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    • 1. 发明申请
    • ACOUSTIC WAVE BIOSENSOR FOR THE DETECTION AND IDENTIFICATION OF CHARACTERISTIC SIGNALING MOLECULES IN A BIOLOGICAL MEDIUM
    • 用于检测和鉴定生物介质中特征信号分子的声波生物传感器
    • US20100178688A1
    • 2010-07-15
    • US12636252
    • 2009-12-11
    • Peter J. EdmonsonWilliam D. HuntDesmond D. Stubbs
    • Peter J. EdmonsonWilliam D. HuntDesmond D. Stubbs
    • C12M1/34
    • G01N33/54373
    • An acoustic wave biosensor comprises a plurality of spaced apart electrodes disposed on a substrate of piezoelectric material and having a biolayer matched to a specific type of autoinducer signaling molecule to be detected. The biolayer comprises a layer of heterobifunctional molecules disposed on the electrodes and on the piezoelectric material between the electrodes, and a plurality of bioreceptor molecules which bind exclusively with the specific type of autoinducer signaling molecule to be detected. The bioreceptor molecules are supported by the layer of heterobifunctional molecules, and a hydrogel layer surrounds the bioreceptor molecules to support a three-dimensional structure thereof. The bioreceptor molecules can bind with the specific type of autoinducer signaling molecule to be detected, and the biolayer is reactive thereto such that corresponding autoinducer signaling molecules bind to the biolayer and detectably vary acoustic characteristics of the acoustic wave biosensor.
    • 声波生物传感器包括设置在压电材料的衬底上的多个间隔开的电极,并且具有与要检测的特定类型的自动感染信号分子匹配的生物层。 生物层包括设置在电极和电极之间的压电材料上的异双功能分子层,以及仅与特定类型的待检测的自身诱导剂信号分子结合的多个生物受体分子。 生物受体分子由异双功能分子层支撑,水凝胶层围绕生物受体分子以支持其三维结构。 生物受体分子可以与要检测的特异性类型的自身诱导剂信号分子结合,并且生物层与其反应,使得相应的自体感染信号分子与生物层结合并可检测地改变声波生物传感器的声学特性。
    • 3. 发明授权
    • Acoustic wave biosensor for the detection and identification of characteristic signaling molecules in a biological medium
    • 用于检测和鉴定生物介质中特征信号分子的声波生物传感器
    • US08420382B2
    • 2013-04-16
    • US12636252
    • 2009-12-11
    • Peter J. EdmonsonWilliam D. HuntDesmond D. Stubbs
    • Peter J. EdmonsonWilliam D. HuntDesmond D. Stubbs
    • C12M1/34
    • G01N33/54373
    • An acoustic wave biosensor comprises a plurality of spaced apart electrodes disposed on a substrate of piezoelectric material and having a biolayer matched to a specific type of autoinducer signaling molecule to be detected. The biolayer comprises a layer of heterobifunctional molecules disposed on the electrodes and on the piezoelectric material between the electrodes, and a plurality of bioreceptor molecules which bind exclusively with the specific type of autoinducer signaling molecule to be detected. The bioreceptor molecules are supported by the layer of heterobifunctional molecules, and a hydrogel layer surrounds the bioreceptor molecules to support a three-dimensional structure thereof. The bioreceptor molecules can bind with the specific type of autoinducer signaling molecule to be detected, and the biolayer is reactive thereto such that corresponding autoinducer signaling molecules bind to the biolayer and detectably vary acoustic characteristics of the acoustic wave biosensor.
    • 声波生物传感器包括设置在压电材料的衬底上的多个间隔开的电极,并且具有与要检测的特定类型的自动感染信号分子匹配的生物层。 生物层包括设置在电极上和电极之间的压电材料上的异双功能分子层,以及仅与要检测的特异性类型的自身感染信号分子结合的多个生物受体分子。 生物受体分子由异双功能分子层支撑,水凝胶层围绕生物受体分子以支持其三维结构。 生物受体分子可以与要检测的特异性类型的自身诱导剂信号分子结合,并且生物层与其反应,使得相应的自体感染信号分子与生物层结合并可检测地改变声波生物传感器的声学特性。
    • 8. 发明申请
    • Sensing systems utilizing acoustic wave devices
    • 利用声波装置的感应系统
    • US20080315718A1
    • 2008-12-25
    • US11812687
    • 2007-06-21
    • Peter J. EdmonsonWilliam D. HuntChristopher D. CorsoAnthony DickherberMarie E. Csete
    • Peter J. EdmonsonWilliam D. HuntChristopher D. CorsoAnthony DickherberMarie E. Csete
    • H01L41/08
    • H01L41/1132G01N29/022G01N29/024G01N29/036G01N2291/02466
    • A sensing system includes an acoustic wave device comprising a body of piezoelectric material, and a first electrode assembly mounted on the piezoelectric body whereby an appropriate input applied to the electrode assembly produces an acoustic wave in the piezoelectric body and a first frequency response. The acoustic wave device also has a second electrode assembly to produce a second frequency response, the second electrode assembly being in contact with an area sensitive to a supplied stimulus to cause a characteristic of the sensitive area to change when a supplied stimulus is sensed to thereby change the second frequency response. The acoustic wave device has an output connected to the input of an amplifier, the amplifier having an output connected to the input of a coupling device. The coupling device is connected to the input of the acoustic wave device and has an output connected to a detector. The acoustic wave device, the amplifier and the coupling device are configured to be in an “off” condition when no supplied stimulus is sensed by the sensitive area of the acoustic wave device and to be in an “on” condition when a supplied stimulus is sensed by the sensitive area. The coupling device is configured to send a change signal to the detector when a change from the “off” condition to the “on” condition occurs.
    • 感测系统包括包括压电材料体的声波装置和安装在压电体上的第一电极组件,由此施加到电极组件的合适的输入在压电体中产生声波和第一频率响应。 声波装置还具有产生第二频率响应的第二电极组件,第二电极组件与所提供的刺激敏感的区域接触,以在感测到所提供的刺激时敏感区域的特性变化,从而 改变第二个频率响应。 声波装置具有连接到放大器的输入的输出,该放大器具有连接到耦合装置的输入的输出。 耦合装置连接到声波装置的输入端并具有连接到检测器的输出端。 声波装置,放大器和耦合装置被配置为处于“关闭”状态,当没有提供的刺激被声波装置的敏感区域感测并且当所提供的刺激为 感觉敏感的地区。 耦合装置被配置为当从“关闭”状态到“接通”状态的变化发生时,向检测器发送改变信号。
    • 10. 发明申请
    • Acoustic wave sensor assembly utilizing a multi-element structure
    • 使用多元件结构的声波传感器组件
    • US20090009268A1
    • 2009-01-08
    • US11822045
    • 2007-07-02
    • Peter J. EdmonsonWilliam D. HuntChristopher D. CorsoAnthony DickherberMarie E. Csete
    • Peter J. EdmonsonWilliam D. HuntChristopher D. CorsoAnthony DickherberMarie E. Csete
    • H03H9/54H03H9/64
    • G01N29/2481G01N29/022G01N29/036G01N29/348G01N2291/106
    • An acoustic wave sensor assembly includes piezoelectric material, a first acoustic wave resonator element structure mounted on the piezoelectric material for interacting with an electrical signal, the acoustic wave resonator element structure being operable to interact with an acoustic wave propagating within the piezoelectric material to produce a first frequency response. Further acoustic wave resonator element structures are mounted on the piezoelectric material for interacting with electrical signals, the further acoustic wave resonator element structures being operable to interact with further acoustic waves propagating within the piezoelectric material to produce subsequent frequency responses. The first acoustic wave resonator element structure and further acoustic wave resonator element structures are combined to form a ladder or lattice filter network to produce an overall frequency response. Sensitive areas are mounted on the piezoelectric material and associated with the acoustic wave resonator element structures which, if predetermined effects to be sensed or detected are present, are modified thereby to control the nature of the frequency responses with resultant specific perturbations of the combined frequency response and thereby provide information with respect to the predetermined effects to be sensed or detected.
    • 声波传感器组件包括压电材料,安装在压电材料上用于与电信号相互作用的第一声波谐振器元件结构,声波谐振器元件结构可操作以与在压电材料内传播的声波相互作用以产生 第一频响。 进一步的声波谐振器元件结构安装在压电材料上以与电信号相互作用,所述另外的声波谐振器元件结构可操作以与在压电材料内传播的另外的声波相互作用以产生随后的频率响应。 第一声​​波谐振器元件结构和另外的声波谐振器元件结构被组合以形成梯形或网格滤波器网络以产生总体频率响应。 敏感区域安装在压电材料上并与声波谐振器元件结构相关联,如果存在要被感测或检测到的预定效应,则其被修改,从而控制频率响应的性质,从而产生组合频率响应的特定扰动 从而提供关于要感测或检测的预定效果的信息。