Claims
- 1. An automated particle sorter, comprising:
a fluid flow path for passage of biological particles, which comprises an optical cuvette; and a switch that alters the position of a collection conduit between two set points for sorting of particles according to their level of fluorescence; a light irradiation system comprising a light source that emits light through said cuvette at a wavelength that causes fluorescence excitement; a light detection apparatus comprising at least two detection elements for measuring emitted fluorescence; a data processor that receives signals from said light detection elements and according to pre-set parameters, controls said switch to physically sort said particles.
- 2. The particle sorter of claim 1, wherein said light irradiation system comprises a laser, a filter and focusing optics.
- 3. The particle sorter of claim 1, wherein said light detection apparatus comprises one or more light separation elements.
- 4. The particle sorter of claim 3, wherein said light separation elements are diachroic mirrors that reflect fluorescent light below excitation wavelength of said fluorescent compound.
- 5. The particle sorter of claim 4, wherein said light detection elements comprise two or more photomultiplier tubes.
- 6. The particle sorter of claim 5, wherein said switch is a switch that moves a collection conduit.
- 7. The particle sorter of claim 1, wherein said collection conduit comprises two tubes separated by a thin membrane.
- 8. The particle sorter of claim 1, wherein said liquid flow path is an elongated member of square or rectangular cross-sectional geometry, wherein the position of said particle is constrained.
- 9. The particle sorter of claim 1, further comprising a fluid ring over the end of said optical cuvette, wherein said fluid ring injects fluid into a particle stream as it exits said cuvette.
- 10. The particle sorter of claim 1, wherein said fluid flow path leading to said optical cuvette comprises a high density particle chamber and low density particle chamber connected by a fluid valve controlled by a data processor, wherein particle density is maintained at a predetermined level by opening and closing of said fluid valve.
- 11. The particle sorter of claim 10, wherein said low density particle chamber comprises a magnetic stir bar set on a pin.
- 12. A method of sorting biological particles according to their level of fluorescence, the method comprising:
suspending said particles in solution; moving said suspension through the a liquid flow path comprising an optical cuvette through which a light is emitted at a wavelength that excites a fluorescent compound; detecting the level of fluorescence on said particle by at least two light detection elements, wherein the signal from said light detection elements in received by a data processor that controls a switch that alters the position of a collection conduit between two set points; moving said collection conduit in accordance with the level of fluorescence associated with said particle.
- 13. The method according to claim 12, further comprising the step:
after said moving through a flow path comprising an optical cuvette, merging said suspension with a high velocity fluid flow that forces the particles into said collection conduit.
- 14. The method of claim 12, wherein said particles are whole animals of from 10 to 105 cells in size.
- 15. The method of claim 14, wherein said whole animals are viable embryos.
- 16. The method of claim 14, wherein said fluorescent compound is a protein expressed by said animal.
- 17. The method of claim 14, wherein said animals are Drosophila embryos expressing green fluorescent protein.
GOVERNMENT SUPPORT
[0001] This invention was made with Government support under contract N000 179810689 awarded by the Navy ONR. The Government has certain rights in this invention.
Provisional Applications (1)
|
Number |
Date |
Country |
|
60191693 |
Mar 2000 |
US |