Claims
- 1. A reagent dissolution device comprising a housing, a diluent, and at least one reagent bed, wherein the diluent and the at least one reagent bed are separated by a friable barrier and a flow distribution disk.
- 2. The reagent dissolution device of claim 1, further comprising a porous expansion component located between the friable barrier and the flow distribution disk.
- 3. The reagent dissolution device of claim 1, wherein the flow distribution disk contains a plurality of directional channels disposed at a range from 30 to 90 degrees with respect to the vertical axis of the disk.
- 4. The reagent dissolution device of claim 1, wherein the flow distribution disk contains a plurality of directional channels disposed at a range from 45 to 75 degrees with respect to the vertical axis of the disk.
- 5. The reagent dissolution device of claim 1, wherein the flow distribution disk contains a plurality of directional channels disposed at a range from 55 to 65 degrees with respect to the vertical axis of the disk.
- 6. The reagent dissolution device of claim 1, wherein the flow distribution disk comprises a top layer and an adjacently disposed bottom layer that form a distribution chamber.
- 7. The reagent dissolution device of claim 6, wherein the bottom layer is a porous plate,
- 8. The reagent dissolution device of claim 6, wherein the bottom layer comprises a plurality of directional channels bounded by an inlet port and an outlet port.
- 9. The reagent dissolution device of claim 1, further comprising a pressure-generating plunger.
- 10. The reagent dissolution device of claim 1, further comprising a pressure-generating spring.
- 11. The reagent dissolution device of claim 1, wherein the diluent comprises a first liquid reagent.
- 12. The reagent dissolution device of claim 11, where in the at least one reagent bed contains a second liquid reagent.
- 13. The reagent dissolution device of claim 1, wherein the at lest one reagent bed comprises a dry reagent bed.
- 14. A method of preparing a pharmaceutically acceptable solution comprising:
providing a dissolution chamber, wherein the dissolution chamber comprises a housing, a diluent, and at least one reagent bed, wherein the diluent and the at least one reagent bed are separated by a friable barrier and a flow distribution disk; applying sufficient pressure to the diluent such that the friable barrier is ruptured and the diluent is applied to the flow distribution disk, micro-spirals are creating in the diluent emerging from the distribution disk; and dissolving the at least one reagent bed with the diluent such that the pharmaceutically acceptable solution is prepared.
- 15. The method of claim 14, wherein mixing comprises dissolving dry reagent from the at least one reagent bed.
- 16. The method of claim 14, wherein mixing comprises mixing the diluent with liquid reagent from the at least one reagent bed.
- 17. A reagent delivery device comprising:
a housing defining a fluid flow path therethrough, a dry reagent bed within the housing; a compression component exerting pressure upon the dry reagent bed; and a flow distribution disk positioned upstream of the dry reagent bed, the disk including at least one angled flow passage therethrough.
RELATED APPLICATIONS
[0001] This application claims priority to U.S. Provisional Patent Application 60/289,030, filed May 4, 2001, the disclosure of which is incorporated by reference in its entirety.
Provisional Applications (1)
|
Number |
Date |
Country |
|
60289030 |
May 2001 |
US |