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    • 21. 发明申请
    • DEVICE AND PROCESS FOR MACHINING THE CORNEA OF A HUMAN EYE WITH FOCUSED PULSED LASER RADIATION
    • 用聚焦脉冲激光辐射加工人眼的脊椎的装置和方法
    • US20130324984A1
    • 2013-12-05
    • US13984392
    • 2011-02-15
    • Theo SeilerMathias WoelfelChristof Donitzky
    • Theo SeilerMathias WoelfelChristof Donitzky
    • A61F9/008
    • A61F9/00836A61F2/147A61F9/00831A61F2009/00872
    • A device for machining the cornea of a human eye with focused pulsed laser radiation includes controllable components, a control computer for controlling these components and a control program for the control computer. The control program contains instructions that are designed to generate an incision figure in the cornea permitting the insertion of an intrastromal corneal ring implant. The incision figure includes a ring incision situated totally deep within the corneal tissue and an opening incision extending at right angles to the ring plane of the ring incision from the anterior surface of the cornea or from the posterior surface of the cornea as far as at least the ring incision. The ring incision exhibits, assigned to the opening incision (44), a radial—relative to the ring axis—widening zone in which the opening incision impinges on the ring incision.
    • 用聚焦脉冲激光辐射加工人眼角膜的装置包括可控组件,用于控制这些组件的控制计算机和用于控制计算机的控制程序。 控制程序包含设计用于在角膜中产生切口图的指令,允许插入椎间孔内角膜环植入物。 切口图包括位于角膜组织内完全深的环形切口和从角膜前表面或角膜后表面直角延伸到环形切口的环形平面的开口切口,至少至少 环切口。 所述环形切口在所述开口切口(44)中表现出相对于所述开口切口撞击所述环切口的所述环形轴线加宽区域的径向。
    • 23. 发明申请
    • SYSTEM AND METHOD FOR INCISING MATERIAL
    • 用于材料的系统和方法
    • US20120150161A1
    • 2012-06-14
    • US13400345
    • 2012-02-20
    • Ferenc RaksiMichael Brownell
    • Ferenc RaksiMichael Brownell
    • A61F9/01
    • A61F9/008A61F9/00829A61F9/00831A61F9/00836A61F2009/00859A61F2009/00872A61F2009/0088A61F2009/00882A61F2009/00897
    • Systems and methods of incising a portion of a material include creating a sub-surface separation in a region of the material, and incising a periphery of the region with a pulsed laser beam to produce an edge of the portion. The edge includes a periodically varying shape to secure the portion to the material when the portion is reintegrated. The system includes a laser producing the pulsed laser beam, a scanner operable in response to a control signal, and a controller coupled to the scanner. The controller produces the control signal. In response to the control signal, the scanner creates a sub-surface separation in the region with the pulsed laser beam and incises the periphery of the region with the pulsed laser beam to produce the edge with the periodically varying shape.
    • 切割材料的一部分的系统和方法包括在材料的区域中产生亚表面分离,以及用脉冲激光束切割该区域的周边以产生该部分的边缘。 该边缘包括周期性变化的形状,以便当该部分重新整合时将该部分固定到该材料上。 该系统包括产生脉冲激光束的激光器,可响应于控制信号操作的扫描器和耦合到扫描器的控制器。 控制器产生控制信号。 响应于控制信号,扫描器利用脉冲激光束在该区域中产生子表面间隔,并用脉冲激光束切割该区域的周边以产生具有周期性变化形状的边缘。
    • 25. 发明授权
    • System and method for incising material
    • 切割材料的系统和方法
    • US08142423B2
    • 2012-03-27
    • US11936635
    • 2007-11-07
    • Ferenc RaksiMichael Brownell
    • Ferenc RaksiMichael Brownell
    • A61F9/01
    • A61F9/008A61F9/00829A61F9/00831A61F9/00836A61F2009/00859A61F2009/00872A61F2009/0088A61F2009/00882A61F2009/00897
    • Systems and methods of incising a portion of a material include creating a sub-surface separation in a region of the material, and incising a periphery of the region with a pulsed laser beam to produce an edge of the portion. The edge includes a periodically varying shape to secure the portion to the material when the portion is reintegrated. The system includes a laser producing the pulsed laser beam, a scanner operable in response to a control signal, and a controller coupled to the scanner. The controller produces the control signal. In response to the control signal, the scanner creates a sub-surface separation in the region with the pulsed laser beam and incises the periphery of the region with the pulsed laser beam to produce the edge with the periodically varying shape.
    • 切割材料的一部分的系统和方法包括在材料的区域中产生亚表面分离,以及用脉冲激光束切割该区域的周边以产生该部分的边缘。 该边缘包括周期性变化的形状,以便当该部分重新整合时将该部分固定到该材料上。 该系统包括产生脉冲激光束的激光器,可响应于控制信号操作的扫描器和耦合到扫描器的控制器。 控制器产生控制信号。 响应于控制信号,扫描器利用脉冲激光束在该区域中产生子表面间隔,并用脉冲激光束切割该区域的周边以产生具有周期性变化形状的边缘。
    • 30. 发明授权
    • Ophthalmic surgical laser and method
    • 眼科手术激光和方法
    • US06325792B1
    • 2001-12-04
    • US08287000
    • 1994-08-08
    • Casimir A. SwingerShui T. Lai
    • Casimir A. SwingerShui T. Lai
    • A61B1736
    • A61F9/00804A61B18/26A61B2017/00172A61B2017/00694A61F9/00827A61F9/00831A61F9/00834A61F9/009A61F2009/00846A61F2009/00863A61F2009/0087A61F2009/00872A61F2009/00874A61F2009/00897
    • Low energy, ultra-short (femptosecond) pulsed laser radiation is applied to the patient's eye in one of a number of patterns such that the exposed ocular tissue is ablated or excised through the process of optical breakdown or photodisruption in a very controlled fashion. The process can be gentle enough that the invention makes possible the performance of a number of surgical procedures that in the past could not have been performed at all, such as capsulorhexis, or were performed in a fashion that provided less than an ideal result or excessive trauma to the ocular tissue. Such latter applications include the making of incisions for corneal transplantation, radial and arcuate keratotomy, and intrastromal cavitation. Using the laser inside the eye allows the surgeon to perform glaucoma operations such as trabeculoplasty and iridotomy, cataract techniques such as capsulectomy, capsulorhexis and phacoablation, and vitreoretinal surgery, such as membrane resection. The various procedures are accomplished by controlling energy flux or irradiance, geometric deposition of beam exposure and exposure time.
    • 将低能量,超短(飞秒)脉冲激光辐射以许多图案中的一种施加到患者的眼睛,使得暴露的眼组织以非常受控的方式通过光学破坏或光破坏的过程被消融或切除。 该过程可以足够温和,使得本发明使得能够执行过去无法完全执行的诸如撕囊术的多种外科手术,或者以提供小于理想结果或过度的方式进行 对眼组织的创伤。 这样的后续应用包括形成角膜移植切口,径向和弓形角膜切开术以及胸腔内气蚀。 使用眼睛内的激光允许外科医生进行青光眼手术,例如小梁成形术和虹膜切开术,白内障技术,例如囊切除术,撕囊术和超声乳化术,以及玻璃体视网膜手术,例如膜切除术。 各种过程通过控制能量通量或辐照度,束曝光和曝光时间的几何沉积来实现。