发明名称 Methods of failsafing electrochemical measurements of an analyte as well as devices, apparatuses and systems incorporating the same
摘要 Methods are disclosed for measuring an analyte concentration in a fluidic sample. Such methods further allow one to provide an error code or correct and/or compensate for interferents such as an antioxidant before providing an analyte concentration. The measurement methods utilize information obtained from test sequences having at least one DC block, where DC block includes at least one recovery potential, and where a closed circuit condition of the electrode system is maintained during the DC block. The methods use information relating to status of a redox mediator during the electrochemical analysis to provide a statistical antioxidant failsafe using either a classifier or a discriminator to determine whether the antioxidant is interfering with the analyte concentration. Also disclosed are devices, apparatuses and systems incorporating the various measurement methods.
申请公布号 US9594052(B2) 申请公布日期 2017.03.14
申请号 US201514851807 申请日期 2015.09.11
申请人 Roche Diabetes Care, Inc. 发明人 Carpenter Scott E.;Chittajallu Siva
分类号 G01N27/327;G01N27/416 主分类号 G01N27/327
代理机构 代理人
主权项 1. A method of failsafing an electrochemical measurement of an analyte from antioxidant interference, the method of comprising the steps of: applying an electrical test sequence to an electrochemical biosensor, the biosensor comprising: an electrode system, a reagent including a redox mediator in electrical communication with the electrode system, and a receptacle configured to contact the fluid sample provided to the biosensor,with a fluid sample in fluidic contact with the reagent, wherein the test sequence comprises at least one direct current (DC) block, wherein the at least one DC block includes a pulsed sequence alternating between at least one excitation potential and at least one recovery potential, and wherein a closed circuit condition of the electrode system is maintained during the at least one recovery potential; measuring current response information to the test sequence, including information from the at least one excitation potential and the at least one recovery potential; determining an analyte concentration of the fluid sample utilizing the information of the excitation current response and the recovery current response, the determining compensating for at least one interferent; and providing a statistical antioxidant failsafe using either a classifier or a discriminator to determine whether an antioxidant is interfering with the analyte concentration, wherein the statistical antioxidant failsafe is based upon information from the at least one DC block that relates to the redox mediator.
地址 Indianapolis IN US