Fluorescent quantitative detection instrument

A fluorescent quantitative and detector technology, applied in the field of medical testing, can solve the problems of large volume, complicated technical procedures, inconvenient real-time testing, etc.

Inactive Publication Date: 2011-06-08
GUANGZHOU WONDFO BIOTECH
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  • Summary
  • Abstract
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Problems solved by technology

The main disadvantages are: the problem of non-specific staining has not been completely resolved, the objectivity of the result judgment is insufficient, and the technical procedures are still relatively complicated
However, the general-purpose fluorescent quantitative detectors in the prior art are usually large in size, which is not convenient for instant inspection, which limits its development in inconvenient transportation and underdeveloped areas.

Method used

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Embodiment Construction

[0032] The following combination figure 1 with figure 2 And specific examples to illustrate the present invention in detail.

[0033] The fluorescence quantitative detector of the present invention includes an excitation light source module 10, a photoelectric conversion module, and a control analysis module 3. The excitation light source module includes a first laser module assembly 1 and a second laser module assembly 2. The photoelectric conversion module includes a first laser module assembly 1 and a second laser module assembly 2. A photoelectric conversion module 41 and a second photoelectric conversion module 42; the first laser module assembly 1 is used to emit the excitation beam A into the detection area 53 of the reagent strip; the second laser module assembly 2 is used to emit the coding area on the reagent strip Excitation beam B; the photoelectric conversion modules 41 and 42 are used to receive the reflected fluorescent signal C and laser signal D and perform phot...

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Abstract

The invention provides a fluorescent quantitative detection instrument. The instrument comprises an excitation light source module, a photoelectric conversion module, a control analysis module and a software system, wherein the excitation light source module comprises a first laser module component and a second laser module component; the first laser module component is used for transmitting an excitation beam A to a detection region on a reagent strip; the second laser module component is used for transmitting an excitation beam B to a coding region on the reagent strip; the photoelectric conversion module is used for receiving a reflected fluorescent signal C and a laser signal D and carrying out photoelectric signal conversion; the control analysis module comprises a main circuit, a motor and a display screen, and is used for processing received electric signals output by the photoelectric conversion module; the fluorescent quantitative detection instrument is provided with a reagent strip slot for placing a reagent strip and an ID card slot for placing a scaler chip ID card; and the motor is used for driving the reagent strip to move. The fluorescent quantitative detection instrument has the following beneficial effect: the specially designed optical system and compensation circuit are adopted, so the fluorescent quantitative detection instrument has higher sensitivity and accuracy in immunofluorescent quantitative detection.

Description

[0001] 【Technical Field】 [0002] The invention belongs to the field of medical testing, and particularly relates to a fluorescence quantitative detector for capturing fluorescence signals. 【Background technique】 [0003] Immunofluorescence detection technology has been successful since Coons Equivalent to the first use of fluorescein for labeling in 1941. This technique of labeling antibodies with fluorescent substances for antigen localization is called fluorescent antibody technique. The method of using fluorescent antibody to trace or check the corresponding antigen is called the fluorescent antibody method; the method of using known fluorescent antigen markers to trace or check the corresponding antibody is called the fluorescent antigen method. These two methods are collectively referred to as immunofluorescence technology, because fluorescent pigments can not only bind to antibody globulins to detect or locate various antigens, but also bind to other proteins to detect or ...

Claims

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Application Information

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Patent Type & Authority Applications(China)
IPC IPC(8): G01N21/64G01N33/558
Inventor 王继华王治才
Owner GUANGZHOU WONDFO BIOTECH
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