Claims
- 1. A sample processing apparatus for treating samples arranged on a carrier comprising:
a vial station for containing at least two reagent vials, a carrier station arranged for intermediate storage of a plurality of carriers, a probe drive adapted to move a probe, wherein the probe drive is arranged to aspirate a portion of reagent from a selected reagent vial of the vial station with a probe and to apply reagent to a selected carrier of the carrier station, a reagent mixer having a mixing cup adapted to receive two or more reagents and mix element adapted to mix the reagents in the mixing cup, wherein said reagent mixer is adapted to dispense the reagent mixture from the mixing cup to a selected carrier of the carrier station.
- 2. A sample processing apparatus according to claim 1, wherein the probe drive is arranged to apply the reagent mixture from the mixing cup to selected carrier of the carrier station.
- 3. A sample processing apparatus according to claim 1 or 2, wherein the probe drive is arranged to aspirate portions of reagents from at least two selected reagent vials of the vial station and dispense said portions of reagents into the mixing cup.
- 4. A sample processing apparatus according to any of claims 1 to 3, wherein the reagent mixer further comprises cup drive arranged for cyclic movement of the mixing cup so as to mix reagents contained in the mixing cup.
- 5. A sample processing apparatus according to claim 4, wherein the cyclic movement is a rotation of the mixing cup and wherein the rotation is an intermittent rotation in a clockwise and in an anticlockwise direction.
- 6. A sample processing apparatus according to claim 5, wherein the rotation takes place about a substantially vertical axis.
- 7. A sample processing apparatus according to claim 4, wherein the movement is a combination of rotations with variable speed, various speeds, stops and change of direction, wherein the rotations is controlled by control element according to the sample processing protocol for the sample(s) processed in the apparatus.
- 8. A sample processing apparatus according to claim 3, wherein the mixing cup has inner walls extending upwardly and outwardly from a bottom part of the mixing cup, and the cup drive is capable of rotating the mixing cup at an angular speed sufficient to fling reagents contained therein out of the mixing cup.
- 9. A sample processing apparatus according to claim 8, wherein the reagent mixer comprises a waste reagent collecting chamber having a sidewall part laterally surrounding the mixing cup, and wherein waste reagent collecting chamber is arranged to collect reagents flung out of the mixing cup by rotation of the cup.
- 10. A sample processing apparatus according to claim 3, wherein the reagent mixer further comprises a mixing cup holder adapted to receive and support the mixing cup in a releasable manner.
- 11. A method of fully automated treating of samples arranged on a carrier of a sample processing apparatus controlled by control element, wherein the method comprises the steps of:
arranging a plurality of carriers intermediately in a carrier station, each carrier having a sample arranged thereon, dispensing a portion of a first reagent selected from a plurality of reagents to a mixing cup, dispensing a portion of a second reagent selected from a plurality of reagents to the mixing cup, mixing the reagents in the mixing cup, moving the probe to the mixing cup with a probe drive, aspirating a portion of the mixed reagents from the mixing cup with the probe, moving the probe to a selected one of said carriers, and dispensing the mixed reagents to the selected carrier, so as to perform a treatment of the sample arranged on the selected carrier.
- 12. A method according to claim 11, wherein the steps of dispense portions of the first and the second reagents comprises the steps of:
moving a probe to a first, selected reagent vial with the probe drive, aspirating a portion of the first reagent from the first reagent vial with the probe, moving the probe to the mixing cup with the probe drive, dispensing the portion of the first reagent to the mixing cup, moving a probe to a second, selected reagent vial with the probe drive, aspirating a portion of the second reagent from the second reagent vial with the probe, moving the probe to the mixing cup with the probe drive, and dispensing the portion of the second reagent to the mixing cup.
- 13. A method according to claim 11 or 12, further comprising the step of controlling the rotation pattern according to the sample processing protocol thereby optimising the quality the mixing in the mixer cup in respect to the reagents present in the mixer cup.
- 14. A method according to claim 11 or 12, further comprising the step of adding a protective gas covering the reagent mixture in the mixer cup.
- 15. A method according to claim 14, wherein the protective gas is selected from the the group consisting of noble gasses, nitrogen, and carbon dioxide.
Parent Case Info
[0001] This application claims the benefit of U.S. Provisional Application No. 60/435,601, filed Dec. 20, 2002, hereby incorporated by reference.
Provisional Applications (1)
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Number |
Date |
Country |
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60435601 |
Dec 2002 |
US |