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    • 6. 发明申请
    • Assay Device & Method
    • 测定装置和方法
    • US20080206849A1
    • 2008-08-28
    • US11573319
    • 2005-07-27
    • Krzysztof Wojciech ZakDavid Edward Williams
    • Krzysztof Wojciech ZakDavid Edward Williams
    • C12M1/00
    • G01N33/558G01N33/56944G01N2400/00G01N2469/10
    • There is disclosed a lateral flow assay device and method of producing the same. The device, which is for identifying carbohydrate antigens in a biological sample comprises a substrate having, a) a sample receiving zone, b) an extraction zone for receiving the sample from said sample receiving zone and which extraction zone comprises immobilised or otherwise absorbed therein at least one or more reactants and reagents which when combined react to form an extraction reagent for a desired antigen in said sample, said sample to be added to said sample receiving zone optionally comprising the remaining reactant required to form said extraction reagent if not present in said extraction zone, c) optionally a neutralising agent capable of bringing the pH of the resulting sample to within the operational pH range of the assay and, d) a detection zone for a labelled specific binding or capture reagent for said antigen to be detected.
    • 公开了一种侧流测定装置及其制造方法。 用于在生物样品中鉴定碳水化合物抗原的装置包括具有a)样品接收区的底物,b)用于从所述样品接收区接收样品的提取区,并且该提取区包含固定或以其他方式被其中吸收的提取区 当组合反应以形成所述样品中所需抗原的提取试剂时,所述至少一种或多种反应物和试剂,待添加到所述样品接收区的所述样品,任选地包含形成所述提取试剂所需的剩余反应物,如果不存在于所述 提取区,c)任选的能够使得到的样品的pH达到测定操作pH范围内的中和剂,和d)用于待检测的所述抗原的标记的特异性结合或捕获试剂的检测区。
    • 7. 发明授权
    • Resistive gas sensing
    • 电阻气体检测
    • US5814281A
    • 1998-09-29
    • US732271
    • 1996-10-28
    • David Edward WilliamsRuth RidleyEliot Sizeland
    • David Edward WilliamsRuth RidleyEliot Sizeland
    • G01N27/12G01N30/64
    • G01N27/12
    • A resistive gas sensor has a porous semiconducting oxide body in which the pore surfaces are decorated with a precious metal. The sensor operates at ambient temperatures for detection and measurement of target gases, especially carbon monoxide. The porous sensor body is formed of primary crystallites agglomerated together, the agglomerate size being less than 10 times the primary crystallite size, and the primary crystallite size having an average diameter of less than 5 micrometer. From 0.05 to 80% of the pore surfaces are covered by the metallic phase, the metallic phase consisting of particles having an average size of less than 50 nanometers. Presence of the target gas is indicated by a change in electrical resistance of the sensor.
    • PCT No.PCT / GB95 / 00986 Sec。 371日期1996年10月28日第 102(e)日期1996年10月28日PCT提交1995年5月1日PCT公布。 WO95 / 30143 PCT出版物 日期1995年11月9日电阻气体传感器具有多孔半导体氧化物体,其中孔表面用贵金属装饰。 传感器在环境温度下工作,用于检测和测量目标气体,特别是一氧化碳。 多孔传感器体由附聚在一起的初级微晶形成,团聚体尺寸小于初级微晶尺寸的10倍,并且初级微晶尺寸的平均直径小于5微米。 0.05至80%的孔表面被金属相覆盖,金属相由平均尺寸小于50纳米的颗粒组成。 目标气体的存在由传感器的电阻变化表示。
    • 9. 发明授权
    • Gas sensor
    • 气体传感器
    • US5858739A
    • 1999-01-12
    • US884442
    • 1997-06-27
    • David Edward Williams
    • David Edward Williams
    • G01N27/12G01N33/00G01N27/04G01N27/416
    • G01N33/007G01N27/12
    • A method for determining the presence of a first gas in a second gas uses a gas sensor made up of at least two pairs of electrodes, each pair of electrodes having different spacing between the electrodes. The electrodes of the gas sensor have surfaces that are reactive to the gases under investigation. The gas sensor is exposed to the gases, and the electrical resistances between the pairs of electrodes are measured over a period of time. `The results are compared with a calibration curve to determine if the first gas is present in the second, and to determine of the sensor is malfunctioning.
    • 用于确定第二气体中第一气体的存在的方法使用由至少两对电极构成的气体传感器,每对电极在电极之间具有不同的间隔。 气体传感器的电极具有与被调查气体反应的表面。 气体传感器暴露于气体,并且在一段时间内测量成对的电极之间的电阻。 “将结果与校准曲线进行比较,以确定第一个气体是否存在于第二个气体中,并确定传感器发生故障。