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    • 1. 发明授权
    • Viewpoint position detection apparatus and method, and stereoscopic image display system
    • 视点位置检测装置和方法以及立体图像显示系统
    • US06757422B1
    • 2004-06-29
    • US09395365
    • 1999-09-14
    • Masahiro SuzukiHiroyuki YamamotoTomoshi TakikawaHideki MorishimaNaosato Taniguchi
    • Masahiro SuzukiHiroyuki YamamotoTomoshi TakikawaHideki MorishimaNaosato Taniguchi
    • G06K900
    • G06K9/0061G02B27/0093G02B27/2214G06T7/74H04N13/305H04N13/31H04N13/32H04N13/371H04N13/376H04N13/398
    • This invention has as its object to provide a viewpoint detection apparatus and method, which can assure high-speed processing, high precision, and high tracking performance with a simple arrangement while suppressing adverse influences on the human body, and a stereoscopic image display apparatus using the same. The viewpoint position detection apparatus of this invention has an image sensing unit (1) and a viewpoint detection unit (2). The image sensing unit has a visible image sensing section (11) and infrared image sensing section (12). A pupil position detection processing section (24) detects the pupil position from an infrared image, and a template generation section (23) generates templates for a visible image using the pupil position obtained from the infrared image. A pattern matching discrimination section (22) executes pattern matching of a visible image. The infrared ray irradiation time upon capturing an infrared image can be minimized, and the load on processes can be reduced since pupil position information detected from the infrared image is used upon generating templates. An image display unit (3) as a stereoscopic image display apparatus is connected to the viewpoint position detection apparatus, and viewpoint position information is supplied to the image display unit, thus constructing a stereoscopic image display system having a broad stereovision range for the observer.
    • 本发明的目的是提供一种视点检测装置和方法,其能够通过简单的布置来确保高速处理,高精度和高跟踪性能,同时抑制对人体的不利影响,并且使用立体图像显示装置 一样。 本发明的视点位置检测装置具有摄像单元(1)和视点检测单元(2)。 图像感测单元具有可见图像感测部分(11)和红外图像感测部分(12)。 瞳孔位置检测处理部分(24)从红外图像检测瞳孔位置,并且模板生成部分(23)使用从红外图像获得的瞳孔位置生成可见图像的模板。 模式匹配识别部(22)执行可视图像的模式匹配。 在捕获红外图像时的红外线照射时间可以最小化,并且由于在生成模板时使用从红外图像检测到的瞳孔位置信息,所以可以减少处理负担。 作为立体图像显示装置的图像显示单元(3)连接到视点位置检测装置,并且将视点位置信息提供给图像显示单元,从而构成具有用于观察者的宽立体视觉范围的立体图像显示系统。
    • 2. 发明授权
    • Apparatus for presenting mixed reality shared among operators
    • 提供运营商共享的混合现实的装置
    • US06522312B2
    • 2003-02-18
    • US09045993
    • 1998-03-23
    • Toshikazu OhshimaKiyohide SatoHiroyuki YamamotoMasakazu FujikiNaosato TaniguchiAkihiro Katayama
    • Toshikazu OhshimaKiyohide SatoHiroyuki YamamotoMasakazu FujikiNaosato TaniguchiAkihiro Katayama
    • G09G500
    • G06F3/011A63F13/00A63F13/25A63F2300/105A63F2300/1093A63F2300/30A63F2300/69A63F2300/8082G06F3/033G06F3/0425G06T19/006G06T2219/024
    • There is disclosed a mixed reality presentation apparatus which generates and displays a three-dimensional virtual image on a see-through display device so as to allow a plurality of players to play a multi-player game in a mixed reality environment. The apparatus has a CCD camera for detecting the mallet positions of the plurality of players, and a sensor for detecting the view point position of each player in the environment of the multi-player game. The apparatus generates a three-dimensional virtual image that represents a game result of the multi-player game that has progressed in accordance with changes in mallet position detected by the CCD camera and is viewed from the view point position of each player detected by the sensor, and outputs the generated image to the corresponding see-through display device. The apparatus determines the motion of each player by detecting infrared rays output from the corresponding mallet on the basis of an image captured by the CCD camera. The view point position detected by the sensor is corrected by specifying the marker in an image obtained by a camera attached to the head of each player, and comparing the marker position in that image with an actual marker position.
    • 公开了一种混合现实呈现装置,其在透视显示装置上生成和显示三维虚拟图像,以允许多个玩家在混合现实环境中玩多玩家游戏。 该装置具有用于检测多个玩家的槌位置的CCD照相机,以及用于检测多玩家游戏环境中的每个玩家的视点位置的传感器。 该装置生成表示根据CCD摄像机检测到的槌位置变化而进行的多玩家游戏的游戏结果的三维虚像,并且从传感器检测到的各玩家的视点位置观察 并将生成的图像输出到相应的透视显示装置。 该装置基于CCD摄像机拍摄的图像,通过检测从相应的槌输出的红外线来确定每个玩家的运动。 通过指定由安装在每个游戏者的头部的相机获得的图像中的标记,并将该图像中的标记位置与实际标记位置进行比较来校正由传感器检测的视点位置。
    • 3. 发明授权
    • Image processing apparatus with power supply/stop control
    • 具有电源/停止控制的图像处理装置
    • US09060088B2
    • 2015-06-16
    • US13767236
    • 2013-02-14
    • Hiroyuki Yamamoto
    • Hiroyuki Yamamoto
    • G06K15/00H04N1/00
    • H04N1/00891H04N1/00925H04N2201/0094
    • There is provided an image processing apparatus including an image processing section, a power source section, a power source operation section, and a controller. The controller may be configured to perform determining whether or not a state of the image processing apparatus is a special state when a power control operation is started, determining whether or not the power control operation is the special power control operation, and controlling the power source section to carry out an operation according to the power control operation when the state is not the special state, or when the state is the special state and when the power control operation is the special power control operation, but controlling the power source section not to carry out the operation when the state is the special state and when the power control operation is not the special power control operation.
    • 提供了一种包括图像处理部分,电源部分,电源操作部分和控制器的图像处理装置。 控制器可以被配置为执行在开始功率控制操作时图像处理装置的状态是否是特殊状态,确定功率控制操作是否是特殊功率控制操作,以及控制电源 部分在状态不是特殊状态时进行根据功率控制操作的操作,或者当状态是特殊状态时,以及当电力控制操作是特殊功率控制操作时,但是控制电源部不是 在状态为特殊状态时进行动作,电力控制动作不是特殊的动力控制动作。
    • 4. 发明授权
    • Attachment structure and attachment unit
    • 附件结构和附件单元
    • US09004804B2
    • 2015-04-14
    • US13500488
    • 2010-10-12
    • Hiroyuki YamamotoTomoaki Nagayama
    • Hiroyuki YamamotoTomoaki Nagayama
    • F16B21/00F16B5/12
    • F16B5/126Y10T29/53Y10T403/60Y10T403/66
    • An elastically deformable bridging piece includes an engaging protruding part between two ends of the piece, insertion of a portion of an attaching member in a direction intersecting a longitudinal direction of the bridging piece is permitted by elastically deforming the bridging piece by contacting with the engaging protruding part with the portion, and the engaging protruding part engages an engaging hole formed in the portion at an insertion terminating position by elastically returning the bridging piece. A restricting part restricting elastic deformation of the bridging piece is provided. When inserting the portion, the restricting part inclines the bridging piece to position the engaging protruding part on the obliquely downward side, and when a force in a reverse direction to the inserting direction acts on the portion located at the insertion terminating position, the restricting part restricts inclination of the bridging piece, which is reversely-oriented to the former inclination.
    • 可弹性变形的桥接件包括在件的两端之间的接合突出部分,通过使桥接件与接合突出部接触而使桥接件弹性变形,允许连接构件的一部分沿着与桥接件的纵向相交的方向插入 部分,并且接合突出部通过弹性地返回桥接件而接合形成在插入终止位置处的该部分中的接合孔。 提供限制桥接件的弹性变形的限制部件。 当插入该部分时,限制部分使桥接件倾斜以将接合突出部分定位在倾斜的下侧,并且当与插入方向相反的方向的力作用在位于插入终止位置的部分时,限制部分 限制桥接件的倾斜度,这反过来倾向于前者的倾斜度。
    • 5. 发明授权
    • Tomography apparatus and tomogram correction processing method
    • 断层扫描仪和断层图像校正处理方法
    • US08970849B2
    • 2015-03-03
    • US13375259
    • 2010-06-02
    • Yukio SakagawaMakoto SatoHiroyuki Yamamoto
    • Yukio SakagawaMakoto SatoHiroyuki Yamamoto
    • G01B11/02A61B3/10
    • A61B3/102
    • This invention realizes accurate positional offset correction between a plurality of tomograms captured by using a tomography apparatus. The invention is a tomography apparatus which corrects the positional offsets between a plurality of two-dimensional tomograms constituting a three-dimensional tomogram. This apparatus includes a tomogram analysis unit (120) which extracts feature amounts representing the tissue of a measurement target, a tomogram selection unit (140) which selects a standard two-dimensional tomogram from the plurality of two-dimensional tomograms based on the feature amounts, and a tomogram position correction unit (150) which calculates the positional offset amount between the nth two-dimensional tomogram adjacent to the standard two-dimensional tomogram and the (n−1)th two-dimensional tomogram.
    • 本发明实现了通过使用断层摄影装置捕获的多个断层图像之间的精确的位置偏移校正。 本发明是校正构成三维断层图像的多个二维断层图像之间的位置偏移的断层摄影装置。 该装置包括提取表示测定对象的组织的特征量的断层图像分析部(120),根据特征量从多个二维断层图中选择标准的二维断层图像的断层图像选择部(140) 以及断层图像位置校正单元,其计算与标准二维断层图像相邻的第n个二维断层图像与第(n-1)个二维断层图像之间的位置偏移量。
    • 7. 发明授权
    • Image forming apparatus and driver
    • 图像形成装置和驱动器
    • US08737905B2
    • 2014-05-27
    • US12731246
    • 2010-03-25
    • Hiroyuki Yamamoto
    • Hiroyuki Yamamoto
    • G03G15/00B65H85/00
    • G03G15/234G03G2215/0141
    • An image forming apparatus and a driver for the image forming apparatus are provided. The image forming apparatus includes: a first communication section configured to receive print data; a printing section configured to perform a duplex printing including printing N sheets on first sides thereof and subsequently printing M sheets on second sides thereof, wherein M is equal to or smaller than N; a setting section configured to set the value of N; and a control section configured to control the printing section to perform the duplex printing in accordance with the value of N set by the setting section. The value of N may be set based on a communication speed of the print data when acquired by the acquisition section.
    • 提供了一种用于图像形成装置的图像形成装置和驱动器。 图像形成装置包括:第一通信部,被配置为接收打印数据; 打印部,被配置为执行双面打印,包括在其第一面上印刷N张片,并且随后在其第二面上打印M张,其中M等于或小于N; 设置部,其被配置为设定N的值; 以及控制部,其被配置为根据由所述设置部设置的N的值来控制所述打印部执行所述双面打印。 可以基于由获取部获取的打印数据的通信速度来设定N的值。