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    • 41. 发明授权
    • Electrode systems for electrochemical sensors
    • 电化学传感器用电极系统
    • US07074307B2
    • 2006-07-11
    • US10897312
    • 2004-07-21
    • Peter C. SimpsonJames R. PetisceVictoria Carr-BrendelJames H. Brauker
    • Peter C. SimpsonJames R. PetisceVictoria Carr-BrendelJames H. Brauker
    • G01N27/327A61B5/05
    • G01N27/3274A61B5/14532A61B5/14865C12Q1/001
    • The present invention relates generally to systems and methods for improved electrochemical measurement of analytes. The preferred embodiments employ electrode systems including an analyte-measuring electrode for measuring the analyte or the product of an enzyme reaction with the analyte and an auxiliary electrode configured to generate oxygen and/or reduce electrochemical interferants. Oxygen generation by the auxiliary electrode advantageously improves oxygen availability to the enzyme and/or counter electrode; thereby enabling the electrochemical sensors of the preferred embodiments to function even during ischemic conditions. Interferant modification by the auxiliary electrode advantageously renders them substantially non-reactive at the analyte-measuring electrode, thereby reducing or eliminating inaccuracies in the analyte signal due to electrochemical interferants.
    • 本发明一般涉及用于改进分析物的电化学测量的系统和方法。 优选实施例采用电极系统,包括用于测量被分析物的分析物测量电极或与分析物的酶反应的产物以及被配置为产生氧和/或减少电化学干扰剂的辅助电极。 通过辅助电极产生氧气有利地提高了对酶和/或对电极的氧气可利用性; 从而使得优选实施例的电化学传感器能够在缺血状况下起作用。 通过辅助电极的干扰修饰有利地使得它们在分析物 - 测量电极处基本上不反应,从而减少或消除由于电化学干扰剂引起的分析物信号的不准确性。
    • 42. 发明授权
    • Methods for making coated fiber strands having one or more heterogeneous regions
    • 制备具有一个或多个异质区域的涂覆纤维束的方法
    • US06649215B2
    • 2003-11-18
    • US09952805
    • 2001-09-12
    • Daniel Harper, Jr.John M. TurnipseedCarl R. TaylorPriya L. TabaddorJames R. Petisce
    • Daniel Harper, Jr.John M. TurnipseedCarl R. TaylorPriya L. TabaddorJames R. Petisce
    • B05D506
    • C03C25/50C03C25/1065C03C25/475
    • A coated fiber strand including at least one heterogeneous region present in one or more coating layers. The heterogeneous region(s) preferably comprises a material useful for coding of the fiber. The optical fiber can include a primary coating layer and a secondary coating layer where the heterogeneous region(s) defines one or more colored stripes in or on the secondary coating layer. A method for forming a coated fiber, such as an optical fiber, includes introducing at least one coating layer onto a fiber strand such that one or more coating layers cover a portion of the surface of the strand. At least one heterogeneous region is introduced into or onto one or more coating layers, and the strand is cured to provide a desired product. A desired functionality, e.g., coding, can thus be introduced onto a fiber without adversely effecting subsequent processing steps, e.g., curing of the coating layer(s).
    • 包括在一个或多个涂层中存在的至少一个异质区域的涂覆的纤维束。 多相区域优选地包含可用于编码纤维的材料。 光纤可以包括主涂层和二次涂层,其中非均匀区域在二次涂层中或其上限定一个或多个着色条纹。 用于形成诸如光纤的涂覆纤维的方法包括将至少一个涂层引入到纤维束上,使得一个或多个涂层覆盖该股线表面的一部分。 将至少一个非均匀区域引入到一个或多个涂层中或上一个或多个涂层上,并且将该链固化以提供所需的产物。 因此,可以将期望的功能,例如编码引入到纤维上,而不会不利地影响随后的加工步骤,例如固化涂层。
    • 46. 发明授权
    • Optical fiber cable and core
    • 光纤电缆和核心
    • US5539849A
    • 1996-07-23
    • US296554
    • 1994-08-26
    • James R. Petisce
    • James R. Petisce
    • G02B6/44
    • G02B6/4416G02B6/4427G02B6/4482
    • In accordance with the present invention, an annular insulating core member is formed from an elastomeric material surrounding a plurality of optical fibers and maintaining the group of fibers in a predetermined configuration relative to each other. More specifically, the elastomeric material is characterized by its modulus at room temperature and its bonding to each color identified optical fiber being such as to hold together said fiber configuration while allowing interfiber movement and to facilitate the exposure of the individual optical fibers upon the application of peeling forces between the elastomeric material and an optical fiber without obfuscating the color identification of the optical fibers while providing suitable mechanical properties to maintain the integrity of the fiber configuration. Additionally, the insulating core member may be incorporated into a communication cable by enclosing the core member into a sheath system with an associated strength member. For applications with high strength demands, such as undersea environments, the cable strength members may include a central elongated filament and plural layers of stranded steel wires separated from the central filament by the annular insulating core member, in which the optical fibers are embedded. Furthermore, a metallic tubular jacket preferably surrounds the stranded steel layers to provide both a DC path for powering the optical repeaters and a hermetic moisture barrier for the fibers.
    • 根据本发明,环形绝缘芯构件由围绕多根光纤的弹性体材料形成,并且将该组纤维保持在相对于彼此的预定构型。 更具体地,弹性体材料的特征在于其在室温下的模量,并且其与每种颜色识别的光纤的粘合是将所述纤维构型保持在一起,同时允许纤维间的移动,并且在应用时有助于各个光纤的曝光 弹性体材料与光纤之间的剥离力,而不会模糊光纤的颜色识别,同时提供合适的机械性能以维持光纤配置的完整性。 此外,通过将芯构件封装到具有相关联的加强构件的护套系统中,绝缘芯构件可以结合到通信电缆中。 对于诸如海底环境的高强度要求的应用,电缆强度构件可以包括中心细长细丝和通过环形绝缘芯构件与中心细丝分离的多层绞合钢丝,其中光纤被嵌入其中。 此外,金属管状套管优选地围绕绞合的钢层,以提供为光纤转发器供电的DC路径和用于纤维的密封防潮层。