CN102121901A - Detection method for semiquantitatively fast detecting electronic pen device by using gold-colloidal test strip - Google Patents
Detection method for semiquantitatively fast detecting electronic pen device by using gold-colloidal test strip Download PDFInfo
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- CN102121901A CN102121901A CN 201010564399 CN201010564399A CN102121901A CN 102121901 A CN102121901 A CN 102121901A CN 201010564399 CN201010564399 CN 201010564399 CN 201010564399 A CN201010564399 A CN 201010564399A CN 102121901 A CN102121901 A CN 102121901A
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- instrument
- gold
- test strip
- intensity value
- photelectric receiver
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Abstract
The invention discloses a detection method for semiquantitatively fast detecting an electronic pen device by using a gold-colloidal test strip, comprising the following steps: the gold-colloidal test strip is inserted into an instrument, the raised part of the front end of the gold-colloidal test strip triggers a switch of the instrument, and the instrument is started and begins to time for the first time; three light-emitting diodes simultaneously flash one time per 30 seconds, and the instrument judges the intensity value of the transmission light of photoelectric receivers positioned below a quality control line one time per 30 seconds; when the intensity value of the transmission light of the photoelectric receivers positioned below the quality control line is less than or equal to a threshold value, the instrument begins timing work for the second time; after the instrument begins second-time timing for five minutes, the three light-emitting diodes simultaneously flash one time, the instrument begins to judge the intensity value of the transmission light of all the photoelectric receivers and displays a result through a liquid crystal display; and after the result is displayed, the instrument is shut down after timing for one minute. The detection method disclosed by the invention has the advantages of convenience for operation, small error and accuracy for test.
Description
Technical field
The present invention relates to a kind of gold-marking test strip sxemiquantitative fast detecting electronic pen Device Testing method.
Background technology
The method of the traditional detection onset of ovulation and early pregnancy is by range estimation what of shade, line relatively, judges the yin and yang attribute result, and the range estimation error is big, is subjected to light power and visual acuity affected, the test result out of true.
Summary of the invention
The objective of the invention is in order to overcome above deficiency, provide a kind of easy to operate, error is little, the test accurate gold-marking test strip sxemiquantitative fast detecting electronic pen Device Testing method.
Purpose of the present invention is achieved through the following technical solutions: a kind of gold-marking test strip sxemiquantitative fast detecting electronic pen Device Testing method may further comprise the steps:
A, the gold test strip bar inserts in the instrument, the front end bossing of gold test strip bar triggers instrument switch, the instrument start, and beginning timing for the first time, time is 5 minutes, the per 30 seconds whiles of three light emitting diodes are once glittering, each glitteringly be continuously 1 second, the corresponding threshold value that stores in the photelectric receiver transmitted intensity value of a nature controlling line below of instrument judgement in per 30 seconds simultaneously and the instrument single-chip microcomputer is calculated contrast, the photelectric receiver transmitted intensity value>threshold values when the nature controlling line below, and surpass timing time, instrument does not trigger timing for the second time, and instrument judges that gold-marking test strip was for losing efficacy or not adding sample, liquid crystal display displays
, after the result showed, the instrument timing was shut down after 1 minute.
A kind of gold-marking test strip sxemiquantitative fast detecting electronic pen Device Testing method may further comprise the steps:
A, gold test strip bar insert in the instrument, the front end bossing of gold test strip bar triggers instrument switch, the instrument start, and beginning timing for the first time, time is 5 minutes, the per 30 seconds whiles of three light emitting diodes are once glittering, each glitteringly be continuously 1 second, instrument was judged the photelectric receiver transmitted intensity value of a nature controlling line below in per 30 seconds simultaneously, calculate contrast with the corresponding threshold value that stores in the instrument single-chip microcomputer, when the photelectric receiver transmitted intensity value of nature controlling line below≤threshold values, instrument begins timework for the second time;
B, instrument began the secondary timing after 5 minutes, and three light emitting diodes are simultaneously once glittering, glitteringly were continuously for 1 second, instrument begins to judge each photelectric receiver transmitted intensity value, show on LCD that by the icon of setting after the result showed, the instrument timing was shut down after 1 minute.
Further improvement of the present invention is: when the photelectric receiver transmitted intensity value below photelectric receiver transmitted intensity value≤second threshold values of nature controlling line below, photelectric receiver transmitted intensity value≤second threshold values of press the side line below, the contrast linear light 〉=second threshold values, the instrument instrument judges that gold-marking test strip is positive, liquid crystal display displays
Further improvement of the present invention is: when photelectric receiver transmitted intensity value>second threshold values of photelectric receiver transmitted intensity value≤second threshold values of nature controlling line below, detection line below, the photelectric receiver transmitted intensity value of contrast linear light below 〉=second threshold values, instrument judges that gold-marking test strip is negative, liquid crystal display displays
Further improvement of the present invention is: when photelectric receiver transmitted intensity value≤second threshold values of photelectric receiver transmitted intensity value≤second threshold values of nature controlling line below, detection line below, the photelectric receiver transmitted intensity value of contrast linear light below<second threshold values, instrument judges that gold-marking test strip is card or adds sample and polluted liquid crystal display displays
Embodiment:
In order to deepen the understanding of the present invention, the invention will be further described below in conjunction with embodiment, and this embodiment only is used to explain the present invention, do not constitute the qualification to protection domain of the present invention.
A kind of embodiment of a kind of gold-marking test strip sxemiquantitative of the present invention fast detecting electronic pen Device Testing method may further comprise the steps:
A, the gold test strip bar inserts in the instrument, the front end bossing of gold test strip bar triggers instrument switch, the instrument start, and beginning timing for the first time, time is 5 minutes, the per 30 seconds whiles of three light emitting diodes are once glittering, each glitteringly be continuously 1 second, instrument was judged the threshold values of the photelectric receiver transmitted intensity value of a nature controlling line below in per 30 seconds simultaneously, photelectric receiver transmitted intensity value below nature controlling line is threshold values always>first, and surpasses timing time, and instrument does not trigger timing for the second time, instrument judges that gold-marking test strip was for losing efficacy or not adding sample, liquid crystal display displays
, after the result showed, the instrument timing was shut down after 1 minute.
A kind of gold-marking test strip sxemiquantitative fast detecting electronic pen Device Testing method may further comprise the steps:
A, gold test strip bar insert in the instrument, the front end bossing of gold test strip bar triggers instrument switch, the instrument start, and beginning timing for the first time, the time is 5 minutes, the per 30 seconds whiles of three light emitting diodes are once glittering, each glitteringly be continuously 1 second, simultaneously instrument was judged the threshold values of the photelectric receiver transmitted intensity value of a nature controlling line below in per 30 seconds, and when the photelectric receiver transmitted intensity value of nature controlling line below≤first threshold values, instrument begins timework for the second time;
B, instrument began the secondary timing after 5 minutes, and three light emitting diodes are simultaneously once glittering, glitteringly were continuously for 1 second, instrument begins to judge the threshold values of each photelectric receiver transmitted intensity value, and by the liquid crystal display displays result, after the result showed, the instrument timing was shut down after 1 minute.
When the photelectric receiver transmitted intensity value below photelectric receiver transmitted intensity value≤second threshold values of nature controlling line below, photelectric receiver transmitted intensity value≤second threshold values of press the side line below, the contrast linear light 〉=second threshold values, the instrument instrument judges that gold-marking test strip is positive, liquid crystal display displays
When photelectric receiver transmitted intensity value≤second threshold values of nature controlling line below, the photelectric receiver transmitted intensity value of detection line below〉during the photelectric receiver transmitted intensity value of second threshold values, contrast linear light below 〉=second threshold values, instrument judges that gold-marking test strip is negative, liquid crystal display displays
When photelectric receiver transmitted intensity value≤second threshold values of photelectric receiver transmitted intensity value≤second threshold values of nature controlling line below, detection line below, the photelectric receiver transmitted intensity value of contrast linear light below<second threshold values, instrument judges that gold-marking test strip is card or adds sample and polluted liquid crystal display displays
That the present invention has is easy to operate, error is little, test accurate advantage.
Claims (5)
1. gold-marking test strip sxemiquantitative fast detecting electronic pen Device Testing method is characterized in that: may further comprise the steps:
A, the gold test strip bar inserts in the instrument, the front end bossing of gold test strip bar triggers instrument switch, the instrument start, and beginning timing for the first time, time is 5 minutes, the per 30 seconds whiles of three light emitting diodes are once glittering, each glitteringly be continuously 1 second, instrument was judged the photelectric receiver transmitted intensity value of a nature controlling line below in per 30 seconds simultaneously, calculate contrast with the corresponding threshold value that stores in the instrument single-chip microcomputer, photelectric receiver transmitted intensity value>threshold values when the nature controlling line below, and surpass timing time, instrument does not trigger timing for the second time, instrument judges that gold-marking test strip was for losing efficacy or not adding sample, show on LCD that by the icon of setting after the result showed, the instrument timing was shut down after 1 minute.
2. gold-marking test strip sxemiquantitative fast detecting electronic pen Device Testing method is characterized in that: may further comprise the steps:
A, gold test strip bar insert in the instrument, the front end bossing of gold test strip bar triggers instrument switch, the instrument start, and beginning timing for the first time, time is 5 minutes, the per 30 seconds whiles of three light emitting diodes are once glittering, each glitteringly be continuously 1 second, instrument was judged the photelectric receiver transmitted intensity value of a nature controlling line below in per 30 seconds simultaneously, calculate contrast with the corresponding threshold value that stores in the instrument single-chip microcomputer, when the photelectric receiver transmitted intensity value of nature controlling line below≤threshold values, instrument begins timework for the second time;
B, instrument began the secondary timing after 5 minutes, and three light emitting diodes are simultaneously once glittering, glitteringly were continuously for 1 second, instrument begins to judge each photelectric receiver transmitted intensity value, show on LCD that by the icon of setting after the result showed, the instrument timing was shut down after 1 minute.
3. according to the described a kind of gold-marking test strip sxemiquantitative fast detecting electronic pen Device Testing method of claim 2, it is characterized in that: among the described step B when the photelectric receiver transmitted intensity value below the photelectric receiver transmitted intensity value≤threshold values of nature controlling line below, photelectric receiver transmitted intensity value≤threshold values of press the side line below, the contrast linear light 〉=threshold values, the instrument instrument judges that gold-marking test strip is positive, shows on LCD by the icon of setting.
4. according to the described a kind of gold-marking test strip sxemiquantitative fast detecting electronic pen Device Testing method of claim 2, it is characterized in that: described step B is when the photelectric receiver transmitted intensity value>threshold values of the photelectric receiver transmitted intensity value≤threshold values of nature controlling line below, detection line below, the photelectric receiver transmitted intensity value of contrast linear light below 〉=threshold values, instrument judges that gold-marking test strip is negative, shows on LCD by the icon of setting.
5. according to the described a kind of gold-marking test strip sxemiquantitative fast detecting electronic pen Device Testing method of claim 2, it is characterized in that: described step B is when the photelectric receiver transmitted intensity value≤threshold values of the photelectric receiver transmitted intensity value≤threshold values of nature controlling line below, detection line below, the photelectric receiver transmitted intensity value of contrast linear light below<threshold values, instrument judges that gold-marking test strip is card or adds sample and polluted, and shows on LCD by the icon of setting.
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CN2010105643998A CN102121901B (en) | 2010-11-30 | 2010-11-30 | Detection method for semiquantitatively fast detecting electronic pen device by using gold-colloidal test strip |
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CN2010105643998A CN102121901B (en) | 2010-11-30 | 2010-11-30 | Detection method for semiquantitatively fast detecting electronic pen device by using gold-colloidal test strip |
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CN102121901A true CN102121901A (en) | 2011-07-13 |
CN102121901B CN102121901B (en) | 2012-07-04 |
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Cited By (1)
Publication number | Priority date | Publication date | Assignee | Title |
---|---|---|---|---|
CN104181296A (en) * | 2013-05-24 | 2014-12-03 | 南开大学 | Reference timing analysis method in colloidal gold test paper quantitative analysis |
Citations (5)
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US5679526A (en) * | 1989-01-10 | 1997-10-21 | Biosite Diagnostics Incorporated | Threshold ligand-receptor assay |
CN1451963A (en) * | 2002-04-17 | 2003-10-29 | 福州大学 | Gold-label test strip quantitative testing method and system |
CN201051102Y (en) * | 2007-05-29 | 2008-04-23 | 陈晓汀 | Quick tester for gold colloid |
CN101487844A (en) * | 2008-01-14 | 2009-07-22 | 开物科技股份有限公司 | Electronic inspection apparatus and method |
CN201378170Y (en) * | 2009-03-24 | 2010-01-06 | 南通市伊士生物技术有限责任公司 | Test paper detecting pen |
-
2010
- 2010-11-30 CN CN2010105643998A patent/CN102121901B/en active Active
Patent Citations (5)
Publication number | Priority date | Publication date | Assignee | Title |
---|---|---|---|---|
US5679526A (en) * | 1989-01-10 | 1997-10-21 | Biosite Diagnostics Incorporated | Threshold ligand-receptor assay |
CN1451963A (en) * | 2002-04-17 | 2003-10-29 | 福州大学 | Gold-label test strip quantitative testing method and system |
CN201051102Y (en) * | 2007-05-29 | 2008-04-23 | 陈晓汀 | Quick tester for gold colloid |
CN101487844A (en) * | 2008-01-14 | 2009-07-22 | 开物科技股份有限公司 | Electronic inspection apparatus and method |
CN201378170Y (en) * | 2009-03-24 | 2010-01-06 | 南通市伊士生物技术有限责任公司 | Test paper detecting pen |
Cited By (1)
Publication number | Priority date | Publication date | Assignee | Title |
---|---|---|---|---|
CN104181296A (en) * | 2013-05-24 | 2014-12-03 | 南开大学 | Reference timing analysis method in colloidal gold test paper quantitative analysis |
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CN102121901B (en) | 2012-07-04 |
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Address after: 226000 Jiangsu city of Nantong Province, Nantong economic and Technological Development Zone, Road No. 1692 No. 15 building block A Patentee after: NANTONG EGENS BIOTECHNOLOGY CO., LTD. Address before: 226000 Jiangsu Province, Nantong City Lake Economic and Technological Development Zone, Road No. 1692 No. 15 building block A Patentee before: Nantong Egens Biotechnology Co., Ltd. |