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    • 101. 发明申请
    • EYEGLASS LENS PERIPHERY PROCESSING APPARATUS
    • EYEGLASS镜片周边加工设备
    • US20120252315A1
    • 2012-10-04
    • US13435609
    • 2012-03-30
    • Katsuhiro NATSUMEKyoji TAKEICHI
    • Katsuhiro NATSUMEKyoji TAKEICHI
    • B24B49/10
    • B24B49/10B24B9/14B24B9/148B24B51/00
    • An eyeglass lens periphery processing apparatus for processing an eyeglass lens includes: a lens shuck shaft holding the eyeglass lens; a data input unit inputting target lens shape data and layout data of an optical center of the lens with respect to the target lens shape; left and right lens selecting unit inputting a selection signal as to whether the lens held by the lens chuck shaft is a right lens or a left lens; a lens shape detecting unit detecting the lens shape; a confirming unit confirming whether the lens held by the lens chuck shaft is the correct one of the right lens and the left lens based on the detecting result of the lens shape detecting unit, the layout data and the selection signal; and a notifying unit notifying the confirming result of the confirming unit.
    • 一种用于处理眼镜镜片的眼镜镜片周边处理装置,包括:保持眼镜镜片的镜片扣环轴; 数据输入单元,相对于目标透镜形状输入目标透镜形状数据和透镜的光学中心的布局数据; 左右透镜选择单元输入关于由透镜卡盘轴保持的透镜是右透镜还是左透镜的选择信号; 检测透镜形状的透镜形状检测单元; 确认单元,基于透镜形状检测单元的检测结果,布局数据和选择信号,确认由透镜卡盘轴保持的透镜是否是右透镜和左透镜中的正确透镜; 以及通知单元,通知确认单元的确认结果。
    • 102. 发明授权
    • Fundus photographing apparatus
    • 眼底摄影设备
    • US08235528B2
    • 2012-08-07
    • US12771016
    • 2010-04-30
    • Hideo MukaiMasaaki HanebuchiYoshihiko Yamada
    • Hideo MukaiMasaaki HanebuchiYoshihiko Yamada
    • A61B3/14A61B3/10
    • A61B3/0025
    • A fundus photographing apparatus includes a first photographing unit arranged to obtain a first fundus image and including a first illumination optical system including a first light source and a scanning unit, a first photographing optical system and a wavefront compensating unit including a wavefront sensor and a wavefront compensating device, a second photographing unit arranged to obtain a second fundus image of a wide area including a scanning area by the scanning unit and including a second illumination optical system and a second photographing optical system arranged to obtain the second fundus image with a wider view angle under lower magnification than the first fundus image, a monitor, and a control unit arranged to display on the monitor the first and second fundus images, and display an indicator on the second fundus image displayed on the monitor, the indicator indicating a photographed portion of the first fundus image.
    • 眼底摄影装置包括:第一拍摄单元,被配置为获得第一眼底图像,并且包括第一照明光学系统,包括第一光源和扫描单元;第一拍摄光学系统;以及波前补偿单元,包括波前传感器和波阵面 补偿装置,第二拍摄单元,被布置成通过扫描单元获得包括扫描区域的广域的第二眼底图像,并且包括第二照明光学系统和第二拍摄光学系统,被布置为获得具有更宽视图的第二眼底图像 在比第一眼底图像低的放大率下的角度,监视器和控制单元,被布置成在监视器上显示第一和第二眼底图像,并且在显示在监视器上的第二眼底图像上显示指示符,指示器指示拍摄部分 的第一眼底像。
    • 103. 发明申请
    • EYE MEASUREMENT APPARATUS
    • 眼睛测量装置
    • US20120162606A1
    • 2012-06-28
    • US13334944
    • 2011-12-22
    • Kenji NAKAMURAMitsuhiro GONO
    • Kenji NAKAMURAMitsuhiro GONO
    • A61B3/10
    • A61B3/0008A61B3/032A61B3/036
    • An eye measurement apparatus includes: a subjective measurement optical system configured to subjectively measure an examinee's eye, the subjective measurement optical system including: a chart to be presented to the examinee's eye; and a glare light source for irradiating the examinee's eye with a glare light; and a control part configured to determine presence or absence of opacity in a light transmitting part of the examinee's eye and, when the presence of opacity is determined, to allow display of necessity for a glare test which is a subjective measurement to be performed in a state that the examinee's eye is irradiated with the glare light.
    • 眼睛测量装置包括:主观测量光学系统,被配置为主观地测量受检者的眼睛,所述主观测量光学系统包括:被呈现给受检者的眼睛的图; 以及用眩光照射被检眼的眩光光源; 以及控制部,其被配置为确定被检眼的光透射部分中是否存在不透明度,并且当确定不透明度的存在时,允许显示作为主观测量的眩光测试的必要性,所述眩光测试是在 说明受试者的眼睛被眩光照射。
    • 104. 发明申请
    • LIVING TISSUE STIMULATION CIRCUIT
    • 生活组织刺激电路
    • US20120116483A1
    • 2012-05-10
    • US13289440
    • 2011-11-04
    • Eiji YONEZAWAKenzo SHODO
    • Eiji YONEZAWAKenzo SHODO
    • A61N1/36
    • A61N1/36A61N1/36036A61N1/362
    • A living tissue stimulation circuit includes: an H-bridged circuit that includes a first series section in which a first semiconductor switch connected to a power source side and a third semiconductor switch connected to a ground side are connected to each other in series, and a second series section in which a second semiconductor switch connected to the power source side and a fourth semiconductor switch connected to the ground side are connected to each other in series, the first series section and the second series section being connected to each other in parallel; a stimulation electrode connected to a first node between the first and third semiconductor switches; a counter electrode connected to a second node between the second and fourth semiconductor switches; and a current adjusting circuit configured to determine a current value output from the stimulation electrode.
    • 生物体组织刺激电路包括:H桥接电路,其包括第一串联部分,其中连接到电源侧的第一半导体开关和连接到接地侧的第三半导体开关彼此串联连接, 第二串联部分,其中连接到电源侧的第二半导体开关和连接到接地侧的第四半导体开关彼此串联连接,第一串联部分和第二串联部分并联连接; 连接到第一和第三半导体开关之间的第一节点的刺激电极; 连接到第二和第四半导体开关之间的第二节点的对电极; 以及电流调整电路,被配置为确定从所述刺激电极输出的电流值。
    • 106. 发明申请
    • OPTOTYPE PRESENTING APPARATUS
    • OPTOTYPE显示装置
    • US20120092622A1
    • 2012-04-19
    • US13273424
    • 2011-10-14
    • Yukito HIRAYAMA
    • Yukito HIRAYAMA
    • A61B3/08
    • A61B3/032A61B3/08
    • An optotype presenting apparatus for presenting an optotype used to test a visual function of an examinee includes: an optotype presentation part configured to present the optotype in a predetermined presentation region; a control unit configured to allow a test optotype to be presented in the optotype presentation part, the test optotype including a stereoscopic vision test optotype that generates a parallax so as to be seen by the examinee as floating or sinking from a predetermined reference plane; and an optotype splitting unit configured to split the test optotype presented in the optotype presentation part into an optotype for a left eye and an optotype for a right eye to present the test optotype to right and left eyes of the examinee, wherein the test optotype includes a guide optotype for guiding the examinee to see the stereoscopic vision test optotype stereoscopically.
    • 用于呈现用于测试受检者的视觉功能的视标的视标呈现装置包括:被配置为在预定呈现区域中呈现视标的视标呈现部分; 控制单元,被配置为允许将测试视标呈现在所述视标表示部分中,所述测试视标包括产生视差的立体视觉测试视标,以便所述受检者被视为从预定参考平面浮动或下沉; 以及视标分割单元,被配置为将呈现在所述视标呈现部分中的所述测试视标划分为用于左眼的视标和用于右眼的视标,以将所述测试视标呈现给所述受检者的左眼和左眼,其中所述测试视标包括 引导视标用于引导考生立体视觉立体视觉测试。
    • 107. 发明授权
    • Eyeglass lens processing apparatus
    • 眼镜镜片加工设备
    • US08157618B2
    • 2012-04-17
    • US12344710
    • 2008-12-29
    • Ryoji Shibata
    • Ryoji Shibata
    • B24B1/00B24B7/19B24B7/30B26D7/06B26D5/08B26D3/02G06F19/00
    • B24B9/148Y10T83/0259Y10T83/6601Y10T83/8773
    • An eyeglass lens processing apparatus includes: a setting unit which sets points on an edge of a lens, where a line on a target lens shape and passing through the first and second points intersects a line on the target lens shape and passing through the third and fourth points; and a calculating unit which: obtains a first plane including a bisection point between the first and second points and perpendicular to the first line; obtains a second plane including a bisection point between the third and fourth points and perpendicular to the second line; obtains an intersection line of the first and second planes; obtains a bevel spherical surface so that a center of the bevel spherical surface is located on the intersection line and passes through a desired edge position; and obtains the bevel path on the basis of the bevel spherical surface and target lens shape data.
    • 眼镜透镜处理装置包括:设置单元,其设置在透镜的边缘上的点,其中目标透镜形状上的线穿过第一和第二点与目标透镜形状上的线相交并穿过第三和第二点 第四点; 以及计算单元,其获得在所述第一点和所述第二点之间并且垂直于所述第一线的二等分点的第一平面; 获得包括第三点和第四点之间的平分点并垂直于第二线的第二平面; 获得第一和第二平面的交点; 获得斜面球面,使得斜面球面的中心位于交叉线上并通过期望的边缘位置; 并且基于斜面球面和目标透镜形状数据获得斜面路径。
    • 108. 发明申请
    • EYEGLASS LENS PROCESSING APPARATUS
    • 眼镜镜片加工设备
    • US20120083186A1
    • 2012-04-05
    • US13248640
    • 2011-09-29
    • Ryoji SHIBATA
    • Ryoji SHIBATA
    • B24B51/00
    • B24B9/148B24B9/14B24B9/144B24B47/22B24B49/02B24B51/00
    • In an eyeglass lens processing apparatus, if a material selector selects a thermoplastic material for the lens, a control unit performs a first step and then a second step. In the first step, the control unit controls a lens rotating unit to position a lens in a plurality of lens rotation angles and controls an axis-to-axis distance changing unit to cause a roughing tool to cut into the lens up to a roughing path for each of the plurality of lens rotation angles, the lens being not rotated by the lens rotating unit when the roughing tool is cutting into the lens up to the roughing path. In the second step, the control unit controls the lens rotating unit and the axis-to-axis distance changing unit to rough the lens based on the roughing path while the lens rotating unit rotates the lens.
    • 在眼镜透镜处理装置中,如果材料选择器选择用于透镜的热塑性材料,则控制单元执行第一步骤,然后进行第二步骤。 在第一步骤中,控制单元控制透镜旋转单元以将透镜定位在多个透镜旋转角度,并且控制轴对轴距离改变单元,以使粗加工工具切入透镜直到粗略路径 对于多个透镜旋转角度中的每一个,当粗加工工具正在切割成透镜直到粗加工路径时,透镜不被透镜旋转单元旋转。 在第二步骤中,当透镜旋转单元旋转透镜时,控制单元控制透镜旋转单元和轴对轴距离改变单元,以粗糙化基于粗略路径的透镜。
    • 109. 发明申请
    • DYEING METHOD AND DYE DEPOSITION APPARATUS
    • 染色方法和染色沉积装置
    • US20120023684A1
    • 2012-02-02
    • US13191888
    • 2011-07-27
    • Minoru INUZUKAAtsushi YANO
    • Minoru INUZUKAAtsushi YANO
    • D06P5/28C23C16/48B41F16/00
    • D06P5/004B41J2/475B41M5/38221C23C14/04C23C14/048C23C14/12C23C14/28D06P5/2005D06P5/2077
    • A dyeing method of dyeing an object to be dyed comprise: a first step of placing a sublimable dye and the object to face each other apart at a predetermined distance under normal pressure and heating the sublimable dye to sublimate the sublimable dye toward the object, the distance between the sublimable dye and the object being determined at 0.1 mm or more but 10 mm or less, the heating using a laser beam to sublimate the sublimable dye so that a deposition region of the sublimable dye is a part of a to-be-dyed region of the object; a second step of applying the sublimable dye over the entire to-be-dyed region of the object by relatively moving the object with respect to a sublimation position of the sublimable dye by use of a moving unit to change over time the deposition region on the object with respect to the sublimable dye sublimated in the first step; and a third step of heating at least a part of the region of the object to which the sublimable dye is stuck in the second step by use of a heating unit to dye the object by fixing the sublimable dye stuck to the part of the region.
    • 染色待染物体的染色方法包括:将常温下预定距离放置升华染料和物体分开的第一步骤,加热可升华染料使升华染料朝向物体升华, 可升华染料和物体之间的距离在0.1mm以上至10mm以下,使用激光束进行加热,使升华性染料升华,使得可升华染料的沉积区域成为待修饰染料的一部分, 染色区域的物体; 通过使用移动单元相对于可升华染料的升华位置相对移动物体以随时间改变沉积区域的第二步骤,在物体的整个待染色区域上施加可升华染料 相对于在第一步中升华的升华性染料的物体; 以及第三步骤,通过使用加热单元,在第二步骤中加热粘附有可升华染料的物体的至少一部分区域,以通过固定粘附在该区域的一部分上的可升华染料来染色物体。
    • 110. 发明授权
    • Optotype presenting apparatus
    • 光面呈现装置
    • US08087781B2
    • 2012-01-03
    • US12232797
    • 2008-09-24
    • Yuichiro KanazawaTatefumi Oda
    • Yuichiro KanazawaTatefumi Oda
    • A61B3/02
    • A61B3/032A61B3/0033A61B3/0325A61B3/08
    • An optotype presenting apparatus, by which red and green optotypes can be visually perceived independently by right and left eyes even if red filters and/or green filters have different wavelength transmission characteristics, comprises a color display, a unit having a switch for selecting a test chart including visual acuity and red-green binocular visual performance test charts, wherein the binocular test chart includes the optotypes and is used in the test performed with the filters in front of the eyes, a memory storing color adjustment data in which at least one of color tones of the optotypes is varied with the characteristic of one of the filters, a unit for inputting a signal for selecting one of the data, and a unit controlling the display to display the selected chart and adjusting the tones by reading the selected data from the memory when the binocular test chart is selected.
    • 即使红色滤光器和/或绿色滤光片具有不同的波长透射特性,也可以由右眼和左眼独立地视觉地感知红色和绿色视标的视标呈现装置,包括彩色显示器,具有用于选择测试的开关的单元 图表包括视敏度和红绿双眼视觉性能测试图,其中双目测试图包括视标,并且用于在眼睛前方的滤光器执行的测试中,存储器存储颜色调整数据,其中至少一个 视标的色调随着滤波器之一的特性而变化,用于输入用于选择数据之一的信号的单元,以及控制显示以显示所选图表的单元,并通过从 选择双目测试图时的记忆。