Apparatus and methods for handling and spectrophotometry of small liquid samples
US-11054364-B2 · Jul 6, 2021 · US
US11994458B2 · US · B2
| Field | Value |
|---|---|
| Publication number | US-11994458-B2 |
| Application number | US-202117545675-A |
| Country | US |
| Kind code | B2 |
| Filing date | Dec 8, 2021 |
| Priority date | Feb 4, 2021 |
| Publication date | May 28, 2024 |
| Grant date | May 28, 2024 |
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Integrated light interrogation modules are provided. In embodiments, the subject integrated light interrogation modules include a flow cell having a light-accessible flow channel for transporting particles in a flow stream, a focusing optical assembly integrated with the flow cell, and a connector for operably attaching a fiber optic light conveyor to the focusing optical assembly, where the focusing optical assembly is projects excitation wavelength light from the fiber optic light conveyor onto a focal spot of the flow cell when the fiber optic light conveyor is operably attached to the connector. In certain embodiments, focusing optical assemblies also include a connector for operably attaching a fiber optic light collection element for collecting fluorescent light emitted by the particles transported through the flow cell. Flow cytometers, methods and kits for practicing the invention are also provided.
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What is claimed is: 1. An integrated light interrogation module comprising: a flow cell comprising a light-accessible flow channel for transporting particles in a flow stream; a focusing optical assembly integrated with the flow cell; and a connector for operably attaching a fiber optic light conveyor to the focusing optical assembly, wherein the focusing optical assembly is configured to project excitation wavelength light from the fiber optic light conveyor onto a focal spot of the flow cell when the fiber optic light conveyor is operably attached to the connector. 2. The integrated light interrogation module according to claim 1 , wherein the focusing optical assembly is attached to an outer surface of the flow cell. 3. The integrated light interrogation module according to claim 2 , wherein the focusing optical assembly comprises a lens integrated with the flow cell in the direction of excitation as defined by the fiber optic light conveyor connector. 4. The integrated light interrogation module according to claim 3 , wherein the focusing optical assembly comprises a second lens integrated with the flow cell in the direction of excitation as defined by the fiber optic light conveyor connector. 5. The integrated light interrogation module according to claim 4 , wherein the second lens comprises a reflective material configured to reflect excitation wavelength light back to the focal spot. 6. The integrated light interrogation module according to claim 3 , wherein the lens is a micro-lens. 7. The integrated light interrogation module according to claim 1 , wherein the focusing optical assembly is embedded in the flow cell. 8. The integrated light interrogation module according to claim 1 , wherein the fiber optic light conveyor connector is configured to releasably attach the fiber optic light conveyor to the focusing optical assembly. 9. The integrated light interrogation module according to claim 1 , further comprising a connector for operably attaching a fiber optic light collection element to the focusing optical assembly, wherein the fiber optic light collection element is configured to collect fluorescent light emitted by the particles transported through the focal spot following irradiation of the particles with excitation wavelength light. 10. The integrated light interrogation module according to claim 9 , further comprising an auxiliary lens positioned between the fiber optic fluorescent light collection element connector and the focusing optical assembly. 11. The integrated light interrogation module according to claim 9 , wherein the integrated light interrogation module comprises a single focusing optical assembly. 12. The integrated light interrogation module according to claim 11 , wherein the single focusing optical assembly is configured to operably connect to a single fiber optic light conveyor and a single fiber optic light collection element. 13. The integrated light interrogation module according to claim 1 , further comprising an auxiliary lens positioned between the fiber optic fluorescent light conveyor connector and the focusing optical assembly. 14. The integrated light interrogation module according to claim 1 , wherein the integrated light interrogation module comprises: a plurality of focusing optical assemblies integrated with the flow cell; and a plurality of connectors for operably attaching a fiber optic light conveyor to each focusing optical assembly in the plurality of focusing optical assemblies. 15. The integrated light interrogation module according to claim 14 , further comprising a plurality of connectors for operably attaching a fiber optic light collection element to each focusing optical assembly in the plurality of focusing optical assemblies. 16. The integrated light interrogation module according to claim 14 , wherein each of the fiber optic light conveyor connectors is arranged orthogonally along the length of the flow cell with respect to one or more of the adjacent fiber optic light conveyor connectors. 17. The integrated light interrogation module according to claim 1 , further comprising a housing surrounding the flow cell. 18. The integrated light interrogation module according to claim 1 , wherein the housing is opaque. 19. A flow cytometer comprising: a light source; a fiber optic light conveyor optically coupled to the light source; and an integrated light interrogation module comprising: a flow cell comprising a light-accessible flow channel for transporting particles in a flow stream; a focusing optical assembly integrated with the flow cell; and a connector for operably attaching the fiber optic light conveyor to the focusing optical assembly, wherein the focusing optical assembly is configured to project excitation wavelength light from the fiber optic light conveyor onto a focal spot of the flow cell when the fiber optic light conveyor is operably attached to the connector. 20. A method of analyzing a sample, the method comprising: (a) introducing a biological sample into a flow cytometer comprising: a light source; a fiber optic light conveyor optically coupled to the light source; and an integrated light interrogation module comprising: a flow cell comprising a light-accessible flow channel for transporting particles in a flow stream; a focusing optical assembly integrated with the flow cell; and a connector for operably attaching a fiber optic light conveyor to the focusing optical assembly, wherein the focusing optical assembly is configured to project excitation wavelength light from the fiber optic light conveyor onto a focal spot of the flow cell when the fiber optic light conveyor is operably attached to the connector; and (b) flow cytometrically analyzing the sample.
the optical arrangement forming an integrated apparatus with the sample container, e.g. a flow cell · CPC title
for cytology · CPC title
Adjustment of focus; Alignment · CPC title
the analysis being performed on a sample stream · CPC title
specially adapted for sorting particles, e.g. by their size or optical properties · CPC title
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