Parallax image display device, parallax image generation method, parallax image print

    公开(公告)号:US10171799B2

    公开(公告)日:2019-01-01

    申请号:US14081333

    申请日:2013-11-15

    Inventor: Shuji Ono

    Abstract: This parallax image display device is provided with an image acquiring unit that acquires a right-eye image and a left-eye image used for generating a parallax image enabling a stereoscopic view, an information volume distribution calculator that calculates an information volume distribution of the right-eye image and an information volume distribution of the left-eye image, and a parallax image generator that generates the parallax image from the right-eye image and the left-eye image on the basis of the information volume distribution of the right-eye image and the information volume distribution of the left-eye image.

    Imaging module that captures subject images having different characteristics and imaging device

    公开(公告)号:US10027918B2

    公开(公告)日:2018-07-17

    申请号:US15163755

    申请日:2016-05-25

    Inventor: Shuji Ono

    Abstract: The present invention relates to an imaging device including a multi-lens including a central optical system (wide-angle lens) and an annular optical system (telescopic lens) which have a common optical axis, an image sensor, and an array lens provided on the incidence surface side of the image sensor and including microlenses (pupil imaging lens). In a preferred aspect of the present invention, two images having different characteristics are generated based on a pupil image of each unit block including 3×3 light reception cells assigned to each of the microlenses of the array lens. The unit block has eight surrounding light reception cells that correspond to one of the two images, and the eight surrounding light reception cells in the unit block are configured to output RGB pixel signals in all wavelength regions necessary for generating this one image.

    LENS DEVICE
    44.
    发明申请
    LENS DEVICE 审中-公开

    公开(公告)号:US20180136437A1

    公开(公告)日:2018-05-17

    申请号:US15871905

    申请日:2018-01-15

    Inventor: Shuji Ono

    Abstract: An object of the present invention is to provide a lens device that is configured such that a first optical-system and a second optical-system are combined to be concentric and that is capable of individually adjusting the light-amount of each optical-system and individually performing focus adjustment on each optical-system. The lens device, which is configured such that the optical-systems are combined to be concentric, comprises a first stop that adjusts a light-amount of the first optical-system and a second stop that adjusts a light-amount of the second optical-system. Thereby, it is possible to adjust individually the light-amounts of the optical-systems. Further, the first optical-system is provided to be movable along the optical axis L together with the first stop, and the second optical-system is provided to be movable along the optical axis L together with the second stop. Thereby, it is possible to individually perform focus adjustment on the optical-systems.

    Image processing device and method, and imaging device
    47.
    发明授权
    Image processing device and method, and imaging device 有权
    图像处理装置及方法及成像装置

    公开(公告)号:US09277201B2

    公开(公告)日:2016-03-01

    申请号:US14499933

    申请日:2014-09-29

    Abstract: An image processing method according to the present invention acquires a first image and second image that are picked up through a single image-taking optical system, that are images after a pupil division, and that have a parallax to each other, and then performs a filtering process for each pixel of the first and second images, using first and second transform filters that correspond to the parallax for the pixel and that are of first and second transform filter groups to be respectively applied to the first and second images for the transform into third and fourth images in which the parallax amount and blur amount of the first and second images have been altered.

    Abstract translation: 根据本发明的图像处理方法获取通过单个摄像光学系统拾取的第一图像和第二图像,其是在瞳孔分割之后的图像,并且具有彼此具有视差的图像,然后执行 对于第一和第二图像的每个像素的滤波处理,使用对应于像素的视差的第一和第二变换滤波器,并且将第一和第二变换滤波器组分别应用于第一和第二图像以进行变换 其中第一和第二图像的视差量和模糊量已被改变的第三和第四图像。

    Imaging apparatus
    48.
    发明授权
    Imaging apparatus 有权
    成像设备

    公开(公告)号:US08964110B2

    公开(公告)日:2015-02-24

    申请号:US14291452

    申请日:2014-05-30

    Inventor: Shuji Ono

    Abstract: In the imaging apparatus according to an aspect of the present invention, the aperture area ratio between the plurality of regions of the multifocal lens is appropriately configured. Thereby, it is configured such that, when a plurality of images are simultaneously imaged via the plurality of regions using the illumination light source, brightness of the image of the subject at an in-focus distance corresponding to one region of the plurality of regions, the image imaged via the one region, the brightness arising from the illumination light, is substantially equal to brightness of the image of another subject at an in-focus body distance corresponding to another region, the image imaged via the other region except the one region, the brightness arising from the illumination light. Accordingly, the subject at any of the distances does not suffer excess or deficient exposure.

    Abstract translation: 在根据本发明的一个方面的成像装置中,适当地构造多焦点透镜的多个区域之间的开口面积比。 由此,通过使用该照明光源同时对多个图像进行成像,在对应于多个区域的一个区域的对焦距离处拍摄被摄体的图像的亮度, 通过一个区域成像的图像,从照明光产生的亮度基本上等于另一个被摄体在对应于另一个区域的对焦体距离处的另一个被摄体的图像的亮度,该图像经由除一个区域之外的其它区域成像 ,由照明灯产生的亮度。 因此,在任何距离处的受试者不会遭受过度或不足的暴露。

    Imaging device, distance measurement method, distance measurement program, and recording medium

    公开(公告)号:US11593958B2

    公开(公告)日:2023-02-28

    申请号:US17064580

    申请日:2020-10-06

    Inventor: Shuji Ono

    Abstract: There are provided an imaging device, a distance measurement method, a distance measurement program, and a recording medium capable of accurately measuring a distance to a subject without depending on a color of the subject.
    A bifocal imaging lens, a first pixel and a second pixel that respectively pupil-divide and selectively receive luminous flux incident through a first region of the first region and a second region having different focusing distances of the imaging lens, an image sensor having a third pixel and a fourth pixel corresponding to the second region, a first image acquisition unit (41-1) and a second image acquisition unit (41-2) that acquire a first image and a second image having asymmetric blurs from a first pixel group (22A) and a third pixel group (22C) of the image sensor, a third image acquisition unit (43-1) and a fourth image acquisition unit (43-2) that add pixel values of adjacent pixels of the first and second pixels of the image sensor and add pixel values of adjacent pixels of the third and fourth pixels to acquire a third image and a fourth image having symmetric blurs, and a distance calculation unit (45) that calculates a distance to a subject in the image based on the acquired first and third images or the acquired second and fourth images are included.

    Imaging apparatus and image processing apparatus

    公开(公告)号:US11460617B2

    公开(公告)日:2022-10-04

    申请号:US16840444

    申请日:2020-04-05

    Inventor: Shuji Ono

    Abstract: Provided are an imaging apparatus capable of acquiring an image having a small transmission wavelength shift at a plurality of wavelengths and an image processing apparatus capable of measuring a subject on the basis of an image which has a small transmission wavelength shift and which is acquired at a plurality of wavelengths. High image height rays imaged at a position of which an image height is high is incident at a large angle with respect to the optical axis. Therefore, the transmission wavelength shift increases. However, in the imaging apparatus according to the first aspect, the first optical system causes the high image height rays to be incident into the first optical filter and the second optical filter in a state where the upper ray and the lower ray are parallel. Accordingly, in the first and second optical filters, the transmission wavelength shift due to an difference in incident angle of the high image height rays is suppressed, and an image with a small transmission wavelength shift can be acquired simultaneously at a plurality of wavelengths.

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