Claims
- 1. A microanalysis device comprising a substrate having:
(a) first and second substantially planar opposing surfaces; and (b) a plurality of parallel sample processing compartments comprising
(i) an intra-microanalysis device sample treatment component, (ii) an inlet port in fluid communication with the sample treatment component, and (iii) an outlet port in fluid communication with the sample treatment component.
- 2. The microanalysis device of claim 1, wherein the inlet and outlet ports are in the first and second opposing surfaces, respectively, of the substrate.
- 3. The microanalysis device of claim 1, wherein the inlet port, the outlet port, or both the inlet and outlet ports are in a lateral surface of the substrate.
- 4. The microanalysis device of claim 1, wherein the sample processing compartment further comprises an intra-microanalysis device sample flow compartment.
- 5. The microanalysis device of claim 1, wherein the sample processing compartment comprises a serial arrangement of intra-microanalysis device sample flow components and intra-microanalysis device sample treatment components.
- 6. The microanalysis device of claim 5, wherein the sample processing compartment comprises a serial arrangement of alternating intra-microanalysis device sample flow components and intra-microanalysis device sample treatment components.
- 7. The microanalysis device of claim 1, wherein the inlet port or the outlet port enable inter-microanalysis device fluid communication.
- 8. The microanalysis device of claim 7, wherein the inlet port and the outlet port enable inter-microanalysis device fluid communication.
- 9. The microanalysis device of claim 1, wherein each of the sample treatment components performs the same function.
- 10. The microanalysis device of claim 9, wherein each of the sample treatment components comprise the same element.
- 11. The microanalysis device of claim 9, wherein each of the sample treatment components comprises a different element.
- 12. The microanalysis device of claim 1, wherein each of the sample treatment components performs a different function.
- 13. The microanalysis device of claim 1, wherein the outlet port is in fluid communication with a sample detection means.
- 14. The microanalysis device of claim 13, wherein the outlet port is in fluid communication with an off-device sample detection means.
- 15. The microanalysis device of claim 13, wherein the outlet port is in fluid communication with an on-device sample detection means.
- 16. The microanalysis device of claim 1, wherein the outlet port is in fluid communication with a sample separation chamber.
- 17. The microanalysis device of claim 16, wherein the outlet port is in fluid communication with an off-device sample separation chamber.
- 18. The microanalysis device of claim 16, wherein the outlet port is in fluid communication with an on-device sample separation chamber.
- 19. A microanalysis device system comprising first and second interconnected microanalysis devices wherein each microanalysis device comprises a substrate having:
(a) first and second substantially planar opposing surfaces; and (b) a sample processing compartment which comprises
(i) an intramicroanalysis device sample treatment component, and (ii) an inlet port in fluid communication with the sample treatment component and an outlet port in fluid communication with the sample treatment component, wherein the outlet port of the first microanalysis device and the inlet port of the second microanalysis device are in fluid communication.
- 20. The microanalysis device system of claim 19, further comprising one or more additional microanalysis devices sandwiched between the first and second microanalysis devices, wherein the inlet port and the outlet port of each additional microanalysis device are in fluid communication.
- 21. The microanalysis device system of claim 19, wherein each intra-microanalysis device sample processing compartment further comprises an intramicroanalysis device sample flow compartment.
- 22. The microanalysis device system of claim 19, wherein each intra-microanalysis device sample processing compartment comprises a serial arrangement of intra-microanalysis device sample flow components and intra-microanalysis device sample treatment components.
- 23. The microanalysis device system of claim 22, wherein each intramicroanalysis device sample processing compartment comprises a serial arrangement of alternating intra-microanalysis device sample flow components and intra-microanalysis device sample treatment components.
- 24. The microanalysis device system of claim 19, wherein inter-microanalysis device fluid communication is by a direct interconnection.
- 25. The microanalysis device system of claim 24, wherein the direct interconnection comprises a boss interposed between the first and second microanalysis devices, an O-ring interposed between the first and second microanalysis device, a direct, planar adhesive contact between the first and second microanalysis device, or a sleeve fitting.
- 26. The microanalysis device system of claim 19, wherein inter-microanalysis device fluid communication is by a separate interconnection.
- 27. The microanalysis device system of claim 19, further comprising a means for aligning an outlet port in the first microanalysis device with an inlet port in the second microanalysis device.
- 28. The microanalysis device system of claim 27, wherein the alignment means comprises a separate physical alignment means, a projection-and-mating depression alignment means or an optical alignment means.
CROSS-REFERENCE TO RELATED APPLICATION
[0001] This application is related to provisional patent application Ser. No. 60/107,865, filed Nov. 9, 1998, from which priority is claimed under 35 USC § 119(e)(1) and which is incorporated herein by reference in its entirety.
Provisional Applications (1)
|
Number |
Date |
Country |
|
60107865 |
Nov 1998 |
US |
Divisions (1)
|
Number |
Date |
Country |
Parent |
09336521 |
Jun 1999 |
US |
Child |
09822968 |
Mar 2001 |
US |