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    • 9. 发明授权
    • Prosthesis
    • 假体
    • US06869448B2
    • 2005-03-22
    • US10341618
    • 2003-01-14
    • Michael Anthony TukeRobert Michael WozencroftAndrew Clive Taylor
    • Michael Anthony TukeRobert Michael WozencroftAndrew Clive Taylor
    • A61F2/38
    • A61F2/389
    • A tibial prosthesis has a metal tray component (1) comprising a transverse member (3) with a peripheral upstanding rim (6) and a projecting stem (4). The upstanding rim (6) includes a posterior rim portion with an undercut lip forming a pair of recesses (7, 8) and an anterior rim portion with an open angled posterior surface portion (9) and a posteriorly projecting barbed portion (10). The prosthesis also includes a tibia insert (2) made of a plastics material which fits on the tibial implant (1) within the upstanding rim (6) and has on a posterior portion thereof a shaped contour (14, 15) adapted in use to fit snugly under the undercut lip and on an anterior portion thereof an anterior surface (13) having a taper angle substantially corresponding to the angle of the open angled posterior surface portion.
    • 胫骨假体具有金属托盘部件(1),其包括具有外围直立边缘(6)和突出柄(4)的横向构件(3)。 直立边缘(6)包括后边缘部分,其具有形成一对凹口(7,8)的底切唇缘和具有开口角度后表面部分(9)的前边缘部分和一个向后突出的倒钩部分(10)。 所述假体还包括由塑料材料制成的胫骨插入件(2),所述胫骨插入物(2)装配在所述直立边缘(6)内的所述胫骨植入物(1)上,并且在其后部具有适于使用的成形轮廓(14,15) 紧贴在底切唇下方并且在其前部上具有基本上对应于开口角度后表面部分的角度的锥角的前表面(13)。
    • 10. 发明授权
    • Methods and devices for micro-isolation, extraction, and/or analysis of microscale components
    • 微量元件的微分离,提取和/或分析的方法和装置
    • US08889416B2
    • 2014-11-18
    • US13010761
    • 2011-01-20
    • Emil P. KartalovDarryl ShibataClive TaylorLawrence A. Wade
    • Emil P. KartalovDarryl ShibataClive TaylorLawrence A. Wade
    • C12N5/02C12N5/00C12M1/34C12N13/00G01N33/543
    • C12M23/16C12M23/12C12M23/22C12M25/04C12M25/14C12M35/02C12M37/04C12M47/04C12N13/00G01N33/54366
    • Provided herein are devices and methods for the micro-isolation of biological cellular material. A micro-isolation apparatus described can comprise a photomask that protects regions of interest against DNA-destroying illumination. The micro-isolation apparatus can further comprise photosensitive material defining access wells following illumination and subsequent developing of the photosensitive material. The micro-isolation apparatus can further comprise a chambered microfluidic device comprising channels providing access to wells defined in photosensitive material. The micro-isolation apparatus can comprise a chambered microfluidic device without access wells defined in photosensitive material where valves control the flow of gases or liquids through the channels of the microfluidic device. Also included are methods for selectively isolating cellular material using the apparatuses described herein, as are methods for biochemical analysis of individual regions of interest of cellular material using the devices described herein. Further included are methods of making masking arrays useful for the methods described herein.
    • 本文提供用于微生物细胞材料的微分离的装置和方法。 所描述的微分离装置可以包括保护感兴趣区域以防止DNA破坏照明的光掩模。 微型隔离装置还可以包括感光材料,该感光材料在照射之后界定存取孔,随后显影感光材料。 微隔离装置还可以包括腔室微流体装置,其包括通道,其提供对感光材料中限定的孔的通路。 微型隔离装置可以包括腔室微流体装置,其无感光材料中限定的通路孔,阀门通过微流体装置的通道控制气体或液体的流动。 还包括使用本文所述装置选择性分离细胞材料的方法,以及使用本文所述装置的细胞材料的各个感兴趣区域的生物化学分析的方法。 还包括制备用于本文所述方法的掩蔽阵列的方法。