Claims
- 1. A multi-capillary array including:
a plurality of capillaries that are filled with a separation medium, each capillary of the plurality having a respective first portion into which a sample can be introduced, and a respective light-irradiatable portion that is capable of being irradiated with excitation light, wherein the plurality of light-irradiatable portions are arranged in a row on a plane and are capable of being simultaneously irradiated with an excitation light source, and a substance that has a refractive index that is higher than the refractive index of air and lower than the refractive index of water, wherein the substance is disposed between two or more adjacent light-irradiatable portions.
- 2. The multi-capillary array according to claim 1, wherein the substance comprises water, an aqueous solution, a fluorine-containing compound, or a combination thereof.
- 3. The multi-capillary array according to claim 1, wherein the substance comprises a fluorine-containing compound that is a liquid at room temperature and atmospheric pressure.
- 4. The multi-capillary array according to claim 1, wherein the substance comprises a fluorine-containing polymer.
- 5. The multi-capillary array according to claim 1, wherein the substance comprises a fluorine-containing compound having a refractive index of from about 1.29 to about 1.32.
- 6. The multi-capillary array according to claim 1, wherein the number of capillaries in the plurality of capillaries is about 24 or greater.
- 7. The multi-capillary array according to claim 1, wherein the light-irradiatable portions of the capillaries are in contact with one another, arranged side-by-side in a planar array.
- 8. The multi-capillary array according to claim 1, wherein the light-irradiatable portions of the capillaries are spaced from one another, arranged side-by-side in a planar array.
- 9. A device comprising:
a multi-capillary array including a plurality of capillaries filled with a separation medium, each capillary of the plurality having a respective first portion into which a sample can be introduced, and a respective light-irradiatable portion, wherein the plurality of light-irradiatable portions are arranged in a row on a plane and a substance is disposed between two or more adjacent light-irradiatable portions, the substance having a refractive index that is higher than the refractive index of air and lower than the refractive index of water; an excitation light source capable of emitting excitation light to simultaneously irradiate the plurality of light-irradiatable portions; and a detector capable of detecting light emitted by samples disposed within the light-irradiatable portions upon irradiation with excitation light.
- 10. The device according to claim 9, further comprising a power supply capable of supplying a voltage to a current path that includes the first portions and the light-irradiatable portions.
- 11. The device according to claim 9, wherein said substance comprises water, an aqueous solution, a fluorine-containing compound, or a combination thereof.
- 12. The device according to claim 9, wherein said substance comprises a fluorine-containing compound that is a liquid at room temperature and atmospheric pressure.
- 13. The device according to claim 9, wherein said substance comprises a fluorine-containing polymer.
- 14. The device according to claim 9, wherein said substance comprises a fluorine-containing compound having a refractive index of from about 1.29 to about 1.32.
- 15. The device according to claim 9, wherein the number of capillaries in the plurality of capillaries is about 24 or greater.
- 16. The device according to claim 9, further comprising a background light-blocking member disposed between the detector and the plurality of capillaries, wherein the background light-blocking member has a detection window that allows light emitted from samples in the respective light-irradiatable portions to pass through.
- 17. A device comprising:
a multi-capillary array including a plurality of capillaries that are filled with a separation medium, each capillary of the plurality having a respective first portion into which a sample can be introduced, and a respective light-irradiatable portion that is capable of being irradiated with excitation light, wherein the light-irradiatable portions are arranged in a row on a plane; a power supply capable of applying a voltage to a current path that includes the first portions and the light-irradiatable portions; an excitation light source capable of emitting excitation light in a direction toward the plurality of light-irradiatable portions to simultaneously irradiate the light-irradiatable portions; a detector capable of detecting light emitted by samples in the light-irradiatable portions upon irradiation of the samples with excitation light; and a vessel that holds a liquid having a refractive index that is higher than the refractive index of air and lower than the refractive index of water, in areas between two or more adjacent light-irradiatable portions, the liquid being located in a space which is interposed among the plurality of capillaries and through which the excitation light passes; wherein a temperature gradient of the liquid, with respect to a direction that is perpendicular to both an axial direction of the light-irradiatable portions and the direction of travel of the excitation light from the excitation light source, is substantially zero.
- 18. A device comprising:
a plurality of capillaries filled with a separation medium, each capillary of the plurality having a respective first portion into which a sample can be introduced, and a light-irradiatable portion that is capable of being irradiated with excitation light; a vessel that includes a first flat-plate part on which a plurality of the light-irradiatable portions are arranged in a row, and a second flat-plate part, the vessel holding a liquid having a refractive index that is higher than the refractive index of air and lower than the refractive index of water, in areas between two or more adjacent light-irradiatable portions, and wherein the light-irradiatable portions are disposed in a space between the first flat-plate part and the second flat-plate part; a power supply capable of supplying a voltage to a current path that includes the first portions and the light-irradiatable portions; an excitation light source capable of emitting excitation light that passes through the plurality of light-irradiatable portions; a detector capable of detecting light that is emitted by samples in the light-irradiatable portions upon excitation with excitation light; and a temperature control unit to control the temperature of the first flat-plate part to be higher than the temperature of the second flat-plate part.
- 19. A device comprising:
a multi-capillary array including a plurality of capillaries that are filled with a separation medium, each capillary of the plurality having a respective first portion into which a sample can be introduced, and a respective light-irradiatable portion that is capable of being irradiated with excitation light, wherein the light-irradiatable portions are arranged in a row on a plane; a power supply capable of supplying a voltage to a current path that includes the first portions and the light-irradiatable portions; an excitation light source capable of emitting excitation light in a direction toward the plurality of light-irradiatable portions simultaneously; a detector capable of detecting light emitted by samples in the light-irradiatable portions upon irradiation with excitation light; and a sealed vessel that contains a liquid in areas between two or more adjacent light-irradiatable portions, and that contains a gas; wherein the multi-capillary array includes a bubble-accommodating space that is capable of accommodating the gas, and the bubble-accommodating space is provided in a position through which excitation light, emitted from the excitation light source, does not pass.
- 20. A device comprising:
a multi-capillary array including a plurality of capillaries that are filled with a separation medium, each capillary of the plurality having a respective first portion into which a sample can be introduced, and a respective light-irradiatable portion that is capable of being irradiated with excitation light; and a sealed vessel including an interior containing a foam material and through which the light-irradiatable portions pass, wherein the foam material is disposed between two or more adjacent light-irradiatable portions in the sealed vessel.
- 21. The device according to claim 20, wherein the sealed vessel includes a liquid injection port from where foam is injected into the interior of the sealed vessel.
- 22. A device comprising:
a multi-capillary array including a plurality of capillaries that are filled with a separation medium, each capillary of the plurality having a respective first portion into which a sample can be introduced, and a respective light-irradiatable portion that is capable of being irradiated with excitation light, the plurality of capillaries being arranged in a row on a plane; an excitation light source capable of providing excitation beam paths that pass through the light-irradiatable portions of the plurality of capillaries; a detector for detecting emission beams emitted by samples in the light-irradiatable portions upon irradiation of the sample with excitation light; and a light-transmitting medium disposed between two or more adjacent light-irradiatable portions and being transmissive of excitation light generated by the excitation light source; wherein the light-transmitting medium has a shape including a curved surface disposed along an emission beam path between the light-irradiatable portions and the detector.
- 23. The device according to claim 22, wherein the cross-sectional shape of the curved surface is circular and centered on an intersection between the light-irradiatable portions and the excitation light.
- 24. The device according to claim 22, wherein a cross-sectional shape of the curved surface is a circle, ellipse, or hyperbolic curve.
- 25. A device comprising:
a multi-capillary array including a plurality of capillaries that are filled with a separation medium, each capillary of the plurality having a respective first portion into which a sample can be introduced, and a respective light-irradiatable portion that is capable of being irradiated with excitation light; a detector for detecting emission beams emitted by samples in the light-irradiatable portions upon irradiation with excitation light; and a vessel that holds a liquid having a refractive index that is higher than the refractive index of air, and through which passes the light-irradiatable portions; wherein the vessel includes a curved surface disposed along an emission beam path between the light-irradiatable portions and the detector.
- 26. A device comprising:
a multi-capillary array including a plurality of capillaries arranged in a row on a plane and filled with a separation medium, each capillary of the plurality having a respective first portion for introducing a sample, and a respective light-irradiatable portion capable of being irradiated with excitation light; a first source of first excitation light beams, disposed in a position to emit first excitation beams along a beam path through the light-irradiatable portions; and a first polarizing plate disposed along an excitation beam path between the first excitation light source and the multi-capillary array.
- 27. A device according to claim 26, further comprising a second source of second excitation light beams, and a second polarizing plate, wherein the source of the first excitation light beams is disposed in a position to emit the first excitation beams in a first direction through the light-irradiatable portions, and the second source of second excitation light beams is disposed in a position to emit second excitation beams in a second direction that is substantially opposite to the first direction and through the light-irradiatable portions, the second polarizing plate being disposed along a second excitation beam path between the second source of excitation light beams and the multi-capillary array.
- 28. The device according to claim 27, wherein the first source of first excitation light beams and the second source of the second excitation light beams comprise separate light sources.
- 29. The device according to claim 28, wherein the first source of first excitation light beams and the second source of second excitation light beams, comprise separate laser light sources.
- 30. The device according to claim 27, further comprising a half-wave plate disposed along an excitation beam path between the first polarizing plate and the multi-capillary array.
- 31. The device according to claim 27, wherein the first source of first excitation light beams and the second source of second excitation light beams, comprise the same excitation light source, and a beam splitter is disposed along a beam path between the excitation light source and the multi-capillary array.
- 32. The device according to claim 31, wherein the excitation light source comprises a single laser excitation light source.
- 33. The device according to claim 31, further comprising:
a first half-wave plate disposed along an excitation light beam path that transmits through the beam splitter, and disposed between the beam splitter and the multi-capillary array; and a second half-wave plate disposed along an excitation light beam path that is reflected by the beam splitter, and disposed between the beam splitter and the multi-capillary array.
- 34. The device according to claim 31, wherein excitation light transmitted through the beam splitter is directed along a first beam path toward the multi-capillary array, and excitation light reflected by the beam splitter is directed along a second beam path toward the multi-capillary array, and wherein the first and second beam paths travel in directions substantially opposite to one another as they respectively pass through the multi-capillary array.
- 35. The device according to claim 30, wherein the half-wave plate rotates the polarization of excitation light emitted from the first excitation light source, about 45°.
- 36. The device according to claim 26, wherein the light-irradiatable portions extend along respective axial lengths of the capillaries, and excitation light from the excitation light source is directed toward the light-irradiatable portions at an angle less than 90° or greater than 90° relative to the axial lengths of the light-irradiatable portions.
- 37. The device according to claim 26, further comprising a detector capable of detecting light emitted by samples in the light-irradiatable portions upon irradiation with excitation light, wherein the multi-capillary array further includes a barrier that blocks excitation light that is reflected by the light-irradiatable portions in a direction toward the detector.
- 38. A device comprising:
a sealed vessel that includes
a multi-capillary array including a plurality of capillaries that are filled with a separation medium, each capillary of the plurality having a respective first portion into which a sample can be introduced, and a respective light-irradiatable portion that is capable of being irradiated with excitation light, the light-irradiatable portions being arranged in a row on a reference plane, and a substance contained in the sealed vessel and disposed between two or more adjacent light-irradiatable portions, wherein the substance has a refractive index that is higher than the refractive index of air and lower than the refractive index of water, and the sealed vessel includes a first surface on a first plane that is substantially parallel to the reference plane, and a second surface on a second plane that is substantially perpendicular to the first plane; and a platform including a multi-capillary array attachment part for attaching the sealed vessel to, and detaching the sealed vessel from, the platform, the multi-capillary array attachment part including a first attachment reference face that contacts the first surface, and a second attachment reference face that contacts the second surface.
- 39. The device according to claim 38, wherein the reference plane and the first plane are on the same plane.
- 40. The device according to claim 38, further comprising an excitation light source, wherein excitation light from the excitation light source is emitted in a direction through the second plane.
Priority Claims (2)
Number |
Date |
Country |
Kind |
2001-298987 |
Sep 2001 |
JP |
|
2002-158494 |
May 2002 |
JP |
|
CROSS-REFERENCE TO RELATED APPLICATIONS
[0001] The present application claims a priority benefit from Japanese Patent Applications Nos. 2001-298987, filed Sep. 28, 2001, and 2002-158494, filed May 31, 2002, and claims the benefit of earlier filed U.S. Provisional Patent Application No. ______, filed Sep. 27, 2002 in the name of Nordman et al., and entitled “Multi-Capillary Array Electrophoresis Device” (Attorney Docket No. 5010-055), all of which are herein incorporated in their entireties by reference.
Provisional Applications (1)
|
Number |
Date |
Country |
|
60414090 |
Sep 2002 |
US |