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    • 2. 发明授权
    • Method for detecting and showing quality of a preview or stored picture in an electronic imaging device
    • 用于在电子成像装置中检测和显示预览或存储的图像的质量的方法
    • US08421898B2
    • 2013-04-16
    • US12805359
    • 2010-07-27
    • Jian-Xin PangHua-Qi ZhangLi MeiJin Wang
    • Jian-Xin PangHua-Qi ZhangLi MeiJin Wang
    • H04N5/222
    • H04N5/23293H04N5/23251
    • The present invention relates to a method for detecting and showing quality of a preview or stored picture in an electronic imaging device, which comprises the steps of determining whether the electronic imaging device is operated in a preview mode or a file mode; detecting at least four features of the preview or stored picture; determining whether each of the features of the preview or stored picture is normal or not; and displaying the preview or stored picture and at least one of four graphical indicators on a LCD screen of the electronic imaging device when it is determined that the feature corresponding to the graphical indicator is not in a normal status. Thus, a user is able to easily identify the features of the preview or stored picture in a graphical way on the LCD screen in a real time while reviewing the preview or stored picture.
    • 本发明涉及一种用于检测和显示电子成像设备中预览或存储的图像的质量的方法,其包括以下步骤:确定电子成像设备是否以预览模式或文件模式操作; 检测预览或存储的图像的至少四个特征; 确定预览或存储的图像的每个特征是否正常; 以及当确定对应于图形指示符的特征不处于正常状态时,在电子成像设备的LCD屏幕上显示预览或存储的图像以及四个图形指示器中的至少一个。 因此,用户能够在查看预览或存储的图像的同时在LCD屏幕上以图形方式容易地识别预览或存储的图像的特征。
    • 3. 发明授权
    • Electronic device
    • 电子设备
    • US08257854B2
    • 2012-09-04
    • US12844831
    • 2010-07-28
    • Hua-Qi Wang
    • Hua-Qi Wang
    • H01M2/10
    • H01M2/10
    • An electronic device includes a battery box receiving two batteries for providing power. The battery box includes a holding base defining two neighboring receiving rooms and a sliding groove and a slidable block slidably installed in the sliding groove to position the batteries in the receiving rooms. The batteries are received in the receiving rooms via passing over the sliding groove. The slidable block includes a retaining shoulder, a positioning portion protruding from one side of the retaining shoulder and used to match with the sliding groove, a stopper plate and a tab connected between the stopper plate and the retaining shoulder. The stopper plate and the tab are protruding from the other side of the retaining shoulder.
    • 电子设备包括一个接收两个用于提供电力的电池的电池盒。 电池盒包括限定两个相邻容纳室的保持基座和滑动槽,以及可滑动地安装在滑动槽中的可滑动块,以将电池定位在接收室中。 电池通过滑动槽被接收在接收室中。 可滑动块包括保持肩部,从保持台肩的一侧突出并用于与滑动槽匹配的定位部分,止动板和连接在止动板和保持肩部之间的突出部。 止动板和突片从保持台肩的另一侧突出。
    • 4. 发明授权
    • Ocular optical system simulation apparatus
    • 眼科系统仿真装置
    • US5875017A
    • 1999-02-23
    • US866159
    • 1997-05-30
    • Kazuhiko OhnumaHua QiAtsuo Minato
    • Kazuhiko OhnumaHua QiAtsuo Minato
    • A61B3/10A61F2/16A61B3/00
    • A61B3/0025G02C7/02A61F2/16
    • An apparatus for simulating a retinal image obtained when a lens is used with a human eye. The apparatus can simulate intraocular lenses, contact lenses or eyeglass lenses. When intraocular lenses are simulated, a lens system 31 comprises photographic lenses and an intraocular lens mounting section. The intraocular lens is held within one or more liquid containing sections provided in the intraocular lens mounting section. The relative position of the photographic lenses and the intraocular lens is set by making the paraxial object point distance of a front refracting face of the intraocular lens substantially equal that calculated when the intraocular lens replaces a crystalline lens of Glustrand's ocular model. When simulating contact or eyeglass lenses, a front face of a lens disposed nearest the object in lens system 31 has substantially the same radius of curvature as that of a human cornea, and a contact lens supporting base has a shape corresponding to the conjunctiva of the eye. An image of the object 30 formed by the lens system 31 thus designed is captured by a CCD camera 32 and the image is then displayed on a display unit 33.
    • 一种用于模拟当人眼使用透镜时获得的视网膜图像的装置。 该装置可以模拟眼内透镜,隐形眼镜或眼镜镜片。 当模拟眼内透镜时,透镜系统31包括摄影透镜和眼内透镜安装部。 眼内透镜被保持在设置在眼内透镜安装部中的一个或多个液体容纳部中。 摄像透镜和眼内透镜的相对位置通过使眼内透镜的前折射面的近轴对象点距离基本上等于当眼内透镜替代格罗斯特兰眼模型的晶状体时计算出的距离来设定。 当模拟接触或眼镜镜片时,透镜系统31中最接近物体的镜片的前面具有与人角膜基本相同的曲率半径,隐形眼镜支撑底座具有与 眼。 由这样设计的透镜系统31形成的物体30的图像由CCD照相机32捕获,然后将图像显示在显示单元33上。
    • 5. 发明授权
    • Aspherical spectacle lens
    • 非球面眼镜
    • US5825454A
    • 1998-10-20
    • US782286
    • 1997-01-13
    • Tetsuma YamakajiHua QiAtsuo Minato
    • Tetsuma YamakajiHua QiAtsuo Minato
    • G02C7/02
    • G02C7/02
    • An aspherical spectacle lens that has a pair of first and second refractive surfaces, one or both of which have an aspherical shape. In this lens, the first refractive surface and/or the second refractive surface is defined by the following equation: ##EQU1## where mi designates a real number which is not less than 2; n an integer which is not less than 1; X a length of a perpendicular drawn from a point, which is positioned on the aspherical surface and is located at a distance .rho. from an optical axis, to a meridional plane, which contacts the aspherical surface at a vertex thereof; C curvature at the vertex of the aspherical surface; .rho. a distance from the optical axis; k what is called a cone constant; and A.sub.mi what is called an aspherical-surface coefficient of .rho..sup.mi. Thus, there is provided an aspherical spectacle lens in which decentration aberration is small. Moreover, the design of the lens is performed by taking oblique astigmatic error and mean oblique error due to decentration into consideration. Thus, the performance degradation due to the decentration occurring in the aspherical lens can be reduced.
    • 具有一对第一和第二折射面的非球面眼镜镜片,一个或两个具有非球面形状。 在该透镜中,第一折射面和/或第二折射面由以下等式定义:ch不小于2; n是不小于1的整数; X是从位于非球面上并且位于与光轴相距一定距离处的点到达其顶点处接触非球面的子午面的点的垂直长度; C曲率在非球面的顶点; 距离光轴一定距离; k什么叫锥体常数; 和Ami称为rho mi的非球面系数。 因此,提供了偏心像差小的非球面眼镜镜片。 此外,透镜的设计是通过考虑到偏心的斜散射误差和平均倾斜误差来进行的。 因此,可以减少由于在非球面透镜中发生的偏心引起的性能下降。
    • 7. 发明申请
    • BINOCULAR VISUAL PERFORMANCE MEASURING METHOD, BINOCULAR VISUAL PERFORMANCE MEASURING PROGRAM, EYEGLASS LENS DESIGN METHOD AND EYEGLASS LENS MANUFACTURING METHOD
    • 双向视觉性能测量方法,双向视觉性能测量程序,眼镜透镜设计方法和眼镜镜头制造方法
    • US20120105609A1
    • 2012-05-03
    • US13283110
    • 2011-10-27
    • Hua QI
    • Hua QI
    • H04N13/04B23Q17/00
    • A61B3/08Y10T29/49764
    • A binocular visual performance measuring method including: a parallax image displaying step of displaying left and right parallax images at a predetermined measurement start position on a display screen when a measurement item is designated; a parallax image changing step of changing one of the left and right parallax images relative to the other of the left and right parallax images in accordance with the designated measurement item; a timing detecting step of detecting a timing when the subject viewing the left and right parallax images from a position a predetermined distance away from the display screen becomes unable to achieve fusion of the left and right parallax images; and a measurement value calculating step of calculating a measurement value of the designated measurement item based on the predetermined distance and a difference between the left and right parallax images defined at the detected timing.
    • 一种双目视觉性能测量方法,包括:视差图像显示步骤,当指定测量项目时,在显示屏幕上的预定测量开始位置显示左视差图像和右视差图像; 视差图像改变步骤,根据指定的测量项目,相对于左视差图像和右视差图像中的另一个改变左视差图像和右视差图像之一; 定时检测步骤,用于当距离显示屏幕预定距离的位置观看左右视差图像的对象变得不能实现左视差图像和右视差图像的融合时,检测定时; 以及测量值计算步骤,基于预定距离计算指定测量项目的测量值以及在检测到的定时定义的左视差图像和右视差图像之间的差值。
    • 8. 发明申请
    • Method for detecting and showing quality of a preview or stored picture in an electronic imaging device
    • 用于在电子成像装置中检测和显示预览或存储的图像的质量的方法
    • US20120026378A1
    • 2012-02-02
    • US12805359
    • 2010-07-27
    • Jian-Xin PangHua-Qi ZhangLi MeiJin Wang
    • Jian-Xin PangHua-Qi ZhangLi MeiJin Wang
    • H04N5/222
    • H04N5/23293H04N5/23251
    • The present invention relates to a method for detecting and showing quality of a preview or stored picture in an electronic imaging device, which comprises the steps of determining whether the electronic imaging device is operated in a preview mode or a file mode; detecting at least four features of the preview or stored picture; determining whether each of the features of the preview or stored picture is normal or not; and displaying the preview or stored picture and at least one of four graphical indicators on a LCD screen of the electronic imaging device when it is determined that the feature corresponding to the graphical indicator is not in a normal status. Thus, a user is able to easily identify the features of the preview or stored picture in a graphical way on the LCD screen in a real time while reviewing the preview or stored picture.
    • 本发明涉及一种用于检测和显示电子成像设备中预览或存储的图像的质量的方法,其包括以下步骤:确定电子成像设备是否以预览模式或文件模式操作; 检测预览或存储的图像的至少四个特征; 确定预览或存储的图像的每个特征是否正常; 以及当确定对应于图形指示符的特征不处于正常状态时,在电子成像设备的LCD屏幕上显示预览或存储的图像以及四个图形指示器中的至少一个。 因此,用户能够在查看预览或存储的图像的同时在LCD屏幕上以图形方式容易地识别预览或存储的图像的特征。
    • 9. 发明申请
    • ELECTRONIC DEVICE
    • 电子设备
    • US20110189537A1
    • 2011-08-04
    • US12844831
    • 2010-07-28
    • HUA-QI WANG
    • HUA-QI WANG
    • H01M2/10
    • H01M2/10
    • An electronic device includes a battery box receiving two batteries for providing power. The battery box includes a holding base defining two neighboring receiving rooms and a sliding groove and a slidable block slidably installed in the sliding groove to position the batteries in the receiving rooms. The batteries are received in the receiving rooms via passing over the sliding groove. The slidable block includes a retaining shoulder, a positioning portion protruding from one side of the retaining shoulder and used to match with the sliding groove, a stopper plate and a tab connected between the stopper plate and the retaining shoulder. The stopper plate and the tab are protruding from the other side of the retaining shoulder.
    • 电子设备包括一个接收两个用于提供电力的电池的电池盒。 电池盒包括限定两个相邻容纳室的保持基座和滑动槽,以及可滑动地安装在滑动槽中的可滑动块,以将电池定位在接收室中。 电池通过滑动槽被接收在接收室中。 可滑动块包括保持肩部,从保持台肩的一侧突出并用于与滑动槽匹配的定位部分,止动板和连接在止动板和保持肩部之间的突出部。 止动板和突片从保持台肩的另一侧突出。
    • 10. 发明授权
    • Ocular optical system simulating method and simulating apparatus
    • 眼科系统模拟方法及模拟装置
    • US06329989B1
    • 2001-12-11
    • US09415498
    • 1999-10-12
    • Hua QiIkuka Tanaka
    • Hua QiIkuka Tanaka
    • G06T1700
    • G06T15/00G09B23/28
    • There are provided an ocular optical system simulating method and a simulating apparatus which enable simulation of how things can be seen, together with fluctuation, deformation, blur, etc., occurring when a lens system such as a progressive addition lens is worn. A rotation-based retinal image, defined as an image obtained by turning an eye-ball with respect to all object points within a field of vision and by connecting images caught at the fovea, is made. The image is made by first creating an original image having a specific angular field of vision and entering the eye having a specific rotation center point. Then, a deformed original image having deformation occurring when the original image is seen through the lens system is created by using ray tracing. A PSF on the retina of an eye-model from light from the object points of the original image in an optical system composed of the lens system and a spectacle model is determined. Next, the deformed original image and the PSF of each pixel of the original image are convoluted. The obtained rotation-based retinal image is edited further to result in a motion picture image of the rotation-based retinal image. The PSF is found by selecting sampling points on an object and the PSF other than those at the sampling points is found by using approximation methods including spline interpolation.
    • 提供了一种眼睛光学系统模拟方法和模拟装置,其能够模拟当佩戴诸如渐进式附加透镜的透镜系统时发生的事情如何,以及波动,变形,模糊等。 定义为通过在视野内相对于所有物体点转动眼球并通过连接在中央凹处捕获的图像而获得的图像的旋转视网膜图像。 图像通过首先创建具有特定角度视场的原始图像并进入具有特定旋转中心点的眼睛来进行。 然后,通过使用光线跟踪产生具有通过透镜系统看到原始图像时发生变形的变形的原始图像。 确定由透镜系统和眼镜模型构成的光学系统中的来自原始图像的物体的光的眼睛模型的视网膜上的PSF。 接下来,原始图像的每个像素的变形的原始图像和PSF被卷积。 获得的基于旋转的视网膜图像被进一步编辑以产生基于旋转的视网膜图像的运动图像图像。 通过选择对象上的采样点来找到PSF,并通过使用包括样条插值的近似方法来找到采样点以外的PSF。