Multi-core fiber-cell laser with stretching function
A multi-core optical fiber and laser technology, applied in the direction of multi-core optical fiber, laser, laser parts, etc., can solve the problems of inconvenient single-cell adjustment, increased operation difficulty, and easy to be affected by the external environment
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Embodiment 1
[0057] Example 1: Laser measurement of single living cells by a cell laser based on a linearly distributed five-core optical fiber:
[0058] Figure 7 is a device schematic diagram of a multi-core fiber cell laser system with stretching function. In the laser system: the captured light beam is led out from the captured light source 2 by a standard single-mode fiber 6, and is divided into two paths of light through a 1×N coupler 3, respectively After passing through 4-2 to 4-N attenuators and the multi-core fiber splitter 8, they respectively enter into the other cores of the multi-core fiber 9 except the intermediate core. The excitation light beam is drawn from the excitation light source 1 by the standard single-mode fiber 6, enters the multi-core fiber splitter 8 through the attenuator 4-1 and the circulator 5, and then enters the intermediate core of the multi-core fiber 9. The sample cell is filled with liquid containing cells and stabilized on the stage 11. The optical ...
Embodiment 2
[0060] Example 2: Laser measurement of single living cells by a cell sensor based on a triangular-distributed seven-core optical fiber:
[0061] This system has the same composition as the cell sensor device with linearly distributed five-core optical fibers. Due to the change in the number and distribution of the cores, the capture beam 17 and the excitation beam 18 in the system enter the multi-core optical fiber branch through the 1×6 coupler 3 respectively. In the device 8, they are respectively injected into the corresponding cores, wherein the core bcdefg is the capture function core, which is injected with the capture beam 17, and the core a is the excitation function core, which is injected with the excitation beam 18. The cells here are HEK293 human embryonic kidney cells 15. When the system is working, the wavelength of the capture beam 17 is 980nm, and the wavelength of the excitation beam 18 is 480nm. The other cores except the middle core can be achieved by control...
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