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    • 35. 发明申请
    • DISPLAY DEVICE AND BARRIER DEVICE
    • 显示设备和障碍物设备
    • US20120268672A1
    • 2012-10-25
    • US13441662
    • 2012-04-06
    • Sho SakamotoYuichi InoueKenichi Takahashi
    • Sho SakamotoYuichi InoueKenichi Takahashi
    • G02F1/1343G02F1/1335
    • G02B27/2214G02F1/1323G02F1/133707G02F1/13471H04N13/315
    • A barrier device includes: liquid crystal barriers extending in a first direction and disposed away from a display plane of a display section that displays an image. The liquid crystal barriers include a liquid crystal layer and sub-electrodes and allow light to transmit therethrough and block the light. The liquid crystal barriers structure at least one group of the liquid crystal barriers. The sub-electrodes, belonging to a first liquid crystal barrier of a pair of the liquid crystal barriers, adjoin, in a second direction, the sub-electrodes belonging to a second liquid crystal barrier in the pair of the liquid crystal barriers. The pair of the liquid crystal barriers are adjacent to each other in the at least one group of the liquid crystal barriers, and the second direction is different from both of a vertical direction and a horizontal direction within the display plane of the display section.
    • 阻挡装置包括:在第一方向上延伸并远离显示图像的显示部分的显示平面放置的液晶屏障。 液晶屏障包括液晶层和子电极,并允许光透射并阻挡光。 液晶屏障结构至少有一组液晶屏障。 属于一对液晶屏障的第一液晶屏障的子电极在第二方向上邻接在一对液晶屏障中属于第二液晶屏障的子电极。 一对液晶屏障在至少一组液晶屏障中彼此相邻,并且第二方向与显示部分的显示面内的垂直方向和水平方向不同。
    • 36. 发明授权
    • Eye examination apparatus, method for manufacturing spectacle lens, spectacle lens, method for manufacturing multifocal eyeglasses, and multifocal eyeglasses
    • 眼科检查仪器,眼镜镜片制造方法,眼镜镜片,多焦点眼镜制造方法及多焦点眼镜
    • US08262225B2
    • 2012-09-11
    • US13018541
    • 2011-02-01
    • Yasunori UenoKenichi TakahashiNorikazu Hamanaka
    • Yasunori UenoKenichi TakahashiNorikazu Hamanaka
    • A61B3/02A61B3/00
    • A61B3/1035A61B3/103
    • An eye examination apparatus includes an accommodation power acquisition unit, a corrected accommodation power calculation unit, a drive unit and an accommodative microfluctuation measurement unit. The accommodation power acquisition unit acquires an accommodation power which is determined from a difference between a near point and a distant point of an examined eye. The corrected accommodation power calculation unit calculates an integrated value of the accommodation power and a correction coefficient. The drive unit drives a vision target in a direction of an optical axis of the examined eye. The accommodative microfluctuation measurement unit controls the drive unit to cause the vision target to be arranged onto a corrected accommodation position corresponding to the integrated value, such that the accommodative microfluctuation measurement unit measures an eye accommodation function based on a frequency of appearance of a high frequency component representative of ciliary body accommodative microfluctuation.
    • 眼睛检查装置包括调节电力获取单元,校正调节力计算单元,驱动单元和调节微调测量单元。 调节力获取单元获取由检查眼睛的近点和远点之间的差确定的调节力。 校正调节力计算单元计算调节力和校正系数的积分值。 驱动单元沿被检眼的光轴的方向驱动视觉目标。 调节微量测量单元控制驱动单元以使视觉目标被布置在对应于积分值的校正的调节位置上,使得调节微调测量单元基于高频出现的频率来测量眼睛调节功能 代表睫状体调节性微血管的成分。
    • 39. 发明申请
    • EYE EXAMINATION APPARATUS, METHOD FOR MANUFACTURING SPECTACLE LENS, SPECTACLE LENS, METHOD FOR MANUFACTURING MULTIFOCAL EYEGLASSES, AND MULTIFOCAL EYEGLASSES
    • 眼睛检查装置,用于制造眼镜片的镜片,镜片镜片,制造多镜片眼镜的方法和多眼镜片
    • US20110187996A1
    • 2011-08-04
    • US13018541
    • 2011-02-01
    • Yasunori UenoKenichi TakahashiNorikazu Hamanaka
    • Yasunori UenoKenichi TakahashiNorikazu Hamanaka
    • A61B3/09G02C7/06
    • A61B3/1035A61B3/103
    • An eye examination apparatus includes an accommodation power acquisition unit, a corrected accommodation power calculation unit, a drive unit and an accommodative microfluctuation measurement unit. The accommodation power acquisition unit acquires an accommodation power which is determined from a difference between a near point and a distant point of an examined eye. The corrected accommodation power calculation unit calculates an integrated value of the accommodation power and a correction coefficient. The drive unit drives a vision target in a direction of an optical axis of the examined eye. The accommodative microfluctuation measurement unit controls the drive unit to cause the vision target to be arranged onto a corrected accommodation position corresponding to the integrated value, such that the accommodative microfluctuation measurement unit measures an eye accommodation function based on a frequency of appearance of a high frequency component representative of ciliary body accommodative microfluctuation.
    • 眼睛检查装置包括调节电力获取单元,校正调节力计算单元,驱动单元和调节微调测量单元。 调节力获取单元获取由检查眼睛的近点和远点之间的差确定的调节力。 校正调节力计算单元计算调节力和校正系数的积分值。 驱动单元沿被检眼的光轴的方向驱动视觉目标。 调节微量测量单元控制驱动单元以使视觉目标被布置在对应于积分值的校正调节位置上,使得调节微调测量单元基于高频出现的频率来测量眼睛调节功能 代表睫状体调节性微血管的成分。
    • 40. 发明授权
    • Display device, display controlling method, and program
    • 显示设备,显示控制方法和程序
    • US07933069B2
    • 2011-04-26
    • US11913296
    • 2006-07-11
    • Takeshi MorozumiKenichi TakahashiHiroki Naito
    • Takeshi MorozumiKenichi TakahashiHiroki Naito
    • G02B27/22
    • G02B27/2214G02B3/14G02B26/005G02B27/225H04N13/305
    • A display device which is capable of generating more parallaxes without reducing resolution and an image quality, a display controlling method, and a program are provided. An aperture ratio of a light source is set as 1/N, and liquid lenses are disposed at distances of focal lengths of the first liquid lens and the second liquid lens from the light source, respectively. A position controlling portion changes a position of a nonpolar liquid by a size of each of luminescent pixels as represented by the first liquid lens and the second liquid lens, which results in that emitted lights from respective luminescent pixels pass through either the first liquid lens or the second liquid lens to be emitted in directions different from one another as shown in the form of lights. The present embodiments can be applied to a parallax image displaying device.
    • 提供能够产生更多视差而不降低分辨率和图像质量的显示装置,显示控制方法和程序。 光源的开口率被设定为1 / N,液晶透镜分别设置在距第一液晶透镜和第二液体透镜的焦距的距离处。 位置控制部分将非极性液体的位置改变为由第一液体透镜和第二液体透镜表示的每个发光像素的尺寸,这导致来自各个发光像素的发射光通过第一液体透镜或 第二液体透镜以光的形式相互不同的方向发射。 本实施例可以应用于视差图像显示装置。