Micro-multispectral fluorescence reception and treatment system

A processing system and multi-spectral technology, applied in the field of biochemical detection and in vitro medical diagnostic equipment, can solve problems such as low cost, and achieve the effects of easy standardization, easy manufacture, and compact design

Inactive Publication Date: 2012-01-04
易定容
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  • Summary
  • Abstract
  • Description
  • Claims
  • Application Information

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Problems solved by technology

[0007] The technical problem mainly solved by the present invention is to provide a micro-multi-spectrum fluorescence receiving and processing system, which overcomes the defect that the existing fluorescence receiving and processing unit cannot obtain the real information of the fluorescence signal in real time, accurately, at low cost, and with miniature multi-channel

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  • Micro-multispectral fluorescence reception and treatment system
  • Micro-multispectral fluorescence reception and treatment system

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Embodiment Construction

[0023] In order to describe in detail the technical content, structural features, achieved objectives and effects of the present invention, the following is a detailed description in conjunction with the embodiments and accompanying drawings.

[0024] See figure 1 as well as figure 2 , The present invention provides a micro-multispectral fluorescence receiving and processing system, including: an excitation unit 1, a photoelectric conversion unit 2 and a data processing unit 3. The test tube containing the fluorescent dye 4, that is, the object to be imaged, is placed on the microwell template 5. The excitation unit 1 emits monochromatic light uniformly irradiating the fluorescent dye 4 of the microporous module 5, and the fluorescent dye 4 is excited to emit fluorescence of a specific wavelength. The fluorescence collection unit 2 includes an optical converging part 23, a photoelectric converter 22, and a micro filter 21 close to the input end of the photoelectric converter 22. ...

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Abstract

The invention discloses a micro-multispectral fluorescence reception and treatment system. The micro-multispectral fluorescence reception and treatment system comprises an excitation unit, a fluorescence collection unit and a data processing unit, wherein the excitation unit comprises an excitation light source, an exciting light filter and an optical convergence component; the fluorescence collection unit comprises a photoelectric converter and a micro-optical filter which is attached to the photoelectric converter closely; and the micro-optical filter is a highly integrated multi-channel optical filter. An object to be imaged radiates the fluorescence with a specific wavelength under the excitation of irradiation light of the excitation unit; the optical convergence component converges the fluorescence; then the converged fluorescence is irradiated to the photoelectric converter through the micro-optical filter; the photoelectric converter acquires corresponding image information according to a fluorescence signal; and the data processing unit analyzes and processes the image information and outputs a result. The system can collect multiple fluorescence signals of stimulated radiation and acquire image information in a high-efficiency and low-cost way, and can accurately and objectively reflect detection results in real time.

Description

Technical field [0001] The invention relates to biochemical detection and in vitro medical diagnosis equipment, in particular to a micro-multispectral fluorescence receiving and processing system. Background technique [0002] At present, the instruments used in clinical diagnosis and biological testing in medical institutions and the fluorescence collection systems adopted are all characterized by polymerase chain reaction (Picymerase Chain Reaction) PCR. A primer containing a fluorescent substance is added to the PCR reaction system. The fluorescent substance emits light of another characteristic wavelength under the irradiation of an excitation light source of a specific wavelength. The PCR reaction is detected by the photomultiplier tube, optical fiber optical signal transmission, and discrete filter spectroscopy. During the process, the intensity of light emitted by the fluorescent substance can be used to monitor the progress of the PCR amplification reaction. Through comp...

Claims

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Application Information

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Patent Type & Authority Applications(China)
IPC IPC(8): G01N21/64G01N33/53
Inventor 孔令华张延平张建寰易定容
Owner 易定容
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