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    • 1. 发明授权
    • Lateral laser fiber for high average power and peak pulse energy
    • 横向激光光纤,具有较高的平均功率和峰值脉冲能量
    • US07909817B2
    • 2011-03-22
    • US11148817
    • 2005-06-08
    • Stephen E. GriffinTeresanne Griffin
    • Stephen E. GriffinTeresanne Griffin
    • A61B18/18
    • A61B18/20A61B18/22A61B2018/00023A61B2018/00029A61B2018/2272
    • An improved optical fiber comprising a waveguide with an input for coupling focused laser energy into the waveguide and communicating electromagnetic radiation in a propagation direction to an internally reflective tip of the waveguide, a tissue contacting surface wherein the light path from the reflecting surface to the transmitting surface in substantially homogenous in refractive index and cooled by fluid flow. In minimizing the variations in refractive index within the lateral light path, while providing active cooling directly below the tissue contact surface, the invention prevents internal reflections and beam distortion and greatly improves the efficiency and durability of the laterally directing probe. Free rotation of the tissue contact surface, about the lateral tip, may be provided and tissue vaporization efficiency may be improved by providing a morcellating tool on the tissue contact surface.
    • 一种改进的光纤,包括具有输入的波导,所述输入用于将聚焦的激光能量耦合到所述波导中并将传播方向上的电磁辐射传送到所述波导的内反射尖端,组织接触表面,其中从所述反射表面到所述透射 表面基本上具有均匀的折射率并且通过流体流冷却。 在使侧光路径内的折射率的变化最小化的同时,在组织接触表面的正下方提供主动冷却的同时,本发明可防止内部反射和光束变形,并大大提高了侧向引导探针的效率和耐久性。 可以提供组织接触表面围绕侧向末端的自由旋转,并且可以通过在组织接触表面上设置一个脱毛工具来改善组织蒸发效率。
    • 3. 发明授权
    • Lateral laser fiber for high average power and peak pulse energy
    • 横向激光光纤,具有较高的平均功率和峰值脉冲能量
    • US08529561B2
    • 2013-09-10
    • US13028867
    • 2011-02-16
    • Stephen E. GriffinTeresanne Griffin
    • Stephen E. GriffinTeresanne Griffin
    • A61B18/18
    • A61B18/20A61B18/22A61B2018/00023A61B2018/00029A61B2018/2272
    • An improved optical fiber comprising a waveguide with an input for coupling focused laser energy into the waveguide and communicating electromagnetic radiation in a propagation direction to an internally reflective tip of the waveguide, a tissue contacting surface wherein the light path from the reflecting surface to the transmitting surface in substantially homogenous in refractive index and cooled by fluid flow. In minimizing the variations in refractive index within the lateral light path, while providing active cooling directly below the tissue contact surface, the invention prevents internal reflections and beam distortion and greatly improves the efficiency and durability of the laterally directing probe. Free rotation of the tissue contact surface, about the lateral tip, may be provided and tissue vaporization efficiency may be improved by providing a morcellating tool on the tissue contact surface.
    • 一种改进的光纤,包括具有输入的波导,所述输入用于将聚焦的激光能量耦合到所述波导中并将传播方向上的电磁辐射传送到所述波导的内反射尖端,组织接触表面,其中从所述反射表面到所述透射 表面基本上具有均匀的折射率并且通过流体流冷却。 在使侧光路径内的折射率的变化最小化的同时,在组织接触表面的正下方提供主动冷却的同时,本发明可防止内部反射和光束变形,并大大提高了侧向引导探针的效率和耐久性。 可以提供组织接触表面围绕侧向末端的自由旋转,并且可以通过在组织接触表面上设置一个脱毛工具来改善组织蒸发效率。
    • 6. 发明申请
    • True nucleic acid amplification
    • 真核酸扩增
    • US20120034688A1
    • 2012-02-09
    • US12806012
    • 2010-08-04
    • Stephen E. Griffin
    • Stephen E. Griffin
    • C12M1/00
    • B01L7/525B01L2300/0864B01L2300/0867B01L2300/0874B01L2300/1872B01L2300/1883C12P19/34C12Q1/686
    • A system and method directed to DNA amplification with optional in situ purification, sequencing and/or detection, or a system compatible with integrated, post-amplification purification and or sequencing by capillary electrophoresis and other methods. The device is a single, helical channel formed of fused silica with heat zones defined about fixed arcs of the helix inner and/or outer circumference. The length of the helical channel and the cycle number and dwell time may be varied by altering the pitch of the helix within the cylindrical substrate. In another embodiment, the heat zone arcs lengths are also variable. In still another embodiment, multiple helical channels are available in parallel within the same structure. Separation channels may be integrated on the device for post-amplification purification and/or sequencing. One or more detection schemes may be provided on the device or seamlessly integrated with the device, for monitoring amplification and/or detecting specific products.
    • 用于任选的原位纯化,测序和/或检测的针对DNA扩增的系统和方法,或与通过毛细管电泳和其他方法的综合,扩增后纯化和/或测序兼容的系统。 该装置是由熔融二氧化硅形成的单个螺旋通道,其具有限定在螺旋内部和/或外周的固定弧的加热区域。 螺旋通道的长度和循环数和停留时间可以通过改变圆柱形衬底内螺旋的间距来改变。 在另一个实施例中,加热区弧的长度也是可变的。 在另一个实施例中,多个螺旋通道在同一结构内可以并联使用。 分离通道可以整合在器件上用于后期扩增纯化和/或测序。 可以在设备上提供一个或多个检测方案或与设备无缝集成,用于监视放大和/或检测特定产品。
    • 7. 发明授权
    • Annular side fire optical device for laterally redirecting electromagnetic radiation
    • 用于横向重定向电磁辐射的环形侧面火光装置
    • US08285097B2
    • 2012-10-09
    • US12517883
    • 2007-12-06
    • Stephen E. Griffin
    • Stephen E. Griffin
    • G02B6/04G02B6/06A61B18/18
    • A61B18/24A61B2018/2238A61B2018/2266A61B2018/2272G02B6/02G02B6/04Y10T29/49826
    • An annular side fire optical device for laterally redirecting electromagnetic radiation comprises a tapered section of silica, a conical section of silica adjoining the tapered section and an annular beveled end surface. The tapered section of silica has a diameter that increases with distance along a longitudinal axis in a direction toward a transmitting end. The conical section of silica comprises a wall of silica surrounding a conical bore. The conical bore has a diameter that increases with distance along the longitudinal axis in a direction toward the transmitting end. The annular beveled end surface is formed in the wall of silica at the transmitting end and is angled relative the longitudinal axis such that electromagnetic radiation propagating along the longitudinal axis through the conical section is reflected by the beveled end surface at an angle that is transverse to the longitudinal axis.
    • 用于横向重定向电磁辐射的环形侧面火光光学装置包括二氧化硅的锥形部分,与锥形部分相邻的二氧化硅锥形部分和环形斜面端面。 二氧化硅的锥形部分的直径随着朝向发射端的方向上的纵向轴线的距离而增加。 二氧化硅的锥形部分包括围绕圆锥孔的二氧化硅壁。 锥形孔具有沿着纵向轴线朝向发射端的方向的距离而增加的直径。 环形斜面端表面形成在发射端处的二氧化硅壁上,并且相对于纵向轴线成角度,使得沿着纵向轴线穿过圆锥形部分传播的电磁辐射由斜面端面以横向于 纵轴。
    • 8. 发明授权
    • Side fire optical device for laterally redirecting high power electromagnetic energy
    • 用于横向重定向高功率电磁能的侧火光学装置
    • US08073297B2
    • 2011-12-06
    • US12517879
    • 2007-12-06
    • Stephen E. Griffin
    • Stephen E. Griffin
    • G02B6/32B23P11/00A61B5/00A61B18/18
    • A61B18/24A61B2018/2238A61B2018/2266A61B2018/2272G02B6/02G02B6/04Y10T29/49826
    • A side fire optical device comprises a cap member, a sleeve and a fiber optic segment. The cap member comprises a closed end section, a tube section having a bore, and a transmitting surface. The sleeve is received within the bore of the tube section. The sleeve includes a bore and an exterior surface that is fused to a surface of the bore of the cap member. The fiber optic segment comprises an exterior surface that is fused to a surface of the bore of the sleeve, and a beveled end surface that is positioned adjacent the transmitting surface of the cap member. The beveled end surface is angled relative to a longitudinal axis of the fiber optic segment such that electromagnetic radiation propagating along the longitudinal axis of the fiber optic segment is reflected by the beveled end surface at an angle that is transverse to the longitudinal axis and through the transmitting surface of the cap member.
    • 侧火光学装置包括盖构件,套筒和光纤段。 盖构件包括封闭端部分,具有孔的管部分和透射表面。 套管被容纳在管部分的孔内。 套筒包括孔和外表面,该外表面与盖构件的孔的表面熔合。 光纤部分包括熔合到套筒的孔的表面的外表面和邻近盖构件的透射表面定位的倾斜的端面。 斜面端表面相对于光纤段的纵向轴线成角度,使得沿着光纤段的纵向轴线传播的电磁辐射被倾斜端面以横向于纵向轴线的角度反射,并通过 盖部件的透光面。
    • 9. 发明申请
    • ANNULAR SIDE FIRE OPTICAL DEVICE FOR LATERALLY REDIRECTING ELECTROMAGNETIC RADIATION
    • 用于横向重定向电磁辐射的环形侧消防光学装置
    • US20110002584A1
    • 2011-01-06
    • US12517883
    • 2007-12-06
    • Stephen E. Griffin
    • Stephen E. Griffin
    • G02B6/26G02B6/10
    • A61B18/24A61B2018/2238A61B2018/2266A61B2018/2272G02B6/02G02B6/04Y10T29/49826
    • An annular side fire optical device for laterally redirecting electromagnetic radiation comprises a tapered section of silica, a conical section of silica adjoining the tapered section and an annular beveled end surface. The tapered section of silica has a diameter that increases with distance along a longitudinal axis in a direction toward a transmitting end. The conical section of silica comprises a wall of silica surrounding a conical bore. The conical bore has a diameter that increases with distance along the longitudinal axis in a direction toward the transmitting end. The annular beveled end surface is formed in the wall of silica at the transmitting end and is angled relative the longitudinal axis such that electromagnetic radiation propagating along the longitudinal axis through the conical section is reflected by the beveled end surface at an angle that is transverse to the longitudinal axis.
    • 用于横向重定向电磁辐射的环形侧面火光光学装置包括二氧化硅的锥形部分,与锥形部分相邻的二氧化硅锥形部分和环形斜面端面。 二氧化硅的锥形部分的直径随着朝向发射端的方向上的纵向轴线的距离而增加。 二氧化硅的锥形部分包括围绕圆锥孔的二氧化硅壁。 锥形孔具有沿着纵向轴线朝向发射端的方向的距离而增加的直径。 环形斜面端表面形成在发射端处的二氧化硅壁上,并且相对于纵向轴线成角度,使得沿着纵向轴线穿过圆锥形部分传播的电磁辐射被倾斜的端面以横向于 纵轴。
    • 10. 发明授权
    • High energy fiber terminations and methods
    • 高能纤维终端和方法
    • US07699535B2
    • 2010-04-20
    • US12002464
    • 2007-12-17
    • Stephen E. Griffin
    • Stephen E. Griffin
    • G02B6/36
    • G02B6/3835G02B6/3813G02B6/3855G02B6/4296
    • A ferrule and method are presented that fuses optical fibers, capillaries and the like to ferrules while reducing deformation of the fused component and the ferrule and minimizing stresses within the assembly. Reduced deformation and stress is accomplished by providing high contact angles in a symmetrical, short section of fusion in fusing the component carried by the ferrule to the ferrule. It is particularly applicable to hermetic terminations of polymer clad fiber optics where irregular glass fusion joints cause irregular light leakage at the fiber launch but benefits are significant when used for other fiber and capillary architectures as well.
    • 提出了一种套管和方法,其将光纤,毛细管等融合到套圈上,同时减少熔化部件和套圈的变形并使组件内的应力最小化。 通过在对称短的熔融部分中提供高接触角来将由套圈承载的部件熔合到套圈上来实现减小的变形和应力。 特别适用于聚合物包覆光纤的密封端子,其中不规则的玻璃熔合接头在纤维发射时引起不规则的光泄漏,但是当用于其它纤维和毛细管结构时,益处也是显着的。