叠的方式顺序拍摄测量对象。 用于三维测量的图像拍摄装置用具有自身可识别识别码的标记拍摄测量对象,从拍摄图像中提取标记,识别标记的识别码,定义拍摄图像中的测量对象的区域 在由标记包围的拍摄区域中,对涉及不同拍摄图像的每个拍摄区域的拍摄次数进行计数,根据拍摄次数对拍摄区域进行分组,将标记的位置输入到坐标空间 测量对象的拍摄范围图像连接摄像范围图像中输入的标记的位置,使得拍摄区域周围的标记的标记符号彼此对应,以将拍摄区域匹配到拍摄范围图像中,并且指示 拍摄区域与拍摄范围相匹配 图片。
    • 3. 发明申请
    • IMAGE PHOTOGRAPHING DEVICE AND METHOD FOR THREE-DIMENSIONAL MEASUREMENT
    • 图像摄影装置和三维测量方法
    • US20120127279A1
    • 2012-05-24
    • US13256543
    • 2010-03-15
    • Nobuo KochiTakuya Moriyama
    • Nobuo KochiTakuya Moriyama
    • H04N13/02
    • G01B11/24G01B2210/52H04N13/20
    • An image photographing device for three-dimensional measurement is provided that enables efficient photographing with just sufficient images in a case that a photographer uses a single camera to photograph while moving. An image photographing device 1 for three-dimensional measurement sequentially photographs a measuring object in an overlapping manner by a single camera. The image photographing device 1 for three-dimensional measurement photographs the measuring object 2 with marks having self-other identifiable identification codes, extracts the marks from a photographed image, identifies the identification codes of the marks, defines an area of the measuring object 2 in the photographed image into photographed areas surrounded by the marks, counts a number of photographing times of each of the photographed areas which are involved in different photographed images, groups the photographed areas in response to the number of photographing times, inputs positions of the marks in a coordinate space of a photographing range image of the measuring object 2, connects the positions of the marks input in the photographing range image such that mark symbols of the marks surrounding the photographed areas correspond to each other to match the photographed areas into the photographing range image, and indicates the photographed areas matched into the photographing range image.
    • 提供一种用于三维测量的图像拍摄装置,其在拍摄者使用单个相机在移动时拍摄的情况下能够仅利用足够的图像进行拍摄。 用于三维测量的图像拍摄装置1通过单个相机以重叠的方式顺序拍摄测量对象。 用于三维测量的图像拍摄装置1用具有自身可识别识别码的标记拍摄测量对象2,从拍摄图像中提取标记,识别标记的识别码,将测量对象2的区域定义在 拍摄图像到由标记包围的拍摄区域中,对涉及不同拍摄图像的每个拍摄区域的拍摄次数进行计数,对拍摄区域进行响应于拍摄次数的组合,将标记的位置输入 测量对象2的拍摄范围图像的坐标空间连接在拍摄范围图像中输入的标记的位置,使得拍摄区域周围的标记的标记符号彼此对应以将拍摄区域匹配成拍摄范围 图像,并指示拍摄区域与照相机匹配 g范围图像。
    • 5. 发明申请
    • Eye characteristic measuring apparatus
    • 眼睛特征测量仪器
    • US20050046793A1
    • 2005-03-03
    • US10498229
    • 2002-12-10
    • Yoko HiroharaTakuya Moriyama
    • Yoko HiroharaTakuya Moriyama
    • A61B3/103A61B3/00
    • A61B3/1015
    • An eye characteristic measuring apparatus can effectively and properly measure and display wavefront aberration of an eye regardless of the eye state. A first illumination optical system (200A) illuminates a small area on a retina of the eye by a first light flux from a first light source unit (100). A first reception light optical system (300A) leads a part of light flux reflected from the retina (61) to a first light reception unit (510) via a first conversion member (400) for converting the reflected light flux into at least 17 beams. A measurement data judgment unit, for example, judges whether the measurement data is appropriate for calculating the wavefront aberration according to a first signal from the first light reception unit (510). For example, when the measurement data judgment unit judges that the measurement data is not appropriate, a first correction unit causes to display a check correction screen which will be detailed later and corrects the data into appropriate measurement data. Furthermore, according to the measurement data judged to be appropriate or the measurement data which has been corrected by the first correction unit (603), a calculation unit calculates the wavefront aberration of the eye (60) as optical characteristic. Moreover, a measurement result judgement unit for example, judges whether the wavefront aberration calculated by the calculation unit is appropriate. Moreover, for example, when the measurement result judgment unit judges that the measurement result is not appropriate, a second correction unit (607) causes to display the check correction screen and correct the data into appropriate measurement data.
    • 眼睛特征测量装置可以有效且适当地测量和显示眼睛的波前像差,而不管眼睛状态如何。 第一照明光学系统(200A)通过来自第一光源单元(100)的第一光束照射眼睛的视网膜上的小区域。 第一接收光学系统(300A)经由第一转换构件(400)将从视网膜(61)反射的光束的一部分引导到第一光接收单元(510),用于将反射光通量转换成至少17个光束 。 例如,测量数据判断单元根据来自第一光接收单元(510)的第一信号判断测量数据是否适合于计算波前像差。 例如,当测量数据判断单元判定测量数据不合适时,第一校正单元使得显示稍后将被详细描述的校验校正画面,并将数据校正为适当的测量数据。 此外,根据判断为适当的测量数据或由第一校正单元(603)校正的测量数据,计算单元将眼睛(60)的波前像差计算为光学特性。 此外,例如,测量结果判断单元判断由计算单元计算的波前像差是否合适。 此外,例如,当测量结果判断单元判定测量结果不合适时,第二校正单元(607)使得显示校验校正画面并将数据校正为适当的测量数据。
    • 8. 发明授权
    • Retinal disease analyzer
    • 视网膜疾病分析仪
    • US6053865A
    • 2000-04-25
    • US9769
    • 1998-01-20
    • Akihiro SugiyamaTakuya MoriyamaHiroshi Ichiki
    • Akihiro SugiyamaTakuya MoriyamaHiroshi Ichiki
    • A61B3/024A61B3/12A61B3/14G06F17/00G06T7/00A61B5/00
    • G06T7/0012
    • A retinal disease analyzer processes data obtained by processing a color retinal image and measured visual field data provided by a perimeter to detect the condition of the optic disc and defects in the nerve fiber bundles for the clinical analysis of the condition of the optic disc and the defects in the nerve fiber bundles, and combines detected information on a fundus coordinate system taking into consideration the arrangement of the nerve fiber bundles for the comprehensive analysis of the condition and the degree of progress of glaucoma. The detected information is analyzed on the basis of the distribution pattern of the nerve fiber bundles or the corresponding fundus coordinate system to integrate all the data for analysis. The condition and the degree of progress of glaucoma can be determined on the basis of the integrated data.
    • 视网膜疾病分析仪处理通过处理彩色视网膜图像和由周边提供的测量视野数据获得的数据,以检测视盘的状况和神经纤维束中的缺陷,用于临床分析视盘和 考虑神经纤维束的布置,综合分析青光眼的状况和进展程度,结合眼底坐标系的检测信息。 根据神经纤维束或相应的眼底坐标系的分布模式分析检测到的信息,以整合所有数据进行分析。 青光眼的状况和进展程度可以根据综合数据确定。