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    • 62. 发明公开
    • SYSTEM FOR COMMUNICATING INFORMATION FROM AN ARRAY OF SENSORS
    • 系统ZUR KOMMUNIKATION VON INFORMATIONEN AUS EINER SENSORREIHE
    • EP2668645A4
    • 2017-01-04
    • EP11857055
    • 2011-12-12
    • GENIA TECH INC
    • CHEN ROGER
    • G01N33/487
    • G01N27/3278C12Q1/6874G01N27/44791G01N33/48721
    • A system for communicating information from an array of sensors is disclosed. The system comprises a sensor array that includes a plurality of sensors, wherein each sensor senses a physical property of a material that is in communication with the sensor. The system further comprises signal processing circuitry associated with each sensor that integrates the output of the sensor over time and compares the integrated output to a threshold. The system further comprises a communication network coupled to the signal processing circuitry that outputs information indicating that the integrated output corresponding to a given sensor has reached the threshold.
    • 公开了一种用于检测分子复合物的电性能的系统。 该系统包括电耦合到分子复合物的电极,其输出受分子复合物的电特性影响的电信号,其中分子复合物的电特性对电信号的影响的特征在于期望的带宽。 该系统还包括积分放大器电路,其被配置为:从电极接收电信号。 积分放大器电路还被配置为在预定带宽内随时间选择性地放大和积分电信号的一部分,其中至少部分地基于预期带宽来选择预定带宽。
    • 66. 发明公开
    • PROCESSING OF NUCLEOTIDE SEQUENCES
    • VERARBEITUNG VON NUKLEOTIDSEQUENZEN
    • EP2954315A2
    • 2015-12-16
    • EP14708942.9
    • 2014-01-23
    • Koninklijke Philips N.V.
    • VAN DE STOLPE, AnjaFEITSMA, Harma MartineVAN DER ZAAG, Pieter JanWIMBERGER-FRIEDL, ReinholdDEN TOONDER, Jacob Marinus JanPIERIK, AnkeVAN HEMERT, Freek
    • G01N27/327C12Q1/68B82Y15/00
    • G01N27/3275B01J2219/00608B01J2219/00653B01J2219/00722B82Y15/00G01N27/3276G01N27/3278
    • The invention relates to a method and an apparatus (100) for the processing of nucleotide sequences. An apparatus (100) according to an embodiment of the invention comprises an array of electrodes (120a,120b,...), wherein at least one nanoball (NB) comprising replications of a nucleotide sequence (1,2) of interest is attached to an electrode to which only one nanoball (NB) of that size can be attached at the same time. Thus a unique association of electrodes (120a,120b,...) to nucleotide sequences (1,2) of interest can be achieved. The nanoballs (NB) are preferably produced by rolling circle amplification. Application of attractive and/or repulsive electric potentials to the electrodes (120a,120b,...) can be used to control the attachment of nanoballs (NB). The measurement of changes in the capacitance of electrodes (120a,120b,...) can be used to detect and monitor the incorporation of mono-or oligonucleotides provided sequentially by different solutions (A, T, G, C) into strands that are replicated in a nanoball (NB) at an electrode.
    • 本发明涉及一种用于处理核苷酸序列的方法和装置(100)。 根据本发明的实施例的设备(100)包括电极阵列(120a,120b ...),其中连接包含感兴趣的核苷酸序列(1,2)的重复的至少一个纳米(NB) 到只能够同时连接该尺寸的一个纳米(NB)的电极。 因此,可以实现电极(120a,120b,...)与感兴趣的核苷酸序列(1,2)的独特关联。 纳米球(NB)优选通过滚圆扩增产生。 将吸引和/或排斥电位施加到电极(120a,120b ...)可用于控制纳米棒(NB)的附着。 电极(120a,120b ...)的电容变化的测量可用于检测和监测由不同溶液(A,T,G,C)依次提供的单链或寡核苷酸的引入到 在电极上复制在纳米(NB)中。