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    • 3. 发明授权
    • Determination of optical adjustments for retarding myopia progression
    • 确定延迟近视进展的光学调整
    • US08342684B2
    • 2013-01-01
    • US12597890
    • 2008-04-28
    • Arthur HoKlaus Ehrmann
    • Arthur HoKlaus Ehrmann
    • G02C7/02G02B7/00
    • A61B3/103A61B3/0025A61F9/00802A61F9/00804A61F9/00806A61F2009/00872G02C7/02G02C7/04G02C7/042G02C7/061G02C2202/24G06F19/00
    • A method or process for providing an anti-myopia lens or treatment for a patient's eye with progressive myopia, which involves (in one form) generating biometric data relating to the central and peripheral refractive errors of the eye, optionally together with data relating to the patient's visual or lifestyle needs and the patient's predisposition to progressive myopia. This data is input to a processor or algorithm that generates a basic lens design, a customised design or a program for reshaping the cornea of the eye. The selected modality is applied to the patient and its suitability is assessed with the result of the assessment feedback to the algorithm to generate a refined output design, which is applied to the patient. The process is repeated at intervals to check continued myopia progression and adjust the design of the selected modality after further measurement.
    • 提供抗近视眼镜或用于进行性近视治疗患者眼睛的方法或过程,其涉及(以一种形式)产生与眼睛的中心和外周屈光不正相关的生物特征数据,可选地与数据有关的数据 患者的视力或生活方式需求以及患者对进行性近视的倾向。 该数据被输入到生成基本透镜设计,定制设计或用于重塑眼睛角膜的程序的处理器或算法。 所选择的模式被应用于患者,并且其适用性被评估为对该算法的评估反馈的结果,以生成应用于患者的精细输出设计。 间隔重复该过程以检查持续近视进展,并在进一步测量后调整所选模态的设计。
    • 4. 发明申请
    • DETERMINATION OF OPTICAL ADJUSTMENTS FOR RETARDING MYOPIA PROGRESSION
    • 确定用于延缓MYOPIA进展的光学调整
    • US20100296058A1
    • 2010-11-25
    • US12597890
    • 2008-04-28
    • Arthur HoKlaus Ehrmann
    • Arthur HoKlaus Ehrmann
    • A61B3/10G02C7/02A61F9/008
    • A61B3/103A61B3/0025A61F9/00802A61F9/00804A61F9/00806A61F2009/00872G02C7/02G02C7/04G02C7/042G02C7/061G02C2202/24G06F19/00
    • A method or process for providing an anti-myopia lens or treatment for a patient's eye with progressive myopia, which involves (in one form) generating biometric data relating to the central and peripheral refractive errors of the eye, optionally together with data relating to the patient's visual or lifestyle needs and the patient's predisposition to progressive myopia. This data is input to a processor or algorithm that generates a basic lens design, a customised design or a program for reshaping the cornea of the eye. The selected modality is applied to the patient and its suitability is assessed with the result of the assessment feedback to the algorithm to generate a refined output design, which is applied to the patient. The process is repeated at intervals to check continued myopia progression and adjust the design of the selected modality after further measurement.
    • 提供抗近视眼镜或用于进行性近视治疗患者眼睛的方法或过程,其涉及(以一种形式)产生与眼睛的中心和外周屈光不正相关的生物特征数据,可选地与数据有关的数据 患者的视力或生活方式需求以及患者对进行性近视的倾向。 该数据被输入到生成基本透镜设计,定制设计或用于重塑眼睛角膜的程序的处理器或算法。 所选择的模式被应用于患者,并且其适用性被评估为对该算法的评估反馈的结果,以生成应用于患者的精细输出设计。 间隔重复该过程以检查持续近视进展,并在进一步测量后调整所选模态的设计。
    • 5. 发明申请
    • CHARACTERIZATION OF OPTICAL SYSTEMS
    • 光系统的表征
    • US20100195093A1
    • 2010-08-05
    • US12527381
    • 2008-02-14
    • Arthur HoKlaus Ehrmann
    • Arthur HoKlaus Ehrmann
    • G01M11/02A61B3/10
    • G01M11/0235A61B3/103A61B3/107G01M11/0257
    • An instrument and method is for characterizing the optical properties of an optical system, such as a lens, another optical device or the human eye, over an optical surface of the optical system. In one example, an incident beam is scanned over the surface of a lens to generate an emergent beam that is divided by a beam-splitter into two portions that are directed to respective two-dimensional detector arrays located at different optical distances from the lens. The detector arrays output the lateral coordinates of the points of incidence of the respective emergent beam portions so that the angle of emergent beam with respect to the optical axis or incident beam can be accurately determined. Determining the variation in the angle of the emergent beam over the surface of the lens allows many important optical characteristics of the lens to be characterized and mapped onto to the surface of the lens.
    • 仪器和方法用于在光学系统的光学表面上表征诸如透镜,另一光学装置或人眼的光学系统的光学特性。 在一个示例中,入射光束被扫描在透镜的表面上,以产生由分束器分割成两个部分的出射光束,该两个部分被定向到与透镜不同的光学距离处的相应的二维检测器阵列。 检测器阵列输出各个出射光束部分的入射点的横向坐标,使得可以准确地确定出射光束相对于光轴或入射光束的角度。 确定出射光束在透镜表面上的角度的变化允许透镜的许多重要的光学特性被表征并映射到透镜的表面上。
    • 6. 发明授权
    • Corneal and epithelial remodelling
    • 角膜和上皮重塑
    • US08201941B2
    • 2012-06-19
    • US12309841
    • 2007-07-31
    • Jennifer Denise ChooArthur HoWilliam E. MeyersFabian ConradBrien Anthony Holden
    • Jennifer Denise ChooArthur HoWilliam E. MeyersFabian ConradBrien Anthony Holden
    • G02C7/04
    • G02C7/047A61B3/107A61F9/007G02C2202/24
    • This invention relates to methods of shaping the anterior surface of the eye for controlling the progression of refractive error of the eye, in particular, myopia. The method employs the fitting of orthokeratology lenses having a precisely shaped posterior surface adapted to accurately shape the peripheral region of the eye. The method includes the steps of assessing central and peripheral refractive error parameters for the eye, determining the optimal anterior surface profile for the eye, including at both the optical centre of the cornea and at a selected optical periphery of the cornea, which would result in a desired refractive correction to achieve good vision for the eye and the desired peripheral refraction (curvature of field) for the eye for controlling progression of myopia. Accurate measurement of the shape of the pre-treated eye is important, thereby enabling a corresponding lens profile to be designed or selected so that the treatment process achieves a post-treatment peripheral profile which optimally focuses peripheral rays anteriorly of the retina, thereby controlling the progression of myopia. The invention extends to a lens manufactured so as to optimally treat the peripheral region of the eye.
    • 本发明涉及使眼睛的前表面成形以控制眼睛的屈光不正的进展,特别是近视的方法。 该方法采用具有精确成形后表面的角膜矫形镜片的装配,以适当地使眼睛周边区域成形。 该方法包括以下步骤:评估眼睛的中心和周边屈光不正参数,确定眼睛的最佳前表面轮廓,包括在角膜的光学中心和角膜的选定的光学周边,这将导致 期望的屈光矫正以实现眼睛的良好视力和用于眼睛控制近视进展的期望的周边折射(曲率))。 预处理眼睛的形状的准确测量是重要的,从而使得能够设计或选择相应的透镜轮廓,使得治疗过程实现后处理的外围轮廓,其最佳地聚焦视网膜前方的外周射线,从而控制 近视进展。 本发明延伸到制造以最佳地治疗眼睛周边区域的镜片。