会员体验
专利管家(专利管理)
工作空间(专利管理)
风险监控(情报监控)
数据分析(专利分析)
侵权分析(诉讼无效)
联系我们
交流群
官方交流:
QQ群: 891211   
微信请扫码    >>>
现在联系顾问~
热词
    • 3. 发明授权
    • Light projection apparatus and lighting apparatus
    • 光投射装置和照明装置
    • US08899760B2
    • 2014-12-02
    • US12867576
    • 2009-02-16
    • Ryo Kawamura
    • Ryo Kawamura
    • G03B21/26H04N9/31
    • H04N9/3185H04N9/3194H04N9/3197
    • A light projection apparatus that projects light onto an arbitrary space and an object set in the space, comprising: projection light data generating means for generating projection light data for specifying the projection light; projection range setting means for setting a projection range onto which the light is projected and a non-projection range onto which the light is not projected in accordance with an operation of a user; projection data correcting means for correcting the projection light data so as to project the light onto the projection range set by the projection range setting means; projection light correction data drawing means for performing drawing processing for projection light correction data obtained by correcting the projection light data by the projection data correcting means; and light projecting means for projecting the light by using projection light drawing data generated by the projection light data drawing means. Accordingly, by a simple operation, the light can be projected with the shape desired by the user.
    • 一种将光投射到任意空间上的光投影装置和设置在该空间中的物体,包括:投影光数据产生装置,用于产生用于指定投影光的投射光数据; 投影范围设定装置,用于根据用户的操作设置投影光的投影范围和不投射光的非投影范围; 投影数据校正装置,用于校正投影光数据,以便将光投影到由投影范围设置装置设置的投影范围上; 投影光校正数据绘制装置,用于对由投影数据校正装置校正投影光数据而获得的投影光校正数据进行绘制处理; 以及光投射装置,用于通过使用由投影光数据绘制装置产生的投影光绘制数据投射光。 因此,通过简单的操作,能够以使用者期望的形状投射光。
    • 4. 发明授权
    • Lighting apparatus
    • 照明设备
    • US08730320B2
    • 2014-05-20
    • US12682855
    • 2008-10-09
    • Ryo Kawamura
    • Ryo Kawamura
    • H04N7/00
    • G03B15/02G03B21/006G03B21/147H04N9/3147H04N9/3185
    • Irradiation light LA and irradiation light LB, which are to be projected toward an irradiation target object from a plurality of irradiation light projection units, respectively, are corrected so as to be ached with outlines of the irradiation target object, which are viewed individually from the irradiation light projection units. In such a way, a surface of the irradiation target object is coated with irradiation light LA′ and irradiation light LB′, which are narrower in range than the irradiation light LA and the irradiation light LA. In such a way, the irradiation target object having an arbitrary shape is coated with the plural pieces of irradiation light with high accuracy.
    • 从多个照射光投影单元分别向照射对象物体投影的照射光LA和照射光LB被校正,以便与从该照射光投射单元分别观察到的照射目标物体的轮廓相冲突 照射光投影单元。 以这种方式,照射目标物体的表面涂覆有比照射光LA和照射光LA更窄的照射光LA'和照射光LB'。 以这种方式,具有任意形状的照射目标物体以高精度涂覆有多束照射光。
    • 5. 发明授权
    • Image display apparatus and image distortion correction method of the same
    • 图像显示装置和图像失真校正方法相同
    • US08303120B2
    • 2012-11-06
    • US12159125
    • 2007-02-21
    • Hiroshi HoshinoRyo KawamuraAtsuyuki Yamamoto
    • Hiroshi HoshinoRyo KawamuraAtsuyuki Yamamoto
    • G03B21/14
    • H04N5/74
    • An image display apparatus includes a projector receiving an image signal and projecting image light and a screen including a projection plane of arbitrary shape. The projector and screen are connected with link mechanisms and link mechanisms. The relative position and posture between the projector and the screen are automatically or manually changeable. The relative position and posture between the projector and the screen are measured, and correction parameters for correcting distortion of image light projected from the projector onto the screen are calculated from the previously set viewing position of the viewer and the shape of the projection plane of the projector. Based on the calculated correction parameters, the image signal inputted into the projector is subjected to distortion correction processing. It is therefore possible to allow the viewer to see a clear image even if the position of the screen is changed.
    • 图像显示装置包括接收图像信号并投影图像光的投影仪和包括任意形状的投影平面的屏幕。 投影机和屏幕与链接机构和链接机构相连。 投影机和屏幕之间的相对位置和姿态可自动或手动更改。 测量投影仪和屏幕之间的相对位置和姿势,并且从先前设置的观察者的观看位置和投影仪的投影平面的形状计算用于校正从投影仪投射到屏幕上的图像光的失真的校正参数 投影机。 基于计算的校正参数,输入到投影仪的图像信号进行失真校正处理。 因此,即使屏幕的位置改变,也可以让观看者看到清晰的图像。
    • 6. 发明授权
    • Feature pattern recognition system, method, and program
    • 特征模式识别系统,方法和程序
    • US08244474B2
    • 2012-08-14
    • US11658130
    • 2005-08-02
    • Yasuo MatsuyamaRyo KawamuraKeita Shimoda
    • Yasuo MatsuyamaRyo KawamuraKeita Shimoda
    • G01N33/50G01N33/48
    • G06F19/22
    • A feature pattern recognition system, method, and program capable of recognizing feature pattern with a high accuracy are provided. Discrete symbols (nucleotide symbols or the like) constituting a to-be-recognized sequence (a DNA sequence or the like) are converted to numerals by using symbol frequencies that are obtained according to sequence positions or types of the discrete symbols to generates test data or a test data matrix Xtest, a matrix calculation (Ytest=WpromXtest or the like) of multiplying a separation matrix (Wprom or the like) obtained by an independent component analysis or a principal component analysis with the test data or the test data matrix Xtest is performed, separation data or a separation data matrix Ytest is obtained, and it is decided in which side of a threshold exists a feature decision element (elements of first row or the like) of the Ytest, so that it is decided whether or not the feature pattern (a promoter or the like) exists in the sequence by using a feature decision element (multiple rows of elements may be used).
    • 提供了能够高精度地识别特征图案的特征模式识别系统,方法和程序。 通过使用根据离散符号的序列位置或类型获得的符号频率将构成待认可序列(DNA序列等)的离散符号(核苷酸符号等)转换为数字,以产生测试数据 或测试数据矩阵Xtest,将通过独立分量分析或主成分分析获得的分离矩阵(Wprom等)与测试数据或测试数据矩阵Xtest相乘的矩阵计算(Ytest = WpromXtest等) 执行分离数据或分离数据矩阵Ytest,并且确定阈值的哪一侧存在Ytest的特征决定元素(第一行的元素等),从而确定是否 通过使用特征判定元素(可以使用多行元素),在序列中存在特征图案(启动子等)。
    • 7. 发明申请
    • OPHTHALMIC APPARATUS AND HESS TEST APPARATUS
    • 眼科仪器和HESS测试仪器
    • US20120140181A1
    • 2012-06-07
    • US13379845
    • 2010-06-07
    • Hiroko KoiwaRyo Kawamura
    • Hiroko KoiwaRyo Kawamura
    • A61B3/02
    • A61B3/0325A61B3/113A61B3/12
    • An ophthalmic apparatus includes: a screen; a examination controller; a first image projection unit projecting a target image; a second image projection unit projecting a pointer image; a mirror reflecting the projections of the first and second image projection units to project the same onto the screen; and a pointer operation input unit through which the pointer position is inputted. The examination controller includes: a first image generation unit generating a target image; an image correction unit correcting the target image so that the target image does not look distorted on the screen; a calculation storage unit calculating the position of the pointer according to the input through the pointer operation input unit and storing the calculated position; a second image generation unit generating the image of the pointer; and an output unit presenting or outputting the target image and the position of the pointer.
    • 一种眼科装置,包括:屏幕; 检查控制员 投影目标图像的第一图像投影单元; 投影指针图像的第二图像投影单元; 反射第一和第二图像投影单元的投影以将其投影到屏幕上的反射镜; 以及指针操作输入单元,通过该指针输入单元输入指针位置。 检查控制器包括:产生目标图像的第一图像生成单元; 图像校正单元,校正所述目标图像,使得所述目标图像在所述屏幕上看起来不失真; 计算存储单元,根据通过指针操作输入单元的输入计算指针的位置,并存储计算出的位置; 产生指针的图像的第二图像生成单元; 以及呈现或输出目标图像和指示器的位置的输出单元。
    • 9. 发明申请
    • MULTIFUNCTIONAL OPHTHALMIC TEST DEVICE
    • 多功能眼科测试装置
    • US20110205491A1
    • 2011-08-25
    • US13127160
    • 2009-10-14
    • Hiroko KoiwaRyo Kawamura
    • Hiroko KoiwaRyo Kawamura
    • A61B3/14A61B3/10
    • A61B3/18A61B3/024A61B3/113
    • A configuration is adopted, which includes: a shallow-bottom hemispherical screen and a deep-bottom hemispherical screen, which are different in depth from each other. The deep-bottom hemispherical screen belongs to an entirety of a hemispherical screen composed of the shallow-bottom hemispherical screen and a peripheral edge portion of the hemispherical screen. In accordance with a type of an implemented ophthalmic test, a multifunctional ophthalmic test device drives the deep-bottom hemispherical screen or the shallow-bottom hemispherical screen so that either of the deep-bottom hemispherical screen and the shallow-bottom hemispherical screen can be located at a position onto which an ophthalmic test image is projected by a projector. In this state, the projector projects the ophthalmic test image onto either of the deep-bottom hemispherical screen and the shallow-bottom hemispherical screen. In such a way, a multifunctional ophthalmic test device is provided, which is capable of performing various types of ophthalmic tests by using a hemispherical screen.
    • 采用了深浅不一的浅底半球形屏幕和深底半球形屏幕的结构。 深底半球形屏幕属于由浅底半球形屏幕和半球形屏幕的外围边缘部分组成的半球形屏幕的整体。 根据实施的眼科检查的类型,多功能眼科检查装置驱动深底半球形屏幕或浅底半球形屏幕,使得深底半球形屏幕和浅底半球形屏幕中的任一个可以位于 在投影仪投影眼科检查图像的位置。 在这种状态下,投影仪将眼科测试图像投影到深底半球形屏幕和浅底半球形屏幕中。 以这种方式,提供了一种能够通过使用半球形屏幕进行各种眼科检查的多功能眼科检查装置。