Rotary type multichannel fluorescence excitation apparatus and method based on input-output optical fiber
A technology of excitation fluorescence, input and output, applied in the field of photoelectric detection in biomedicine, to achieve the effects of high detection accuracy, fast speed, and simple electromechanical structure
Patent Information
- Authority / Receiving Office
- CN · China
- Current Assignee / Owner
- Publication Date
- 2008-04-09
- Estimated Expiration
- Not applicable · inactive patent
Smart Images
Figure 1 Figure 2
Abstract
Description
technical field
[0001] The invention relates to a rotary multi-channel excitation fluorescence device and method based on input and output optical fibers, and belongs to the technical field of photoelectric detection in biomedicine. Background technique
[0002] Because the external light source stimulates the object to be detected to induce fluorescence detection, it has very little impact on organisms, animals and human bodies. More importantly, the dynamic range and sensitivity of fluorescence detection are getting higher and higher, approaching or catching up with radioactive detection, so fluorescence detection It is widely used in life sciences, medical research and practical applications, especially in the field of real-time detection of living organisms, animals and human bodies.
[0003] In the classic multi-channel excitation-induced fluorescence device and method, one input optical fiber and another output optical fiber are used to transmit light, that is, one inp...
Examples
Embodiment
[0018] For the single-channel detection device shown in Figure 1, the light emitted by the light source 1 becomes monochromatic light through the excitation light filter 2, then converges through the incident coupling lens 3, and couples into one of a group of multi-channel input optical fibers 4. In the optical fiber, the monochromatic light irradiates the sample 5 in the reaction cell after coming out of the input optical fiber 4, and the sample 5 is excited to emit fluorescence; The emitted fluorescence becomes parallel light through the output coupling lens 7, and all the narrow-band fluorescence filtered by the release filter 8 is projected onto a rotatable disk, and the drive motor drives the disk to rotate; a hole is opened where the fluorescence is projected onto the disk After the projected fluorescence passes through the hole, it is vertically incident on the photodetector 9, and the photodetector 9 performs photoelectric conversion, amplification, filtering and analo...