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    • 1. 发明授权
    • Adaptive patient interface
    • 自适应患者接口
    • US08845624B2
    • 2014-09-30
    • US12824107
    • 2010-06-25
    • Ferenc RaksiTibor Juhasz
    • Ferenc RaksiTibor Juhasz
    • A61B18/18A61F9/009
    • A61F9/009
    • A patient interface for an ophthalmic system can include an attachment module, attachable to the ophthalmic system, and a contact module, configured to accommodate a viscoelastic substance between the patient interface and a procedure eye. The viscoelastic substance can include a fluid, a liquid, a gel, a cream, an artificial tear, a film, an elastic material, or a viscous material. The refractive index of the viscoelastic substance can be within a range of approximately 1.24-1.52 at an operating wavelength of the ophthalmic system. The patient interface can further include input ports, output ports, and a suction system. It can be an integrated design or a multi-piece patient interface. The viscoelastic substance can be provided by injection, on the cornea, at the contact module, or in a space bounded by soft elastic films or membranes, such as in a bag.
    • 用于眼科系统的患者界面可以包括可连接到眼科系统的附接模块,以及接触模块,其构造成在患者界面和手术眼之间容纳粘弹性物质。 粘弹性物质可以包括流体,液体,凝胶,霜,人造泪,膜,弹性材料或粘性材料。 在眼科系统的工作波长下,粘弹性物质的折射率可以在约1.24-1.52的范围内。 患者界面还可以包括输入端口,输出端口和抽吸系统。 它可以是一体化设计或多片式患者界面。 粘弹性物质可以通过注射,角膜,接触模块,或由柔软的弹性膜或膜(例如袋子)限定的空间来提供。
    • 7. 发明授权
    • Device and method for reducing corneal induced aberrations during ophthalmic laser surgery
    • 在眼科激光手术中减少角膜诱发畸形的装置和方法
    • US06623476B2
    • 2003-09-23
    • US09834979
    • 2001-04-13
    • Tibor JuhaszRonald M. KurtzCarlos G. Suarez
    • Tibor JuhaszRonald M. KurtzCarlos G. Suarez
    • A61B1820
    • A61F9/009A61F2009/00872
    • A disposable lens for reconfiguring the cornea of an eye for ophthalmic laser surgery includes a lens which has a flat anterior surface that is formed opposite a contact surface. A skirt surrounds the contact surface and extends outwardly therefrom to define a chamber. The skirt is formed with a groove which creates a suction channel between the skirt and the contact surface in the chamber. In its operation, the lens is positioned over the cornea and a vacuum pump is selectively activated to create a partial vacuum in the suction channel. Due to this partial vacuum, the cornea is drawn into the chamber where it is urged against the contact surface of the lens. The result of this is that the cornea is flattened into a configuration where the introduction of spherical aberration and coma into a light beam passing into the cornea is reduced or eliminated.
    • 用于重新配置用于眼科激光手术的眼睛角膜的一次性透镜包括具有与接触表面相对形成的平坦前表面的透镜。 裙部围绕接触表面并从其向外延伸以限定腔室。 裙部形成有凹槽,其在裙部和腔室中的接触表面之间产生吸入通道。 在其操作中,透镜位于角膜上方,并且选择性地激活真空泵以在吸入通道中产生部分真空。 由于这种部分真空,角膜被拉入腔室中,其被迫抵靠透镜的接触表面。 其结果是,角膜被平坦化成将通过角膜的光束引入球面像差和昏迷的结构减少或消除。
    • 8. 发明申请
    • Electronically Controlled Fixation Light for Ophthalmic Imaging Systems
    • 用于眼科成像系统的电子控制固定灯
    • US20120069302A1
    • 2012-03-22
    • US12885193
    • 2010-09-17
    • Tibor JuhaszGuy HollandFerenc Raksi
    • Tibor JuhaszGuy HollandFerenc Raksi
    • A61B3/135G09G5/00
    • A61B3/0091A61B3/0075A61B3/102A61F9/008
    • An electronically controlled fixation light system is described for ophthalmic systems. The ophthalmic system can include an ophthalmic imaging device that generates an image of a portion of an imaged eye, a fixation light controller that includes an input module, configured to receive an input in relation to the image generated by the ophthalmic imaging device, and a control signal generator that generates an electronic fixation light control signal in response to the received input, and a fixation light source, configured to receive the fixation light control signal, and to generate a fixation light according to the received fixation light control signal. A surgeon can image a portion of an eye with the imaging device, determine a misalignment of the imaged eye relative to the imaging device based on the image, and control the fixation light with an electronic control signal to reduce the determined misalignment.
    • 电子控制固定光系统被描述用于眼科系统。 眼科系统可以包括产生成像眼睛的一部分的图像的眼科成像装置,包括输入模块的定影光控制器,其被配置为接收与由眼科成像装置生成的图像有关的输入,以及 控制信号发生器,其响应于所接收的输入产生电子定影光控制信号;以及固定光源,被配置为接收所述定影光控制信号,并根据所接收的定影光控制信号产生定影光。 外科医生可以利用成像装置对眼睛的一部分进行成像,基于图像确定成像眼睛相对于成像装置的未对准,并且利用电子控制信号控制固定光以减小确定的未对准。
    • 9. 发明申请
    • Adaptive Patient Interface
    • 自适应患者接口
    • US20110319873A1
    • 2011-12-29
    • US12824107
    • 2010-06-25
    • Ferenc RaksiTibor Juhasz
    • Ferenc RaksiTibor Juhasz
    • A61F9/007
    • A61F9/009
    • A patient interface for an ophthalmic system can include an attachment module, attachable to the ophthalmic system, and a contact module, configured to accommodate a viscoelastic substance between the patient interface and a procedure eye. The viscoelastic substance can include a fluid, a liquid, a gel, a cream, an artificial tear, a film, an elastic material, or a viscous material. The refractive index of the viscoelastic substance can be within a range of approximately 1.24-1.52 at an operating wavelength of the ophthalmic system. The patient interface can further include input ports, output ports, and a suction system. It can be an integrated design or a multi-piece patient interface. The viscoelastic substance can be provided by injection, on the cornea, at the contact module, or in a space bounded by soft elastic films or membranes, such as in a bag.
    • 用于眼科系统的患者界面可以包括可连接到眼科系统的附接模块,以及接触模块,其构造成在患者界面和手术眼之间容纳粘弹性物质。 粘弹性物质可以包括流体,液体,凝胶,霜,人造泪,膜,弹性材料或粘性材料。 在眼科系统的工作波长下,粘弹性物质的折射率可以在约1.24-1.52的范围内。 患者界面还可以包括输入端口,输出端口和抽吸系统。 它可以是一体化设计或多片式患者界面。 粘弹性物质可以通过注射,角膜,接触模块,或由柔软的弹性膜或膜(例如袋子)限定的空间来提供。
    • 10. 发明授权
    • Method of corneal surgery by laser incising a contoured corneal flap
    • 通过激光切割角膜瓣进行角膜手术的方法
    • US07892226B2
    • 2011-02-22
    • US11368960
    • 2006-03-06
    • Tibor JuhaszJ. Randy Alexander
    • Tibor JuhaszJ. Randy Alexander
    • A61F9/008
    • A61F9/008A61F9/00836A61F2009/00872
    • A method of corneal laser surgery is disclosed. A first periphery is defined at an anterior surface of the cornea. This first periphery bounds a first planar area. A second periphery is defined within stromal tissue of the cornea. This second periphery bounds a second planar area. The second planar area is sized differently than the first planar area. A layer of stromal tissue which is bounded by the second periphery is subsequently incised. Stromal tissue between substantial portions of the first periphery and the second periphery is also incised, such that at least some corneal tissue disposed between the first and second peripheries remains connected to corneal tissue outside of the first and second peripheries.
    • 公开了一种角膜激光手术方法。 第一周边被限定在角膜的前表面。 该第一周边限定第一平面区域。 第二个周边被定义在角膜的基质组织内。 该第二外围界定第二平面区域。 第二平面区域的尺寸不同于第一平面区域。 随后切割由第二周边限定的基质组织层。 第一周边和第二周边的大部分之间的间质组织也被切开,使得设置在第一和第二外围之间的至少一些角膜组织保持连接到第一和第二外围之外的角膜组织。