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    • 2. 发明授权
    • Diffraction-type multifocal ophthalmic lens and manufacturing method thereof
    • 衍射型多焦点眼镜片及其制造方法
    • US09563070B2
    • 2017-02-07
    • US14377029
    • 2012-02-09
    • Ichiro AndoHiroaki SuzukiAtsushi Kobayashi
    • Ichiro AndoHiroaki SuzukiAtsushi Kobayashi
    • G02C7/04G02C7/06A61F2/16G02B3/08G02B27/42
    • G02C7/06A61F2/1618A61F2/1654G02B3/08G02B27/4216G02C7/041G02C7/044G02C2202/20
    • Provided is a diffraction-type multifocal ophthalmic lens for which halos are reduced. Also provided is a diffraction-type multifocal ophthalmic lens having three or more focal points, which is implemented on the basis of the discovery that the diffraction-type multifocal ophthalmic lens has a characteristic whereby multiple focal points can be generated in the intermediate region as well as the near and far regions. Also provided is a method for manufacturing a diffraction-type multifocal ophthalmic lens which provides a simple design and manufacturing method by means of a simple diffraction structure and by replacing a cumbersome computer simulation with a simple method. This diffraction-type multifocal ophthalmic lens has a diffraction structure (20) where a plurality of diffraction zones are formed concentrically on the lens (10), and an equal-pitch region is provided where pitches of at least two zones among the diffraction zones are made equal.
    • 提供了一种衍射型多焦点眼科镜片,其中光晕被减少。 还提供了具有三个或更多个焦点的衍射型多焦点眼科镜片,其基于以下发现来实现:衍射型多焦点眼镜片具有其中在中间区域中可以产生多个焦点的特征 作为近,远的地区。 还提供了一种制造衍射型多焦点眼科镜片的方法,其通过简单的衍射结构提供简单的设计和制造方法,并且通过简单的方法代替繁琐的计算机模拟。 该衍射型多焦点眼镜片具有衍射结构(20),其中在透镜(10)上同心地形成多个衍射区域,并且设置等间距区域,其中衍射区域中至少两个区域的间距为 平等
    • 5. 发明申请
    • DIFFRACTION-TYPE MULTIFOCAL OPHTHALMIC LENS AND MANUFACTURING METHOD THEREOF
    • 衍射型多功能眼镜镜片及其制造方法
    • US20140347624A1
    • 2014-11-27
    • US14377029
    • 2012-02-09
    • Ichiro AndoHiroaki SuzukiAtsushi Kobayashi
    • Ichiro AndoHiroaki SuzukiAtsushi Kobayashi
    • G02C7/06A61F2/16G02C7/04
    • G02C7/06A61F2/1618A61F2/1654G02B3/08G02B27/4216G02C7/041G02C7/044G02C2202/20
    • Provided is a diffraction-type multifocal ophthalmic lens for which halos are reduced. Also provided is a diffraction-type multifocal ophthalmic lens having three or more focal points, which is implemented on the basis of the discovery that the diffraction-type multifocal ophthalmic lens has a characteristic whereby multiple focal points can be generated in the intermediate region as well as the near and far regions. Also provided is a method for manufacturing a diffraction-type multifocal ophthalmic lens which provides a simple design and manufacturing method by means of a simple diffraction structure and by replacing a cumbersome computer simulation with a simple method. This diffraction-type multifocal ophthalmic lens has a diffraction structure (20) where a plurality of diffraction zones are formed concentrically on the lens (10), and an equal-pitch region is provided where pitches of at least two zones among the diffraction zones are made equal.
    • 提供了一种衍射型多焦点眼科镜片,其中光晕被减少。 还提供了具有三个或更多个焦点的衍射型多焦点眼科镜片,其基于以下发现来实现:衍射型多焦点眼镜片具有其中在中间区域中可以产生多个焦点的特征 作为近,远的地区。 还提供了一种制造衍射型多焦点眼科镜片的方法,其通过简单的衍射结构提供简单的设计和制造方法,并且通过简单的方法代替繁琐的计算机模拟。 该衍射型多焦点眼镜片具有衍射结构(20),其中在透镜(10)上同心地形成多个衍射区域,并且设置等间距区域,其中衍射区域中至少两个区域的间距为 平等
    • 7. 发明授权
    • Intraocular lens and manufacturing method thereof
    • 人工晶状体及其制造方法
    • US08337552B2
    • 2012-12-25
    • US13001484
    • 2008-07-15
    • Atsushi KobayashiKatsunori YamadaHiroaki Suzuki
    • Atsushi KobayashiKatsunori YamadaHiroaki Suzuki
    • A61F2/16
    • A61F2/1613A61F2002/009A61F2002/1681B29C33/40B29D11/00326B29D11/023B29L2011/0016
    • An intraocular lens adapted for deployment within a lens capsule. At least part of a lens surface of the intraocular lens constitutes a cell inducing region in which are directly formed a multitude of microgrooves. The microgrooves take a form of minute linear grooves and lands of depth dimension between 0.01 and 1.0 μm and width dimension between 0.1 and 2.0 μm extending with prescribed length in a circumferential direction on the lens surface. The minute linear grooves and lands are formed with a chained pattern connected in the circumferential direction of the lens surface and with a periodic pattern arrayed periodically in a diametrical direction so that the minute linear grooves and lands are formed without intervening spaces throughout the entire cell inducing region and impart visible light transmittance of 60% or above to the cell inducing region.
    • 适于展开在镜片胶囊内的眼内透镜。 眼内透镜的透镜表面的至少一部分构成直接形成多个微槽的细胞诱导区域。 微槽呈深度尺寸为0.01〜1.0μm,宽度尺寸为0.1〜2.0μm的微小线状凹槽,并在镜片表面沿圆周方向延伸规定长度。 微小直线凹槽和平台形成有在透镜表面的圆周方向上连接的链状图案,并且沿直径方向周期性排列周期性图案,使得在整个细胞诱导中形成微小的直线凹槽和平台而没有中间空间 并赋予细胞诱导区域60%以上的可见光透射率。
    • 10. 发明申请
    • LENS POWER MEASUREMENT DEVICE AND MEASUREMENT METHOD
    • 镜头功率测量设备和测量方法
    • US20150292978A1
    • 2015-10-15
    • US14396489
    • 2012-05-11
    • Hiroaki SuzukiAtsushi Kobayashi
    • Hiroaki SuzukiAtsushi Kobayashi
    • G01M11/02G02C7/04
    • G01M11/0228G01M11/0221G02C7/04
    • Provided are a lens power measurement device and a lens power measurement method whereby lens power measurement results of a contact lens can be displayed in a manner which is easy to view, while maintaining fully satisfactory precision of the lens power measurement results. From lens power distribution information determined based on optical property measurement information of a contact lens, correction target information including positive and negative abnormal peaks on both sides of a lens central axis in a lens central area is selected. Lens power distribution measurement results are then obtained by applying substitution using a correction function that smooths out the abnormal peaks to the selected correction target information to smooth the lens power measurement values.
    • 提供一种透镜功率测量装置和透镜功率测量方法,其中可以以容易观看的方式显示隐形眼镜的透镜功率测量结果,同时保持透镜功率测量结果的完全令人满意的精度。 根据基于隐形眼镜的光学性质测量信息确定的透镜功率分布信息,选择在透镜中心区域中的透镜中心轴的两侧包括正负异常峰值的校正对象信息。 然后通过使用将异常峰值平滑的校正函数应用于所选择的校正目标信息以平滑透镜功率测量值来获得透镜功率分布测量结果。