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    • 24. 发明申请
    • DISPOSABLE HANDHELD PHACOMORCELLATION DEVICE
    • 可拆卸手持式手持设备
    • US20120022434A1
    • 2012-01-26
    • US13260228
    • 2010-04-07
    • Jaw-Chyng Lormen LueMatthew McCormickRalph Kerns
    • Jaw-Chyng Lormen LueMatthew McCormickRalph Kerns
    • A61F9/007
    • A61F9/00763A61B2017/00685
    • Disposable handheld phacomorcellation devices and methods for removing lens fragments from an eye of a patient are disclosed. In one embodiment, the phacomorcellation device includes a stationary outer tubular cutting member and a rotatable inner cutting member positioned within the stationary outer tubular cutting member. The outer tubular cutting member and the rotatable inner cutting member each include at least one cutting port having at least one cutting edge. The at least one cutting edge of the outer tubular cutting member and the at least one cutting edge of the inner cutting member cooperate to form a bird beak cutting structure as the inner cutting member rotates with respect to the outer cutting member. The cutting port of the outer tubular cutting member can be substantially closed during rotation of the inner cutting member, thereby preventing lens fragments from floating toward a posterior region of the eye.
    • 公开了一种用于从患者眼睛去除晶状体碎片的手持式手持式细胞分离装置和方法。 在一个实施例中,所述致动器装置包括固定的外部管状切割构件和定位在固定的外部管状切割构件内的可旋转内部切割构件。 外管状切割构件和可旋转内切割构件各自包括至少一个具有至少一个切割边缘的切割口。 当内切割构件相对于外切割构件旋转时,外管状切割构件的至少一个切割边缘和内切割构件的至少一个切割边缘协作形成鸟嘴切割结构。 外筒形切割构件的切割口可以在内切割构件旋转期间基本上封闭,从而防止透镜碎片朝向眼睛的后部区域浮动。
    • 27. 发明申请
    • OCULAR LENS CUTTING DEVICE
    • OCULAR镜头切割装置
    • US20140364885A1
    • 2014-12-11
    • US14130888
    • 2012-07-05
    • Trent Spencer WellsMatthew T. McCormickRalph KernsMark S. Humayun
    • Trent Spencer WellsMatthew T. McCormickRalph KernsMark S. Humayun
    • A61F9/007
    • A61F9/00763A61B2017/306A61F9/00754
    • Ocular lens cutting devices and methods for cutting and removing tissue such as lens fragments from an eye of a patient are disclosed. In one embodiment, an ocular lens cutting device includes an outer member and an inner member positioned within the outer member. The outer member and the inner member can each include at least one cutting edge. The at least one cutting edge of the outer member and the at least one cutting edge of the inner member can cooperate to form a cutting structure as the inner member moves with respect to the outer member. The ocular lens cutting device can also be connected to a vacuum source which can allow the ocular lens cutting device to grasp the tissue to be cut and remove the cut fragments from the surgical area.
    • 公开了一种眼镜片切割装置和用于从患者眼睛切割和去除诸如晶状体碎片的组织的方法。 在一个实施例中,眼镜片切割装置包括外部构件和位于外部构件内部的内部构件。 外部构件和内部构件可以各自包括至少一个切割边缘。 当内部构件相对于外部构件移动时,外部构件的至少一个切割边缘和内部构件的至少一个切割边缘可以协作以形成切割结构。 眼镜片切割装置也可以连接到真空源,该真空源可以允许眼镜片切割装置抓住待切割的组织并且从手术区域去除切割的碎片。
    • 28. 发明授权
    • System and method for commercial fabrication of patterned media
    • 用于商业制作图案化介质的系统和方法
    • US08349196B2
    • 2013-01-08
    • US12329462
    • 2008-12-05
    • Kevin P. FairbairnMichael S. BarnesTerry BluckRen XuCharles LiuRalph Kerns
    • Kevin P. FairbairnMichael S. BarnesTerry BluckRen XuCharles LiuRalph Kerns
    • B44C1/22
    • G11B5/84G11B5/855H01J37/3438
    • A system is provided for etching patterned media disks for hard drive. The modular system may be tailored to perform specific processes sequences so that a patterned media disk is fabricated without removing the disk from vacuum environment. In some sequence the magnetic stack is etched while in other the etch is performed prior to forming the magnetic stack. In a further sequence ion implantation is used without etching steps. For etching a movable non-contact electrode is utilized to perform sputter etch. The cathode moves to near contact distance to, but not contacting, the substrate so as to couple RF energy to the disk. The substrate is held vertically in a carrier and both sides are etched serially. That is, one side is etched in one chamber and then in the next chamber the second side is etched.
    • 提供了用于蚀刻用于硬盘驱动器的图案化介质盘的系统。 模块化系统可以被定制以执行特定的处理顺序,使得图案化的介质盘被制造而不从真空环境中移除盘。 在一些顺序中,磁性堆叠被蚀刻,而另一些蚀刻则在形成磁性堆叠之前进行。 在另外的序列中,使用离子注入而没有蚀刻步骤。 为了蚀刻可移动的非接触电极用于进行溅射蚀刻。 阴极移动到与衬底接近但不接触的接近距离,以将RF能量耦合到盘。 衬底垂直地保持在载体中,并且两侧被连续蚀刻。 也就是说,在一个室中蚀刻一面,然后在下一个室中蚀刻第二面。