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기록

METHOD FOR OBTAINING APPROXIMATE SIGNAL FOR EACH OF MULTIPLE TARGET ANALYTES, AND COMPUTER DEVICE FOR PERFORMING SAME

발명심사 중
24청구항 · 7 독립항
§ Ⅰ

개요

발명자

Sul Gi KIM; Soo Heang EO; Han Bit LEE; Iljae MIN

IPC 분류

G16B 40/10

CPC 분류

G16B40/10

A method for obtaining an approximate signal for each of a plurality of target analytes performed by a computer device includes: obtaining, from a signal generation reaction for a first target analyte and a second target analyte in a sample, a first data set measured at a first detection temperature and a second data set measured at a second detection temperature; and by using the first and the second data set, performing a joint-estimation on (a) a value of a parameter of at least one among an approximate function for approximating signal values dependent on the presence of the first target analyte and an approximate function for approximating signal values dependent on the presence of the second target analyte; and (b) a value of a magnitude parameter indicating a relationship of signal values dependent on the presence of the first target analyte between the first and the second detection temperature.

원문 (중국어)

A method for obtaining an approximate signal for each of a plurality of target analytes performed by a computer device includes: obtaining, from a signal generation reaction for a first target analyte and a second target analyte in a sample, a first data set measured at a first detection temperature and a second data set measured at a second detection temperature; and by using the first and the second data set, performing a joint-estimation on (a) a value of a parameter of at least one among an approximate function for approximating signal values dependent on the presence of the first target analyte and an approximate function for approximating signal values dependent on the presence of the second target analyte; and (b) a value of a magnitude parameter indicating a relationship of signal values dependent on the presence of the first target analyte between the first and the second detection temperature.