Claims
- 1. A coplanar waveguide biosensor for detecting molecular or cellular events, comprising:
a one-port coplanar waveguide transmission line operable to support the propagation of a electromagnetic test signal, comprising:
a signal line configured to conduct a time-varying voltage therealong; and one or more ground elements configured to maintain a time-invariant voltage therealong, the one or more ground elements spaced apart from the signal line and located generally within the same plane as the signal line, wherein a detection region is formed between a portion of the signal line and a portion of at least one of the one or more ground elements; and a sample containment structure intersecting the detection region of the one-port coplanar waveguide transmission line, wherein the sample containment structure comprises a cavity operable to hold 1 ml or less of sample solution within the detection region.
- 2. The coplanar waveguide biosensor of claim 1, wherein the sample containment structure comprises a well structure.
- 3. The coplanar waveguide biosensor of claim 1, wherein the sample containment structure comprises a fluid channel.
- 4. The coplanar waveguide biosensor of claim 1, wherein the sample containment structure comprises a flow tube.
- 5. The coplanar waveguide biosensor of claim 1, wherein the signal line comprises a tapered section.
- 6. The coplanar waveguide biosensor of claim 1, wherein the one or more ground elements comprises a tapered section.
- 7. The coplanar waveguide biosensor of claim 1, wherein the signal line comprises a tapered section and the one or more ground elements comprises a tapered section.
- 8. The coplanar waveguide biosensor of claim 1, wherein the coplanar waveguide transmission line comprises a resonant structure.
- 9. The coplanar waveguide biosensor of claim 1, further comprising a molecular event electromagnetically coupled to the signal line.
- 10. The coplanar waveguide biosensor of claim 9, wherein the molecular event is directly or indirectly physically attached to the coplanar waveguide transmission line within the detection region
- 11. The coplanar waveguide biosensor of claim 9, wherein the molecular event is separated from the coplanar waveguide transmission line within the detection region.
- 12. The coplanar waveguide biosensor of claim 1, further comprising a cellular event electromagnetically coupled to the signal line.
- 13. The coplanar waveguide biosensor of claim 12, wherein the cellular event is directly or indirectly physically attached to the coplanar waveguide transmission line within the detection region
- 14. The coplanar waveguide biosensor of claim 12, wherein the cellular event is separated from the coplanar waveguide transmission line within the detection region.
- 15. A coplanar waveguide biosensor test system, comprising:
a signal source operable to output an electromagnetic test signal; a one-port coplanar waveguide transmission line electrically coupled to the signal source and operable to support the propagation of a electromagnetic signal, comprising:
a signal line configured to conduct a time-varying voltage therealong; and one or more ground elements configured to maintain a time-invariant voltage therealong, the one or more ground elements spaced apart from the signal line and located generally within the same plane as the signal line, wherein a detection region is formed between a portion of the signal line and a portion of at least one of the one or more ground elements; and a sample containment structure intersecting the detection region of the one-port coplanar waveguide transmission line, wherein the sample containment structure comprises a cavity operable to hold 1 ml or less of sample solution within the detection region; and a signal detector electrically coupled to the coplanar waveguide signal line.
- 16. The coplanar waveguide biosensor test system of claim 15, wherein the signal detector comprises a network analyzer.
- 17. The coplanar waveguide biosensor test system of claim 15, wherein the signal detector comprises a vector voltmeter.
- 18. The coplanar waveguide biosensor test system of claim 15, wherein the signal source is operable to output one or more signals from 300 KHz to 3 GHz.
- 19. The coplanar waveguide biosensor test system of claim 15, wherein the signal source is operable to output one or more signals from 45 MHz to 26 GHz.
- 20. A coplanar waveguide biosensor for detecting molecular or cellular events, comprising:
a two-port coplanar waveguide transmission line operable to support the propagation of an electromagnetic test signal, comprising:
a signal line configured to conduct a time-varying voltage therealong; and one or more ground elements configured to maintain a time-invariant voltage therealong, the one or more ground elements spaced apart from the signal line and located generally within the same plane as the signal line, wherein a detection region is formed between a portion of the signal line and a portion of at least one of the one or more ground elements; and a sample containment structure intersecting the detection region of the one-port coplanar waveguide transmission line, the sample containment structure comprising:
a cavity operable to hold 1 ml or less of sample solution within the detection region; and at least one sample port operable to supply the sample solution to the cavity.
CROSS REFERENCE TO RELATED APPLICATIONS
[0001] This is a continuation-in-part of U.S. patent application Ser. No. 09/365,978, filed Aug. 2, 1999, which is a continuation-in-part of U.S. patent application Ser. No. 09/243,194, filed Feb. 1, 1999, which claims the benefit of U.S. Provisional Application No. 60/073,445, filed Feb. 2, 1998.
Provisional Applications (1)
|
Number |
Date |
Country |
|
60073445 |
Feb 1998 |
US |
Continuation in Parts (2)
|
Number |
Date |
Country |
Parent |
09365978 |
Aug 1999 |
US |
Child |
09929521 |
Aug 2001 |
US |
Parent |
09243194 |
Feb 1999 |
US |
Child |
09365978 |
Aug 1999 |
US |