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    • 2. 发明授权
    • Haptic devices for intraocular lens
    • 用于眼内透镜的触觉装置
    • US09439755B2
    • 2016-09-13
    • US12626473
    • 2009-11-25
    • Wayne B. CallahanPaul S. KochAnna S. HayesRobert E. Kellan
    • Wayne B. CallahanPaul S. KochAnna S. HayesRobert E. Kellan
    • A61F2/16
    • A61F2/1613A61F2002/1681A61F2002/1682A61F2002/169
    • The inventive is directed to a haptic for fixation to, and manufacture in conjunction with, an intraocular lens to be implanted in the natural lens capsule of the human eye. The haptic secures the lens in an appropriate position within the natural capsule so as to provide optimal visual acuity through the aphakic lens. The haptic ends are designed to position the lens neutrally, anteriorly or posteriorly within the lens envelope. At the connection point of the ribbon portion to the solid end plate of the haptic, the haptic may be notched to facilitate compressing the lens into its injector for insertion into the eye through an incision in the cornea. Once compressed and passed through the cornea, the implanted lens will be secured by the haptics in the lens capsule once all possible natural lens material and epithelial cells have been removed.
    • 本发明涉及一种用于固定并植入人眼的天然晶状体胶囊中的眼内透镜制造的触觉件。 触觉件将透镜固定在天然胶囊内的适当位置,以便通过无晶状体透镜提供最佳视敏度。 触觉端被设计成将透镜中心地,前面地或后向放置在透镜封套内。 在带状部分到触觉件的实心端板的连接点处,触觉件可以被切口以有助于将透镜压缩到其注射器中,以通过角膜中的切口插入眼睛。 一旦压缩并通过角膜,一旦所有可能的天然晶状体材料和上皮细胞被去除,植入的透镜将被透镜胶囊中的触觉件固定。
    • 4. 发明申请
    • INTRAOCULAR LENS OPTIC
    • 内镜镜片光学
    • US20100131059A1
    • 2010-05-27
    • US12626459
    • 2009-11-25
    • Wayne B. CallahanPaul S. KochAnna S. HayesRobert E. Kellan
    • Wayne B. CallahanPaul S. KochAnna S. HayesRobert E. Kellan
    • A61F2/16
    • A61F2/1613A61F2/1616A61F2/1629
    • An intraocular lens optic (e.g. FIG. 1) having a maximum thickness of 500 microns (3) and a diameter of 6 millimeters, with concentric rings on the anterior surface of the lens. The lens, coupled with suitable haptic designs, is to be implanted within the lens capsule (19) of the eye after surgical removal of the natural crystalline lens. The anterior surface of the lens (1) has concentric rings (6) with steps of approximately 10 microns (5) that can be concave, convex or piano, with the edge of the step parallel in each case to the light rays traversing the lens at that point. The posterior surface of the lens (3) is aspherical and smooth. The concentric rings focus 95% or better of light at a specific target point on the retina, thus making a monofocal lens, with focal flexibility provided through haptic design providing movement of the lens forward in the posterior chamber in response to contraction and expansion of the ciliary body and concomitant repositioning of the zonules. The inventive lens is a unitarily formed, seamless body comprised preferably of hydrophilic acrylates or acrylates and silicone blends. Other possible materials include hydrophobic acrylates, polymethylmethacrylate (such as for example PMMA) or acrylic blends. The inventive lens, being less than 500 microns thick, provides greater transfer of light through the lens, thus more closely replicating the function of a natural, emmotropic lens, while the thinness, making the lens lightweight, allows the ciliary body to move the lens with less effort, thus facilitating comfort in the presbyopic eye.
    • 具有500微米(3)的最大厚度和6毫米直径的眼内透镜光学元件(例如图1),在镜片的前表面上具有同心环。 镜片与合适的触觉设计相结合,在手术切除天然晶状体之后将被植入眼睛的镜片囊(19)内。 透镜(1)的前表面具有同步环(6),具有大约10微米(5)的台阶,其可以是凹形,凸形或钢琴,其中台阶的边缘在每种情况下平行于穿过透镜的光线 在那时候。 透镜(3)的后表面是非球面和光滑的。 同心环在视网膜上的特定目标点聚焦95%或更好的光,从而制成单焦点透镜,其具有通过触觉设计提供的焦点柔性,从而响应于后腔的收缩和扩张而使镜片向前移动 睫状体和伴随的小区重新定位。 本发明的镜片是优选由亲水性丙烯酸酯或丙烯酸酯和硅氧烷共混物组成的整体形成的无缝体。 其它可能的材料包括疏水性丙烯酸酯,聚甲基丙烯酸甲酯(例如PMMA)或丙烯酸共混物。 小于500微米厚的本发明的透镜提供更大的光透过透镜的转移,因此更接近地复制天然异质透镜的功能,同时使得透镜轻巧的薄度允许睫状体移动透镜 更少的努力,从而促进老花眼的舒适。
    • 5. 发明申请
    • MODEL OF ACCOMMODATIVE INTRAOCULAR LENS
    • 住院镜片模型
    • US20110191086A1
    • 2011-08-04
    • US13020964
    • 2011-02-04
    • Wayne B. CallahanAnna S. Hayes
    • Wayne B. CallahanAnna S. Hayes
    • G06G7/60
    • G06G7/60A61F2/1629G16H50/50
    • The invention is directed to a model comprising a diagrammatical and geometric simplification of the components of the natural eye whose functionality is fundamental to the successful performance of a pseudo-aphakic accommodative lens. This model allows for a functional correlation of each component of the ophthalmic device with the patient needs. The eye model was developed to show the movement of the eye from the distance vision to the near vision positions through multiple phases of accommodative motion. The inventive model was developed using a mathematical series of formulas to calculate each of the components of focal accommodation in a human eye, quantify these, and construct the pictorial ramifications of such calculations. The inventive model presents an analysis of accommodative dynamics in the human eye with the natural lens in place. The inventive model also demonstrates the accommodative dynamics with a proprietary IOL in place of the natural lens and situated within the lens capsule.
    • 本发明涉及一种模型,其包括自然眼睛的部件的图形和几何简化,其功能对于伪无晶体调节透镜的成功执行是至关重要的。 该模型允许眼科装置的每个部件与患者需要的功能相关。 眼睛模型被开发以通过调节运动的多个阶段来显示眼睛从远距离视觉到近视觉位置的运动。 本发明的模型是使用数学系列公式来开发的,以计算人眼中焦点适应的每个组分,量化这些,并构建这种计算的图形后果。 本发明的模型呈现了人眼中适应动力学的分析,其中天然镜片就位。 本发明的模型还演示了使用专有的IOL代替天然镜片并位于镜片胶囊内的调节动力学。
    • 6. 发明申请
    • Pseudophakic Accommodating Intraocular Lens
    • Pseudophakic适应性眼内镜
    • US20110313523A1
    • 2011-12-22
    • US13113975
    • 2011-05-23
    • Anna S. Hayes
    • Anna S. Hayes
    • A61F2/16
    • A61F2/1602A61F2/1629A61F2/1648A61F2/1694A61F2002/1681A61F2002/1699
    • The invention is directed to an assembly comprising a haptic for fixation to, and manufacture in conjunction with, an intraocular lens to be implanted in the natural lens capsule of an eye. The haptic of the invention comprises a continuous ribbon forming an essentially oblong shape having anterior and posterior portions relative to the elliptical center of the haptic, wherein the ribbon loop includes two or more essentially congruent ribbon arches in each portion, and each ribbon arch has a natural index of curvature with an inner and outer edges. designed to expand the eye capsule and put tension on the zonules of the eye. The ribbon affixes to the lens on each side of the optic edge at a point or a series of points that provides suitable centration and stability of the optic, and to suspend the optic in the open capsular space. The material of the haptic is preferably somewhat flexible, and elastic, so as to provide a constant, positive force on the capsule throughout all phases of accommodation, thereby preserving tension of the zonules and allowing the capsule to change shape naturally. The haptic ribbons may be solid or of an open work structure to increase the amount of hydration available to the lens capsule. A secondary haptic ribbon, affixed to a plano optical plate, may be located on the posterior capsular surface and oriented so that the haptic arms extend through the capsular prime meridian to the anterior capsular surface at a 90° angle from the anterior haptic ribbons, thus providing for a capsular configuration as natural as possible, yet associated with an intraocular lens that may be inserted through an incision of less than 3 millimeters.
    • 本发明涉及一种组件,其包括用于固定并植入眼睛的天然晶状体胶囊中的眼内透镜并与其一起制造的触觉件。 本发明的触觉件包括形成基本上长方形的连续带,其具有相对于触觉件的椭圆形中心的前部和后部,其中,色带环在每个部分中包括两个或更多基本上一致的带状拱,并且每个丝带具有 具有内边缘和外缘的自然曲率折射率。 旨在扩大眼胶囊并将张力放在眼睛的小带上。 色带在光学边缘的每一侧上的一个点或一系列点处贴附到透镜上,该点或一系列点提供光学元件的合适的中心和稳定性,并且将光学元件悬挂在开放的囊​​状空间中。 触觉件的材料优选地具有柔软性和弹性,以便在调节的所有阶段在胶囊上提供恒定的正向力,从而保持分区的张力并允许胶囊自然地改变形状。 触觉带可以是实心的或开放的工作结构,以增加镜片胶囊可用的水合量。 固定到平面光学板上的辅助触觉带可以位于后囊膜表面上并且被定向成使得触觉臂以与前部触觉带成90°角的方式延伸穿过荚膜首子午线到前囊膜表面,因此 提供尽可能自然的囊状构造,但与可以通过小于3毫米的切口插入的眼内透镜相关联。
    • 7. 发明申请
    • Pseudophakic Accommodating Intraocular Lens
    • US20110313522A1
    • 2011-12-22
    • US13113815
    • 2011-05-23
    • Anna S. Hayes
    • Anna S. Hayes
    • A61F2/16
    • A61F2/16A61F2/1602A61F2/1624A61F2/1629A61F2/1694A61F2002/1681A61F2002/1699
    • The invention is directed to an assembly comprising a haptic for fixation to, and manufacture in conjunction with, an intraocular lens to be implanted in the natural lens capsule of an eye. The haptic of the invention comprises a continuous ribbon forming an essentially oblong shape having anterior and posterior portions relative to the elliptical center of the haptic, wherein the ribbon loop includes two or more essentially congruent ribbon arches in each portion, and each ribbon arch has a natural index of curvature with an inner and outer edges. designed to expand the eye capsule and put tension on the zonules of the eye. The ribbon affixes to the lens on each side of the optic edge at a point or a series of points that provides suitable centration and stability of the optic, and to suspend the optic in the open capsular space. The material of the haptic is preferably somewhat flexible, and elastic, so as to provide a constant, positive force on the capsule throughout all phases of accommodation, thereby preserving tension of the zonules and allowing the capsule to change shape naturally. The haptic ribbons may be solid or of an open work structure to increase the amount of hydration available to the lens capsule. A secondary haptic ribbon, affixed to a plano optical plate, may be located on the posterior capsular surface and oriented so that the haptic arms extend through the capsular prime meridian to the anterior capsular surface at a 90° angle from the anterior haptic ribbons, thus providing for a capsular configuration as natural as possible, yet associated with an intraocular lens that may be inserted through an incision of less than 3 millimeters.