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    • 1. 发明专利
    • Optimized method for lid biosensor resonance detection
    • 用于生物传感器谐振检测的优化方法
    • JP2012211918A
    • 2012-11-01
    • JP2012145975
    • 2012-06-28
    • Corning Incコーニング インコーポレイテッド
    • JACQUES GOLLIERGARRETT A PIECHMICHAEL BRIAN WEBBWU QI
    • G01N21/27
    • G01J3/28G01J3/02G01J3/0218G01J3/1895G01J3/2803G01N21/7743
    • PROBLEM TO BE SOLVED: To monitor a biological event on top of a biosensor without suffering from parasitic reflections and/or pixelation effects.SOLUTION: An optical interrogation system 100 is capable of interrogating a biosensor 102 and using a low pass filter 138 to digitally remove problematic parasitic reflections contained in the spectrum 117 of an optical resonance which makes it easier to determine whether or not a biological event occurred on the biosensor. In another embodiment, the optical interrogation system 100 is capable of interrogating a biosensor and using an algorithm for oversampling 142 and smoothing to reduce oscillations in the estimated location of an optical resonance caused by the problematical pixelation effect which makes it easier to determine whether or not a biological event occurred on the biosensor.
    • 要解决的问题:监测生物传感器顶部的生物学事件,而不会发生寄生反射和/或像素化效应。 光学询问系统100能够询问生物传感器102并使用低通滤波器138来数字地去除包含在光学共振的光谱117中的有问题的寄生反射,这使得更容易确定生物 事件发生在生物传感器上。 在另一个实施例中,光询问系统100能够询问生物传感器并使用用于过采样142和平滑的算法以减少由问题像素化效应引起的光学共振的估计位置中的振荡,这使得更容易确定是否 生物传感器发生生物事件。 版权所有(C)2013,JPO&INPIT
    • 2. 发明专利
    • Splice junction part and method for joining micro-structured optical fiber and conventional optical fiber
    • 接合微结构光纤和传统光纤的SPLICE接头部件和方法
    • JP2010286842A
    • 2010-12-24
    • JP2010165720
    • 2010-07-23
    • Corning Incコーニング インコーポレイテッド
    • FAJARDO JAMES CGALLAGHER MICHAEL TWU QI
    • G02B6/255G02B6/00G02B6/02G02B6/032G02B6/122
    • G02B6/2551G02B6/02347
    • PROBLEM TO BE SOLVED: To provide a splice junction part capable of preventing a remarkable loss between an optical fiber having microstructure and a conventional type optical fiber. SOLUTION: A carbon coating 21 is applied onto an end part 15 of the first micro-structured optical fiber 1, the end part of the first micro-structured optical fiber is grounded, the end parts of the both optical fibers are aligned with an opposed relation, to bring an optical axis of the first micro-structured optical fiber into the same axis with an optical axis of the second optical fiber 3, the first arc 23 is generated from an electrically operated fusion connection machine 18, the end parts of the both optical fibers are exposed to the first arc for the first period, the end part of the first micro-structured optical fiber is brought into contact with the end part of the second optical fiber, to form the junction part, and the junction part is exposed to the second arc for the second period longer than the first period, to form an optical coupling part. COPYRIGHT: (C)2011,JPO&INPIT
    • 要解决的问题:提供能够防止具有微结构的光纤与常规型光纤之间的显着损耗的接合接合部。 解决方案:将碳涂层21施加到第一微结构光纤1的端部15上,第一微结构光纤的端部接地,两根光纤的端部对齐 具有相对的关系,为了使第一微结构光纤的光轴与第二光纤3的光轴成相同的轴,第一弧23由电动熔接机18产生,端部 两个光纤的一部分在第一周期中暴露于第一弧,第一微结构光纤的端部与第二光纤的端部接触,以形成接合部,并且 接合部分暴露于比第一周期长的第二周期的第二弧,以形成光耦合部分。 版权所有(C)2011,JPO&INPIT