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    • 6. 发明申请
    • OPTIMIZING VISION CORRECTION PROCEDURES
    • 优化视觉校正程序
    • US20100110379A1
    • 2010-05-06
    • US12605219
    • 2009-10-23
    • YAN ZHOUWILLIAM SHEABARRY LINDERPHILLIP BAKER
    • YAN ZHOUWILLIAM SHEABARRY LINDERPHILLIP BAKER
    • A61B3/10
    • A61B3/1015A61B3/0025A61B3/0041A61B3/0091A61B3/036A61B3/10A61B3/103A61B3/1035A61B3/13A61B3/14A61B5/7415A61B90/20G01J9/00G01J2003/064
    • In one embodiment, an apparatus for optimizing vision correction procedures comprising: a narrow beam of light directed to a patient's retina; a dynamic defocus and compensation offsetting device configured to offset the defocus of a wavefront from an eye, a wavefront sensor configured to measure the local tilt of a number of subwavefronts sampled around an annular ring (the diameter of which can be dynamically changed) over the wavefront with the defocus offset; and a display device configured to display a two dimensional (2D) data points pattern in real time with each data point location representing a corresponding local tilt of the sampled subwavefronts. A proper defocus offset, not passive compensation, can reveal the predominant feature(s) of other wavefront aberration component(s), thus enabling a refractive surgeon to fine tune the vision correction procedure and minimize the remaining wavefront aberration(s) in real time. Meanwhile, by sampling the wavefront around annular rings and displaying the local tilt of the sampled subwavefronts on a monitor in the form of a 2D data points pattern, a refractive ophthalmic surgeon can easily correlate the measurement result to the two major refractive errors, namely spherical and cylinder refractive errors, including the axis of astigmatism.
    • 在一个实施例中,一种用于优化视力矫正程序的装置,包括:指向病人视网膜的窄光束; 动态散焦和补偿偏移装置,被配置为抵消来自眼睛的波前的散焦;波前传感器,被配置为测量围绕环形环(其直径可以动态地改变)采样的多个子波前的局部倾斜 波峰与散焦偏移; 以及显示装置,被配置为实时地显示二维(2D)数据点图案,每个数据点位置表示采样子波前的对应的局部倾斜。 适当的散焦偏移,而不是无源补偿,可以揭示其他波前像差分量的主要特征,从而使屈光手术师能够精确调整视力矫正程序并实时最小化剩余的波前像差 。 同时,通过围绕环形环采样波形并以2D数据点图案的形式在监视器上显示采样的子波的局部倾斜,折射眼科外科医生可以容易地将测量结果与两个主要的屈光不正相关联,即球面 和圆柱折射误差,包括散光轴。
    • 9. 发明授权
    • Multi-layered blister card package and method for making the same
    • 多层泡罩卡包装及其制作方法
    • US07780007B2
    • 2010-08-24
    • US11557575
    • 2006-11-08
    • Mark Phillip Baker
    • Mark Phillip Baker
    • B65D83/04B65D85/42B65D73/00
    • B65D83/0463
    • A multi-layered blister package and assembling method include a blister sheet having a blisters for containing a product therein and an opposing cover surface adjacent to blister openings. The package also includes a front sheet having apertures configured to receive the blisters and a back sheet coupled to at least a portion of the front sheet. The back sheet includes an inner back panel foldably connected to an outer back panel. The inner and outer back panels each include removable tabs each covering an access slot. The tabs and access slots of the inner and outer back panels are in alignment when the inner back panel is folded adjacent to the outer back panel. The cover surface of the blister sheet is positioned adjacent to the inner back panel such that each blister opening is in alignment with the tabs and access slots of the inner and outer back panels.
    • 多层泡罩包装和组装方法包括具有用于容纳产品的泡罩的泡罩片和与泡罩开口相邻的相对的盖表面。 包装还包括具有构造成容纳泡罩的孔的前片和连接到前片的至少一部分的底片。 背板包括可折叠地连接到外后面板的内后面板。 内外背面板每个包括可移除的接头,每个覆盖着接入槽。 当内后面板相邻于外后面板折叠时,内背板和外后板的突片和进入槽对齐。 泡罩片的盖表面定位成与内后面板相邻,使得每个泡罩开口与内外面板的突片和进入槽对准。