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    • 1. 发明授权
    • DNA biosensor and methods for making and using the same
    • DNA生物传感器及其制造和使用方法
    • US07615780B2
    • 2009-11-10
    • US11427544
    • 2006-06-29
    • Steven Alfred TysoeEugene BarashAndrew David Pris
    • Steven Alfred TysoeEugene BarashAndrew David Pris
    • H01L23/58
    • H01S5/34333B82Y20/00H01S5/005H01S5/02248H01S5/18308H01S5/18338H01S5/18341
    • Disclosed herein are biosensors and methods for making and using the same. In one embodiment, the sensor for detecting an analyte comprises: a substrate, recognition elements specific for the analyte, an excitation source, a detector, a chamber located between the substrate and the excitation source and between the substrate and the detector, and an emission filter. The recognition elements are tethered to the substrate such that the recognition elements can be exposed to a sample. The excitation source is capable of emitting a first light having a first light peak intensity at a first wavelength, wherein the first light can excite a luminophore to emit a second light when the recognition elements interact with the analyte. The detector is capable of detecting the second light emitted by the luminophore. The emission filter is capable of filtering in a band gap that includes the first light peak intensity.
    • 本文公开了生物传感器及其制造和使用方法。 在一个实施例中,用于检测分析物的传感器包括:基底,对分析物特异的识别元件,激发源,检测器,位于基底和激发源之间以及基底和检测器之间的腔室,以及发射 过滤。 将识别元件束缚于基底,使得识别元件可以暴露于样品。 激发源能够发射具有第一波长的第一光峰强度的第一光,其中当识别元件与分析物相互作用时,第一光可以激发发光体以发射第二光。 检测器能够检测由发光体发出的第二光。 发射滤波器能够在包括第一光峰强度的带隙中进行滤波。
    • 2. 发明申请
    • DNA BIOSENSOR AND METHODS FOR MAKING AND USING THE SAME
    • DNA生物传感器及其制备和使用方法
    • US20080230716A1
    • 2008-09-25
    • US11427544
    • 2006-06-29
    • Steven Alfred TysoeEugene BarashAndrew David Pris
    • Steven Alfred TysoeEugene BarashAndrew David Pris
    • G01N23/22
    • H01S5/34333B82Y20/00H01S5/005H01S5/02248H01S5/18308H01S5/18338H01S5/18341
    • Disclosed herein are biosensors and methods for making and using the same. In one embodiment, the sensor for detecting an analyte comprises: a substrate, recognition elements specific for the analyte, an excitation source, a detector, a chamber located between the substrate and the excitation source and between the substrate and the detector, and an emission filter. The recognition elements are tethered to the substrate such that the recognition elements can be exposed to a sample. The excitation source is capable of emitting a first light having a first light peak intensity at a first wavelength, wherein the first light can excite a luminophore to emit a second light when the recognition elements interact with the analyte. The detector is capable of detecting the second light emitted by the luminophore. The emission filter is capable of filtering in a band gap that includes the first light peak intensity.
    • 本文公开了生物传感器及其制造和使用方法。 在一个实施例中,用于检测分析物的传感器包括:基底,对分析物特异的识别元件,激发源,检测器,位于基底和激发源之间以及基底和检测器之间的腔室,以及发射 过滤。 将识别元件束缚于基底,使得识别元件可以暴露于样品。 激发源能够发射具有第一波长的第一光峰强度的第一光,其中当识别元件与分析物相互作用时,第一光可以激发发光体以发射第二光。 检测器能够检测由发光体发出的第二光。 发射滤波器能够在包括第一光峰强度的带隙中进行滤波。
    • 4. 发明申请
    • PORTABLE LIGHT GENERATION AND DETECTION SYSTEM
    • 便携式发光和检测系统
    • US20080003664A1
    • 2008-01-03
    • US11427504
    • 2006-06-29
    • Steven TysoeEugene BarashThomas Stecher
    • Steven TysoeEugene BarashThomas Stecher
    • H01J3/14C12M1/34
    • G01N21/0303B01L3/5027
    • A field deployable optical assembly for use in testing a light-responsive sample is disclosed. The assembly includes a microfluidic device, a first optical package, and a second optical package. The first optical package includes a light emitting diode (LED), a first optical device, and a first light-path control, the first optical package configured to guide and focus light from the LED onto the sample. The microfluidic device includes a tethered control substance. In response to a substance within the sample being associated with, and attaching to, the tethered control, the sample emits light. The second optical package includes a photo sensor, a second optical device, and a second light-path control, the second optical package configured to guide and focus the light emitted from the sample onto the photo sensor.
    • 公开了用于测试光响应样品的现场部署光学组件。 组件包括微流体装置,第一光学封装和第二光学封装。 第一光学封装包括发光二极管(LED),第一光学器件和第一光路控制,第一光学封装构造成将来自LED的光引导并聚焦到样品上。 微流体装置包括栓系对照物质。 响应于样品中的物质与束缚对照相关联并连接到束带对照,样品发光。 第二光学封装包括光传感器,第二光学器件和第二光路控制,第二光学封装构造成将从样品发射的光引导并聚焦到光传感器上。
    • 5. 发明申请
    • System and method for multimode imaging
    • 多模成像系统和方法
    • US20070206192A1
    • 2007-09-06
    • US11363938
    • 2006-03-01
    • Pavel FomitchovEugene BarashAhmad YektaJoseph Masino
    • Pavel FomitchovEugene BarashAhmad YektaJoseph Masino
    • G01N21/25
    • G01N21/6458G01N21/47G01N2201/0407G01N2201/1042G02B21/0048G02B21/0076G02B21/367
    • A system and method for multimode imaging of at least one sample is disclosed. The system includes at least one light source; an optical system selected responsive to a mode of operation of the imaging system; and a detector capable of selective reading of pixels. The at least one sample is moved elative to the optical system using a sample movement technique selected from the group consisting of step sample moving and continuous sample moving. The method includes the steps of (1) selecting a mode of operation for the imaging system; (2) transmitting light from at least one light source through an optical system selected in response to the mode of operation for the imaging system; (3) moving the at least one sample relative to the optical system using a sample movement technique selected from the group consisting of step sample moving and continuous sample moving; and (4) selectively reading pixels with a detector.
    • 公开了一种用于至少一个样品的多模成像的系统和方法。 该系统包括至少一个光源; 响应于成像系统的操作模式选择的光学系统; 以及能够选择性地读取像素的检测器。 使用选自步骤样品移动和连续样品移动的样品移动技术将至少一个样品移动到光学系统。 该方法包括以下步骤:(1)选择成像系统的操作模式; (2)从至少一个光源透射通过响应于成像系统的操作模式选择的光学系统的光; (3)使用选自步骤样品移动和连续样品移动的样本移动技术来移动所述至少一个样品相对于所述光学系统; 和(4)用检测器选择性地读取像素。
    • 6. 发明授权
    • Portable light generation and detection system
    • 便携式发光和检测系统
    • US07820428B2
    • 2010-10-26
    • US11427504
    • 2006-06-29
    • Steven TysoeEugene BarashThomas Stecher
    • Steven TysoeEugene BarashThomas Stecher
    • C12M1/34C12M3/00G01J1/10
    • G01N21/0303B01L3/5027
    • A field deployable optical assembly for use in testing a light-responsive sample is disclosed. The assembly includes a microfluidic device, a first optical package, and a second optical package. The first optical package includes a light emitting diode (LED), a first optical device, and a first light-path control, the first optical package configured to guide and focus light from the LED onto the sample. The microfluidic device includes a tethered control substance. In response to a substance within the sample being associated with, and attaching to, the tethered control, the sample emits light. The second optical package includes a photo sensor, a second optical device, and a second light-path control, the second optical package configured to guide and focus the light emitted from the sample onto the photo sensor.
    • 公开了用于测试光响应样品的现场部署光学组件。 组件包括微流体装置,第一光学封装和第二光学封装。 第一光学封装包括发光二极管(LED),第一光学器件和第一光路控制,第一光学封装构造成将来自LED的光引导并聚焦到样品上。 微流体装置包括栓系对照物质。 响应于样品中的物质与束缚对照相关联并连接到束带对照,样品发光。 第二光学封装包括光传感器,第二光学器件和第二光路控制,第二光学封装构造成将从样品发射的光引导并聚焦到光传感器上。
    • 8. 发明授权
    • System and method for multimode imaging
    • 多模成像系统和方法
    • US07567346B2
    • 2009-07-28
    • US11363938
    • 2006-03-01
    • Pavel A. FomitchovEugene BarashAhmad YetkaJoseph Masino, III
    • Pavel A. FomitchovEugene BarashAhmad YetkaJoseph Masino, III
    • G01N21/25
    • G01N21/6458G01N21/47G01N2201/0407G01N2201/1042G02B21/0048G02B21/0076G02B21/367
    • A system and method for multimode imaging of at least one sample is disclosed. The system includes at least one light source; an optical system selected responsive to a mode of operation of the imaging system; and a detector capable of selective reading of pixels. The at least one sample is moved elative to the optical system using a sample movement technique selected from the group consisting of step sample moving and continuous sample moving. The method includes the steps of (1) selecting a mode of operation for the imaging system; (2) transmitting light from at least one light source through an optical system selected in response to the mode of operation for the imaging system; (3) moving the at least one sample relative to the optical system using a sample movement technique selected from the group consisting of step sample moving and continuous sample moving; and (4) selectively reading pixels with a detector.
    • 公开了一种用于至少一个样品的多模成像的系统和方法。 该系统包括至少一个光源; 响应于成像系统的操作模式选择的光学系统; 以及能够选择性地读取像素的检测器。 使用选自步骤样品移动和连续样品移动的样品移动技术将至少一个样品移动到光学系统。 该方法包括以下步骤:(1)选择成像系统的操作模式; (2)从至少一个光源透射通过响应于成像系统的操作模式选择的光学系统的光; (3)使用选自步骤样品移动和连续样品移动的样本移动技术来移动所述至少一个样品相对于所述光学系统; 和(4)用检测器选择性地读取像素。