Claims
- 1. A liquid medium submergible sample preparing arrangement comprising:
a carrier structure; at least one cavity in said carrier structure; an arrangement for controllable generation of a magnetic field through influence of a control signal in communication with said cavity; and a magnetic covering structure for covering/uncovering said cavity in operative interaction with said magnetic field.
- 2. The arrangement as recited in claim 1, further comprising:
a magnetically active material is arranged inside said cavity.
- 3. The arrangement as recited in claim 1, wherein said arrangement for controllable generation of a magnetic field is made of an electrically conducting material
- 4. The arrangement as recited in claim 1, wherein said arrangement for controllable generation of a magnetic field is made of aluminum.
- 5. The arrangement as recited in claim 1, wherein said arrangement for controllable generation of a magnetic field through a conductor is applied a current of different strength.
- 6. The arrangement as recited in claim 1, wherein said arrangement for controllable generation of a magnetic field is a coil.
- 7. The arrangement as recited in claim 6, wherein a current amplitude and the number of windings in the coil are proportional to the strength of the magnetic field.
- 8. The arrangement as recited in claim 1, further comprising a cavity provided in a substrate.
- 9. The arrangement as recited in claim 8, wherein each cavity is surrounded by a device, which directs said lid using external magnets that creates magnetic fields counteracting the field created by material deposited around each cavity.
- 10. The arrangement as recited in claim 8, further comprising a lid for closing said cavity.
- 11. The arrangement as recited in claim 10, wherein said lid is a magnetic bead.
- 12. The arrangement as recited in 119, wherein said bead is directed onto a cavity using external magnets that create magnetic fields counteracting the field created by the material deposited around each cavity.
- 13. The arrangement as recited in claim 11, wherein said lid is a micro-bead introduced in said liquid medium.
- 14. The arrangement as recited in claim 8, wherein said cavities are etched in a silicon surface and the lid is provided as a large magnetic particle in the liquid.
- 15. The arrangement as recited in claim 14, wherein said particle are attracted to a predetermined cavity when the coil of said cavity is energized by electric current to produce magnetic field of spatial attraction.
- 16. The arrangement as recited in claim 15, wherein before sealing off the cavity, smaller magnetic particles are attracted into the cavity.
- 17. The arrangement as recited in claim 1, wherein said sample is a magnetic particle covered with appropriate chemical.
- 18. The arrangement as recited in claim 1, further comprising means for detecting the presence of a magnetic capping lid capping a cavity.
- 18. The arrangement as recited in claim 17, wherein said capping is detected by detecting a change in inductance in the control circuit, which produces the attractive magnetic field, whereby the bead acts like a magnetic yoke in a transformer, thereby increasing the inductance.
- 20. The arrangement as recited in claim 18, wherein said capping is detected through decrease of electromagnetic radiation to a detector inside the cavity.
- 21. The arrangement as recited in claim 18, wherein said capping is detected through changes of capacitance between electrodes inside the cavity or near a cavity rim.
- 22. The arrangement as recited in claim 1, further comprising means for detecting changes of inductance when a magnetic particle passes through the opening into or out of a cavity.
- 23. The arrangement as recited in claim 22, wherein said detections are determined using the direction of externally controlled magnetic field, by one of (1) changing the direction of the electric current flowing through a coil and (2) flipping an external magnetic.
- 24. The arrangement as recited in claim 22, wherein said particle contains particular molecular coating, which reacts with one of (1) the liquid in that cavity and (2) with the coating adsorbed on the walls of the cavity.
- 23. The arrangement as recited in claim 7, wherein the substrate is made of silicon, Si, or of Si-compound, such as Si-oxide Si-nitride or Si-carbide, or combinations thereof, or a suitable polymer, such as polyethylene, polyethylene glycol, polyethylene oxide, fluorine containing a polymer (PTFE BTeflon), or silicon containing a polymer.
- 26. A method for preparing samples comprising:
utilizing a sample preparing arrangement submergible in a liquid medium, said arrangement comprising a carrier structure, at least one cavity in said carrier, in communication with said cavity an arrangement for controllable generation of a magnetic field through influence of a control signal; and providing said sample preparing arrangement with a magnetic covering structure for covering/uncovering said cavity in operative interaction with said cavity; and connecting a signal to said sample preparing arrangement and generating a magnetic field to trap at least part of the samples.
- 27. The method as recited in claim 26, further comprising applying a current of different strength to said sample preparing arrangement.
- 28. The method as recited in claim 26, further comprising providing said arrangement with a cavity in a substrate.
- 29. The method as recited in claim 28, further comprising arranging a magnetic lid for closing said cavity.
- 30. The method as recited in claim 29, further comprising directing said bead onto a cavity using external magnets that create magnetic fields counteracting the field created by the material deposited around each cavity.
- 31. The method as recited in claim 27, further comprising attracting smaller magnetic particles into the cavity before sealing off the cavity.
- 32. The method as recited in claim 31, further comprising covering said magnetic particles with a chemical.
- 33. The method as recited in claim 27, further comprising detection of the presence of a magnetic capping lid that caps the cavity.
- 34. The method as recited in claim 27, further comprising detection of changes of inductance when a magnetic particle passes through the opening into or out of a cavity.
- 35. The method as recited in claim 34, further comprising determining said indication using the direction of externally controlled magnetic field by one of (1) changing the direction of the electric current flowing through a coil and (2) flipping an external magnetic.
- 36. The method as recited in claim 27, wherein given a known number of samples in each cavity and a density of respective coatings, quantitative data on the number of reaction between the coating on a wall of the cavity and the coating on a small sample is obtained by counting the number of samples.
CROSS REFERENCE TO RELATED APPLICATIONS
[0001] This application is a continuation patent application of International Application No. PCT/SE01/01798 filed 23 Aug. 2001 which was published in English pursuant to Article 21(2) of the Patent Cooperation Treaty, and which claims priority to Swedish Application No. 0002990-0 filed 23 Aug. 2000 and to U.S. Provisional Application No. 60/228,015 filed 24 Aug. 2000. Said applications are expressly incorporated herein by reference in their entireties.
Provisional Applications (1)
|
Number |
Date |
Country |
|
60228015 |
Aug 2000 |
US |
Continuations (1)
|
Number |
Date |
Country |
Parent |
PCT/SE01/01798 |
Aug 2001 |
US |
Child |
10248847 |
Feb 2003 |
US |