Claims
- 1. An orthogonal read assembly, comprising:
an immunoassay reaction chamber; a read cell comprising a lumen in fluid communication with said immunoassay reaction chamber; a transmitter configured to transmit energy through said lumen; and a detector configured to sense energy emitted transversely from said lumen.
- 2. The orthogonal read assembly of claim 1, wherein said transmitter transmits said energy at an oblique entry angle to said lumen.
- 3. The orthogonal read assembly of claim 2, wherein said oblique angle is substantially 45°.
- 4. The orthogonal read assembly of claim 1, wherein said transmitter comprises an optical transmitter, and said detector comprises an optical detector.
- 5. The orthogonal read assembly of claim 1, wherein said transmitter comprises a laser, and said detector comprises an optical detector.
- 6. The orthogonal read assembly of claim 5, wherein said laser is configured to transmit laser energy at a wavelength of approximately 655 nm, and said optical detector is configured to sense optical energy at a wavelength of between 635 nm to 670 nm.
- 7. The orthogonal read assembly of claim 5, wherein said optical transmitter comprises a silicon diode.
- 8. The orthogonal read assembly of claim 1, wherein said energy is sensed from said lumen at an angle substantially perpendicular to said lumen.
- 9. The orthogonal read assembly of claim 1, wherein said lumen is cylindrically shaped.
- 10. The orthogonal read assembly of claim 1, wherein said read cell is composed of transparent plastic.
- 11. The orthogonal read assembly of claim 1, wherein said read cell is parallel-pipe shaped.
- 12. The orthogonal read assembly of claim 1, wherein said lumen comprises an energy transmission port, and said transmitter is configured to transmit said energy through said lumen via said transmission port.
- 13. The orthogonal read assembly of claim 1, wherein said energy transmission port comprises an optical energy transmission port, and said transmitter comprises an optical transmitter.
- 14. An orthogonal read assembly, comprising:
an immunoassay reaction chamber containing labeled antigen that is displaced when an analog to said labeled antigen flows through said immunoassay reaction chamber; a read cell comprising a lumen in fluid communication with said immunoassay reaction chamber; a transmitter configured to transmit energy through said lumen to excite said labeled antigen to transversely emit energy from said lumen; and a detector configured to sense said transversely emitted energy from said labeled antigen.
- 15. The orthogonal read assembly of claim 14, wherein said transmitter transmits said energy at an oblique entry angle to said lumen.
- 16. The orthogonal read assembly of claim 15, wherein said oblique angle is substantially 45°.
- 17. The orthogonal read assembly of claim 14, wherein said transmitter comprises an optical transmitter, said transmitted energy comprises optical energy, said detector comprises an optical detector, and said sensed energy comprises optical energy.
- 18. The orthogonal read assembly of claim 14, wherein said transmitter comprises a laser, said transmitted energy comprises laser energy, said detector comprises an optical detector, and said sensed energy comprises optical energy.
- 19. The orthogonal read assembly of claim 18, wherein said laser is configured to transmit laser energy at a wavelength of approximately 655 nm, and said optical detector is configured to sense optical energy at a wavelength of between 635 nm to 670 nm.
- 20. The orthogonal read assembly of claim 18, wherein said optical transmitter comprises a silicon diode.
- 21. The orthogonal read assembly of claim 14, wherein said labeled antigen comprises a fluorescent labeled antigen, said transmitter comprises a laser, said transmitted energy comprises laser energy that causes said fluorescent labeled antigen to fluoresce, said detector comprises an optical detector, and said sensed energy comprises fluorescent energy.
- 22. The orthogonal read assembly of claim 14, wherein said energy is sensed from said lumen at an angle substantially perpendicular to said lumen.
- 23. The orthogonal read assembly of claim 14, wherein said lumen is cylindrically shaped.
- 24. The orthogonal read assembly of claim 14, wherein said read cell is composed of transparent plastic.
- 25. The orthogonal read assembly of claim 14, wherein said read cell is parallel-pipe shaped.
- 26. The orthogonal read assembly of claim 14, wherein said lumen comprises a transmission port, and said transmitter is configured to transmit said energy through said lumen via said transmission port.
- 27. A method of sensing an analyte within a sample, comprising:
flowing said sample through an immunoassay reaction chamber to displace labeled antigen from said immunoassay reaction chamber; flowing said displaced labeled antigen through a lumen of a read cell; transmitting energy along a longitudinal axis of said lumen to excite said displaced labeled antigen into transversely emitting energy from said lumen; and sensing said transversely emitted energy.
- 28. The method of claim 27, wherein said energy is transmitted at an oblique entry angle to said longitudinal axis.
- 29. The method of claim 28, wherein said oblique angle is a substantially 45° angle.
- 30. The method of claim 27, wherein said transmitted energy comprises optical energy, and said transversely emitted energy comprises optical energy.
- 31. The method of claim 30, wherein said optical energy comprises laser energy.
- 32. The method of claim 31, wherein said laser energy has a wavelength of approximately 655 nm, and said transversely emitted energy has a wavelength of between 635 nm to 670 nm.
- 33. The method of claim 27, wherein said labeled antigen comprises a fluorescent labeled antigen, said transmitted energy comprises laser energy that causes said fluorescent labeled antigen to fluoresce, and said sensed energy comprises fluorescent energy.
- 34. The method of claim 27, wherein said transversely emitted energy is sensed from said lumen at an angle substantially perpendicular to said longitudinal axis.
- 35. The method of claim 27, wherein said lumen comprises a transmission port, and said energy is transmitted through said lumen via said transmission port.
RELATED APPLICATIONS
[0001] The present application claims priority under 35 U.S.C. 119(e) to U.S. Provisional Application No. 60/336,596 filed Dec. 4, 2001, which is incorporated herein by reference.
Provisional Applications (1)
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Number |
Date |
Country |
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60336596 |
Dec 2001 |
US |