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    • 51. 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。
    • 53. 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。
    • 56. 发明授权
    • Keratectomy data determining device and keratectomy data determining program
    • 角膜切除术数据确定装置和角膜切除术数据确定程序
    • US07255440B2
    • 2007-08-14
    • US10476246
    • 2002-06-03
    • Masaaki Hanebuchi
    • Masaaki Hanebuchi
    • A61B3/10
    • A61B3/103A61B3/1035A61B3/107A61F9/00806A61F2009/00872A61F2009/0088
    • The purpose of the present invention is to provide a corneal-ablation-data determining apparatus and a corneal-ablation-data determining program capable of controlling corneal ablation amount distribution and expanding ablation applicability. In the present invention, the corneal-ablation-data determining apparatus for use in keratorefractive surgery for ablating a corneal surface to correct a refractive error has input means for inputting measurement data on any one of wavefront aberration distribution and refractive power distribution of a patient's eye, decentering means for decentering a reference axis being a calculation reference for a corneal ablation amount, and calculation means for obtaining the corneal ablation amount based on the measurement data and data on eccentricity of the reference axis.
    • 本发明的目的是提供一种能够控制角膜消融量分布和扩大消融适用性的角膜消融数据确定装置和角膜消融数据确定程序。 在本发明中,用于消融角膜表面以矫正屈光不正的角膜磨削术的角膜消融数据确定装置具有用于输入患者眼睛的波前像差分布和屈光度分布中的任何一个的测量数据的输入装置 用于使参考轴偏心的偏心装置是用于角膜消融量的计算参考,以及用于基于测量数据和参考轴的偏心数据获得角膜消融量的计算装置。
    • 58. 发明授权
    • Auto-keratometer
    • 自动角膜曲率仪
    • US4786163A
    • 1988-11-22
    • US944741
    • 1986-12-19
    • Masatsugu ImamichiTakashi Nishiguchi
    • Masatsugu ImamichiTakashi Nishiguchi
    • A61B3/10A61B3/103
    • A61B3/1035
    • An auto-keratometer attached to an operating microscope to measure the refraction and astigmatic condition of the cornea comprises a cornea irradiating light source section disposed below the operating microscope, and switching means for selectively switching the light source section between an irradiating position on the optical axis and a retracted position. When it is desired to measure the corneal condition, the light source section is set at the irradiating position below the operating microscope, so that the light from the light source section reflected by the cornea travels through a beam splitter and is detected by a detector, whereby the refraction or astigmatic condition of the cornea is measured. If the light source section is found interfering with the operation, the light source section is set at the retracted position by rotating it through 180 degrees, whereby the working region below the microscope is widened to facilitate the operator's surgical operation on the cornea.
    • 安装在操作显微镜上以测量角膜的折射和散光状态的自动角膜曲率计包括设置在手术显微镜下方的角膜照射光源部分和用于在光轴上的照射位置之间选择性地切换光源部分的切换装置 和缩回位置。 当需要测量角膜状况时,将光源部分设置在手术显微镜下方的照射位置处,使得由角膜反射的来自光源部分的光线穿过分束器,并由检测器检测, 由此测量角膜的折射或散光状态。 如果发现光源部分干扰操作,则通过使其旋转180度将光源部设置在缩回位置,由此使显微镜下方的工作区域变宽以便于操作者在角膜上的外科手术。
    • 59. 发明授权
    • Astigmatic ruler and method of use thereof
    • 散光尺及其使用方法
    • US4530579A
    • 1985-07-23
    • US529485
    • 1983-09-06
    • Lawrence L. Hyde
    • Lawrence L. Hyde
    • A61B3/103A61B3/14
    • A61B3/1035
    • An astigmatic ruler for determining an amount of astigmatism associated with a cornea of a human eye by qualitative methods comprises a target member having a plurality of apertures therethrough. One of the apertures is circular and the remaining apertures are elliptical in shape. The elliptical apertures are associated with various incremental amounts of astigmatism. The target member is adapted to be positioned between the eye and an illuminated surgical microscope such that light is projected through a selected aperture and onto the eye. The amount of astigmatism associated with the eye is indicated when a selected aperture is presented to the eye and the aperture has a degree of ellipticity that generally balances the amount of astigmatism associated with the eye so that a generally circular image is reflected from the eye.
    • 用于通过定性方法确定与人眼角膜相关的像散量的象散尺包括具有穿过其中的多个孔的目标构件。 其中一个孔是圆形的,其余的孔是椭圆形的。 椭圆形孔与各种增量的像散有关。 目标构件适于定位在眼睛和照明手术显微镜之间,使得光通过所选择的孔投射到眼睛上。 当将选择的孔眼呈现给眼睛并且孔径具有通常平衡与眼睛相关联的像散量的椭圆度从而使得从眼睛反射大致圆形图像时,指示与眼睛相关联的散光量。