Claims
- 1. A device for use in processing sample materials, the device comprising:
a body comprising a first side attached to a second side; a process array formed between the first and second sides, the process array comprising a loading structure, a main conduit comprising a length, a plurality of process chambers distributed along the main conduit, wherein the loading structure is in fluid communication with the plurality of process chambers through the main conduit; and a deformable seal located between the loading structure and the plurality of process chambers.
- 2. A device according to claim 1, wherein the deformable seal comprises a deformable portion of the second side of the body.
- 3. A device according to claim 1, wherein the deformable seal comprises a deformable portion of the second side of the body, wherein the deformable portion comprises a deformable metallic layer.
- 4. A device according to claim 1, wherein the deformable seal comprises a deformable portion of the second side of the body, the deformable portion extending along substantially all of the length of the main conduit.
- 5. A device according to claim 1, wherein the deformable seal comprises adhesive located between the first side and the second side, the adhesive extending along at least a portion of the length of the main conduit.
- 6. A device according to claim 1, wherein the deformable seal comprises adhesive located between the first side and the second side, the adhesive extending along substantially all of the length of the main conduit.
- 7. A device according to claim 1, wherein the deformable seal comprises conformable seal material.
- 8. A device according to claim 1, wherein the deformable seal comprises expandable seal material.
- 9. A device according to claim 1, wherein each process chamber of the plurality of process chambers is in fluid communication with the main conduit through a feeder conduit, and further wherein the deformable seal comprises a deformable portion of the second side of the body, the deformable portion located along the feeder conduit leading to each process chamber of the plurality of process chambers.
- 10. A device according to claim 1, wherein each process chamber of the plurality of process chambers is in fluid communication with the main conduit through a feeder conduit, and further wherein the deformable seal comprises adhesive located between the first side and the second side, the adhesive located along at least a portion of the feeder conduit leading to each process chamber of the plurality of process chambers.
- 11. A device according to claim 1, wherein each process chamber of the plurality of process chambers is in fluid communication with the main conduit through a feeder conduit, and further wherein the feeder conduits form feeder conduit angles with the main conduit that are less than 90 degrees.
- 12. A device according to claim 1, wherein the loading structure comprises a loading chamber in fluid communication with the main conduit.
- 13. A device according to claim 1, wherein the loading structure comprises a loading chamber in fluid communication with the main conduit, wherein the loading chamber defines a loading chamber volume equal to or greater than a combined volume of the main conduit and the plurality of process chambers.
- 14. A device according to claim 1, further comprising at least one reagent in at least one of the process chambers.
- 15. A device according to claim 1, wherein each process chamber of the plurality of process chambers comprises a volume of about 5 microliters or less.
- 16. A device for use in processing sample materials, the device comprising:
a body comprising a first side attached to a second side; and a process array formed between the first and second sides, the process array comprising a loading structure, a main conduit comprising a length, a plurality of process chambers distributed along the main conduit, wherein the loading structure is in fluid communication with the plurality of process chambers through the main conduit; and a deformable seal located between the loading structure and the plurality of process chambers, wherein the deformable seal comprises a deformable metallic layer forming a portion of the second side of the body and adhesive located between the first side and the second side, the adhesive extending along substantially all of the length of the main conduit, wherein closure of the deformable seal is effected by adhering the first side and the second side together using the adhesive within the main conduit.
- 17. A device for use in processing sample materials, the device comprising:
a body comprising a first side attached to a second side; pressure sensitive adhesive located between the first side and the second side, wherein the pressure sensitive adhesive extends over substantially all of the first side and substantially all of the second side; a process array formed between the first and second sides, the process array comprising a loading structure, a main conduit comprising a length, a plurality of process chambers distributed along the main conduit, wherein the loading structure is in fluid communication with the plurality of process chambers through the main conduit; and a deformable seal located between the loading structure and the plurality of process chambers.
- 18. A device according to claim 17, wherein the deformable seal comprises a deformable portion of the second side of the body.
- 19. A device according to claim 17, wherein the deformable seal comprises a deformable portion of the second side of the body, wherein the deformable portion comprises a deformable metallic layer.
- 20. A device according to claim 17, wherein the deformable seal comprises a portion of the pressure sensitive adhesive located between the first side and the second side.
- 21. A device according to claim 17, wherein the loading structure comprises a loading chamber in fluid communication with the main conduit.
- 22. A device according to claim 17, wherein the loading structure comprises a loading chamber in fluid communication with the main conduit, wherein the loading chamber defines a loading chamber volume equal to or greater than a combined volume of the main conduit and the plurality of process chambers.
- 23. A device for use in processing sample materials, the device comprising:
a body comprising a first side attached to a second side; pressure sensitive adhesive located between the first side and the second side; a melt bond area between the first side and the second side, wherein the melt bond area attaches only a portion of the first side to the second side, and further wherein the melt bond area is substantially free of the pressure sensitive adhesive; and a process array formed between the first and second sides, the process array comprising a loading structure, a main conduit comprising a length, and a plurality of process chambers distributed along the main conduit, wherein the main conduit is in fluid communication with the loading structure and the plurality of process chambers.
- 24. A device according to claim 23, wherein the pressure sensitive adhesive is located between the first side and the second side over a selected area that comprises only a portion of the first side and only a portion of the second side.
- 25. A device according to claim 23, wherein the pressure sensitive adhesive is located between the first side and the second side over a selected area that comprises only a portion of the first side and only a portion of the second side, and wherein a portion of the main conduit extending between the loading structure and the plurality of process chambers passes through the selected area of pressure sensitive adhesive.
- 26. A device according to claim 23, further comprising a deformable seal located between the loading structure and the plurality of process chambers, wherein the deformable seal comprises at least a portion of the pressure sensitive adhesive.
- 27. A device according to claim 23, wherein the loading structure comprises a loading chamber in fluid communication with the main conduit.
- 28. A device according to claim 23, wherein the loading structure comprises a loading chamber in fluid communication with the main conduit, wherein the loading chamber defines a loading chamber volume equal to or greater than a combined volume of the main conduit and the plurality of process chambers.
- 29. A device for use in processing sample materials, the device comprising:
a body comprising a first side attached to a second side; and a process array formed between the first and second sides, the process array comprising a loading structure, a main conduit comprising a length, and a plurality of process chambers distributed along the main conduit, wherein the main conduit is in fluid communication with the loading structure and the plurality of process chambers; wherein the plurality of process chambers comprises a first group of process chambers located on a first side of the main conduit and a second group of process chambers located on a second side of the main conduit; wherein each process chamber of the first group of process chambers is in fluid communication with the main conduit through a first feeder conduit and each process chamber of the second group of process chambers is in fluid communication with the main conduit through a second feeder conduit; wherein the first feeder conduits form first feeder conduit angles with the main conduit that are less than 90 degrees and the second feeder conduits form second feeder conduit angles with the main conduit that are less than 90 degrees; and further wherein the first feeder conduit angles are different than the second feeder conduit angles.
- 30. A device according to claim 29, wherein each first feeder conduit of the first feeder conduits is connected to the main conduit at a first feeder conduit junction, wherein each second feeder conduit of the second feeder conduits is connected to the main conduit at a second feeder conduit junction, and further wherein the first feeder conduit junctions are offset from the second feeder conduit junctions along the main conduit.
- 31. A device according to claim 29, wherein each process chamber of the plurality of process chambers is in fluid communication with the main conduit through a feeder conduit, and further wherein the feeder conduit enters the process chamber along a tangent to the process chamber.
- 32. A device according to claim 29, wherein each process chamber of the plurality of process chambers is in fluid communication with the main conduit through a feeder conduit, and wherein each process chamber of the plurality of process chambers comprises a circular process chamber, and further wherein the feeder conduit enters the process chamber along a tangent to the circular process chamber.
- 33. A device for use in processing sample materials, the device comprising:
a body comprising a first side attached to a second side; and a process array formed between the first and second sides, the process array comprising a loading structure, a main conduit comprising a length, and a plurality of process chambers distributed along the main conduit, wherein the main conduit is in fluid communication with the loading structure and the plurality of process chambers; wherein the loading structure comprises a U-shaped loading chamber comprising first and second legs, an inlet port located proximate a distal end of the first leg, and a vent port located proximate a distal end of the second leg.
- 34. A device according to claim 33, wherein the main conduit is connected to the U-shaped loading chamber proximate a bottom of the U-shaped loading chamber.
- 35. A device for use in processing sample materials, the device comprising:
a body comprising a first side attached to a second side; pressure sensitive adhesive located between the first side and the second side, wherein the pressure sensitive adhesive is located over substantially all of a common area between the first side and the second side; and a plurality of process arrays formed between the first and second sides, wherein each process array of the plurality of process arrays comprises:
a loading structure, a main conduit comprising a length, and a plurality of process chambers distributed along the main conduit, wherein the main conduit is in fluid communication with the loading structure and the plurality of process chambers, and further wherein each of the process chambers transmits electromagnetic energy of selected wavelengths; a deformable seal located between the loading structure and the plurality of process chambers, the deformable seal comprising a deformable portion of the second side of the body and a portion of the pressure sensitive adhesive; wherein the loading structure comprises a U-shaped loading chamber comprising first and second legs, an inlet port located proximate a distal end of the first leg, and a vent port located proximate a distal end of the second leg; wherein the plurality of process chambers comprises a first group of process chambers located on a first side of the main conduit and a second group of process chambers located on a second side of the main conduit; wherein each process chamber of the first group of process chambers is in fluid communication with the main conduit through a first feeder conduit and each process chamber of the second group of process chambers is in fluid communication with the main conduit through a second feeder conduit; wherein the first feeder conduits form first feeder conduit angles with the main conduit and the second feeder conduits form second feeder conduit angles with the main conduit, and the first feeder conduit angles are different than the second feeder conduit angles; and wherein each of the first feeder conduits is connected to the main conduit at a first feeder conduit junction, wherein each of the second feeder conduits is connected to the main conduit at a second feeder conduit junction, and further wherein the first feeder conduit junctions are offset from the second feeder conduit junctions along the main conduit.
- 36. A method of processing sample materials, the method comprising:
providing a sample processing device that comprises:
a body comprising a first side attached to a second side; a process array formed between the first and second sides, the process array comprising a loading structure, a main conduit comprising a length, a plurality of process chambers distributed along the main conduit, wherein the main conduit is in fluid communication with the loading structure and the plurality of process chambers; and a deformable seal located between the loading structure and the plurality of process chambers; distributing sample material to at least some of the process chambers through the main conduit; closing the deformable seal; locating the body in contact with a thermal block; and controlling the temperature of the thermal block while the body is in contact with the thermal block.
- 37. A method according to claim 36, wherein closing the deformable seal comprises occluding the main conduit along substantially all the length of the main conduit.
- 38. A method according to claim 36, wherein closing the deformable seal comprises occluding only a portion of the length of the main conduit, wherein the portion is located between the loading structure and the plurality of process chambers.
- 39. A method according to claim 36, wherein closing the deformable seal comprises deforming a deformable portion of the second side of the body.
- 40. A method according to claim 36, wherein closing the deformable seal comprises deforming a deformable metallic layer.
- 41. A method according to claim 36, wherein at least a portion of the deformable seal comprises adhesive, and wherein closing the deformable seal comprises adhering the first side and the second side together using the adhesive.
- 42. A method according to claim 36, wherein at least a portion of the deformable seal comprises pressure sensitive adhesive, and wherein closing the deformable seal comprises adhering the first side and the second side together using the pressure sensitive adhesive.
- 43. A method according to claim 36, wherein the deformable seal comprises adhesive, and wherein closing the deformable seal comprises adhering the first side and the second side together with the adhesive to occlude at least a portion of the length of the main conduit.
- 44. A method according to claim 36, wherein the deformable seal comprises pressure sensitive adhesive, and wherein closing the deformable seal comprises adhering the first side and the second side together with the pressure sensitive adhesive to occlude at least a portion of the length of the main conduit.
- 45. A method according to claim 36, wherein the loading structure comprises a loading chamber in fluid communication with the main conduit, and wherein distributing sample material to at least some of the process chambers through the main conduit further comprises providing the sample material in the loading chamber.
- 46. A method according to claim 36, wherein the loading structure comprises a loading chamber in fluid communication with the main conduit, wherein the loading chamber defines a loading chamber volume equal to or greater than a combined volume of the main conduit and the plurality of process chambers, and wherein distributing sample material to at least some of the process chambers through the main conduit further comprises providing the sample material in the loading chamber.
- 47. A method according to claim 36, wherein each process chamber of the plurality of process chambers contains at least one reagent before the sample material is distributed.
- 48. A method according to claim 36, wherein at least a portion of each of the process chambers transmits electromagnetic energy of selected wavelengths.
- 49. A method of processing sample materials, the method comprising:
providing a sample processing device that comprises:
a body comprising a first side attached to a second side, wherein the second side comprises a metallic layer; and a process array formed between the first and second sides, the process array comprising a loading structure, a main conduit comprising a length, a plurality of process chambers distributed along the main conduit, wherein the main conduit is in fluid communication with the loading structure and the plurality of process chambers, a deformable seal located between the loading structure and the plurality of process chambers, wherein the deformable seal comprises pressure sensitive adhesive; distributing sample material to at least some of the process chambers through the main conduit; closing the deformable seal by deforming the metallic layer of the second side and adhering the first side and the second side together using the pressure sensitive adhesive; locating the body in contact with a thermal block; and controlling the temperature of the thermal block while the body is in contact with the thermal block.
- 50. A method of processing sample materials, the method comprising:
providing a sample processing device that comprises:
a body comprising a first side attached to a second side; and a process array formed between the first and second sides, the process array comprising a loading structure, a main conduit comprising a length, a plurality of process chambers distributed along the main conduit, wherein the main conduit is in fluid communication with the loading structure and the plurality of process chambers; and a deformable seal located between the loading structure and the plurality of process chambers; distributing sample material to at least some of the process chambers through the main conduit; closing the deformable seal; separating the loading structure from the sample processing device after closing the deformable seal; locating the body in contact with a thermal block; and controlling the temperature of the thermal block while the body is in contact with the thermal block.
- 51. A method according to claim 50, wherein closing the deformable seal comprises occluding the main conduit along substantially all of the length of the main conduit.
- 52. A method according to claim 50, wherein closing the deformable seal comprises occluding the main conduit along substantially all of the length of the main conduit beginning at a point distal from the loading structure and proceeding towards the loading structure, whereby sample material within the main conduit is urged towards the loading structure.
- 53. A method according to claim 50, wherein closing the deformable seal comprises occluding the main conduit along only a portion of the length of the main conduit, wherein the portion of the main conduit is located between the loading structure and the plurality of process chambers.
- 54. A method according to claim 50, wherein closing the deformable seal comprises occluding the main conduit along at least a portion of the length of the main conduit, wherein the portion of the main conduit is located between the loading structure and the plurality of process chambers;
and further wherein separating the loading structure comprises separating the body along a line extending through the portion of the main conduit occluded during the closing of the deformable seal.
- 55. A method according to claim 50, wherein at least a portion of the deformable seal comprises adhesive, and wherein closing the deformable seal comprises adhering the first side and the second side together using the adhesive.
- 56. A method according to claim 50, wherein at least a portion of the deformable seal comprises pressure sensitive adhesive, and wherein closing the deformable seal comprises adhering the first side and the second side together using the pressure sensitive adhesive;
and further wherein closing the deformable seal comprises occluding the main conduit along substantially all of the length of the main conduit beginning at a point distal from the loading structure and proceeding towards the loading structure, whereby sample material within the main conduit is urged towards the loading structure.
- 57. A method according to claim 50, wherein the deformable seal comprises adhesive, and wherein closing the deformable seal comprises adhering the first side and the second side together with the adhesive.
- 58. A method according to claim 50, wherein the deformable seal comprises pressure sensitive adhesive, and wherein closing the deformable seal comprises adhering the first side and the second side together with the pressure sensitive adhesive.
- 59. A method according to claim 50, wherein the loading structure comprises a loading chamber in fluid communication with the main conduit, and wherein distributing sample material to at least some of the process chambers through the main conduit further comprises providing the sample material in the loading chamber.
- 60. A method according to claim 50, wherein the loading structure comprises a loading chamber in fluid communication with the main conduit, wherein the loading chamber defines a loading chamber volume equal to or greater than a combined volume of the main conduit and the plurality of process chambers, and wherein distributing sample material to at least some of the process chambers through the main conduit further comprises providing the sample material in the loading chamber.
- 61. A method according to claim 50, wherein each process chamber of the plurality of process chambers contains at least one reagent before the sample material is distributed.
- 62. A method according to claim 50, wherein at least a portion of each of the process chambers transmits electromagnetic energy of selected wavelengths.
- 63. A method of processing sample materials, the method comprising:
providing a sample processing device that comprises:
a body comprising a first side attached to a second side; and a process array formed between the first and second sides, the process array comprising a loading structure, a main conduit comprising a length, and a plurality of process chambers distributed along the main conduit, wherein the main conduit is in fluid communication with the loading structure and the plurality of process chambers, and a deformable seal located between the loading structure and the plurality of process chambers, the deformable seal comprising pressure sensitive adhesive located along substantially all of the length of the main conduit; distributing sample material to at least some of the process chambers through the main conduit; closing the deformable seal by occluding the main conduit along substantially all of the length of the main conduit to adhere the first side and the second side together within the main conduit using the pressure sensitive adhesive, wherein the occluding begins at a point distal from the loading structure and proceeds towards the loading structure, whereby sample material within the main conduit is urged towards the loading structure; separating the loading structure from the sample processing device after closing the deformable seal; locating the body in contact with a thermal block; and controlling the temperature of the thermal block while the body is in contact with the thermal block.
- 64. A method of processing sample materials, the method comprising:
providing a sample processing device that comprises:
a body comprising a first side attached to a second side, a plurality of process arrays formed between the first and second sides, wherein each process array of the plurality of process arrays comprises:
a loading structure, a main conduit comprising a length, and a plurality of process chambers distributed along the main conduit, wherein the main conduit is in fluid communication with the loading structure and the plurality of process chambers, and a deformable seal located between the loading structure and the plurality of process chambers; distributing sample material to at least some of the process chambers in each process array of the plurality of process arrays through the main conduit in each of the process arrays; closing the deformable seal in each process array of the plurality of process arrays; locating the body in contact with a thermal block; and controlling the temperature of the thermal block while the body is in contact with the thermal block.
- 65. A method according to claim 64, wherein closing the deformable seal in each process array of the plurality of process arrays comprises simultaneously closing the deformable seal in each process array of the plurality of process arrays.
- 66. A method according to claim 64, wherein, for each process array of the plurality of process arrays, closing the deformable seal comprises occluding the main conduit along substantially all of the length of the main conduit.
- 67. A method according to claim 64, wherein, for each process array of the plurality of process arrays, closing the deformable seal comprises occluding the main conduit along only a portion of the length of the main conduit, wherein the portion of the main conduit is located between the loading structure and the plurality of process chambers.
- 68. A method according to claim 64, wherein, for each process array of the plurality of process arrays, closing the deformable seal comprises deforming a deformable portion of the second side of the body.
- 69. A method according to claim 64, wherein, for each process array of the plurality of process arrays, closing the deformable seal comprises deforming a deformable metallic layer.
- 70. A method according to claim 64, wherein, for each process array of the plurality of process arrays, at least a portion of the deformable seal comprises adhesive, and wherein closing the deformable seal comprises adhering the first side and the second side together using the adhesive.
- 71. A method according to claim 64, wherein, for each process array of the plurality of process arrays, at least a portion of the deformable seal comprises pressure sensitive adhesive, and wherein closing the deformable seal comprises adhering the first side and the second side together using the pressure sensitive adhesive.
- 72. A method according to claim 64, wherein, for each process array of the plurality of process arrays, the deformable seal comprises adhesive, and wherein closing the deformable seal comprises adhering the first side and the second side together with the adhesive to occlude the main conduit along at least a portion of the length of the main conduit.
- 73. A method according to claim 64, wherein, for each process array of the plurality of process arrays, the deformable seal comprises pressure sensitive adhesive, and wherein closing the deformable seal comprises adhering the first side and the second side together with the pressure sensitive adhesive to occlude the main conduit along at least a portion of the length of the main conduit.
- 74. A method according to claim 64, wherein, for each process array of the plurality of process arrays, each process chamber of the plurality of process chambers contains at least one reagent before the sample material is distributed.
- 75. A method according to claim 64, wherein, for each process array of the plurality of process arrays, at least a portion of each of the process chambers transmits electromagnetic energy of selected wavelengths.
- 76. A method according to claim 64, wherein, for each process array of the plurality of process arrays, the loading structure comprises a U-shaped loading chamber comprising first and second legs, an inlet port located proximate a distal end of the first leg, and a vent port located proximate a distal end of the second leg, and further wherein distributing sample material comprises delivering the sample material to the inlet port and moving the sample material to the main conduit from the loading structure.
- 77. A method of processing sample materials, the method comprising:
providing a sample processing device that comprises:
a body comprising a first side attached to a second side; and a plurality of process arrays formed between the first and second sides, wherein each process array of the plurality of process arrays comprises:
a loading structure, a main conduit comprising a length, and a plurality of process chambers distributed along the main conduit, wherein the main conduit is in fluid communication with the loading structure and the plurality of process chambers, and a deformable seal comprising pressure sensitive adhesive extending along substantially the entire main conduit; distributing sample material to at least some of the process chambers in each process array of the plurality of process arrays through the main conduit in each of the process arrays; simultaneously closing the deformable seal in each process array of the plurality of process arrays by adhering the first side and the second side together using the pressure sensitive adhesive, thereby occluding the main conduit in each process array of the plurality of process arrays along substantially all of the length of the main conduit; locating the body in contact with a thermal block; and controlling the temperature of the thermal block while the body is in contact with the thermal block.
- 78. A method of processing sample materials, the method comprising:
providing a sample processing device comprising:
a body that comprises a first side attached to a second side; a plurality of process arrays formed between the first and second sides, wherein each process array of the plurality of process arrays comprises a loading structure, a main conduit comprising a length, and a plurality of process chambers distributed along the main conduit, wherein the main conduit is in fluid communication with the loading structure and the plurality of process chambers; distributing sample material to at least some of the process chambers in each process array of the plurality of process arrays through the main conduit in each of the process arrays; locating the second side of the sample processing device in contact with a thermal block; selectively compressing the first side and second side of the sample processing device together proximate each process chamber of the plurality of process chambers after locating the second side of the sample processing device in contact with a thermal block; and controlling the temperature of the thermal block while the sample processing device is in contact with the thermal block.
- 79. A method according to claim 78, wherein the body comprises adhesive attaching the first side and the second side together.
- 80. A method according to claim 78, wherein the selectively compressing comprises compressing substantially all of the sample processing device outside of the process chambers.
- 81. A method according to claim 78, wherein the selectively compressing comprises compressing a discrete area proximate each of the process chambers.
- 82. A method according to claim 78, wherein each process array of the plurality of process arrays comprises a deformable seal located between the loading structure and the plurality of process chambers, and wherein the method further comprises closing the deformable seal in each process array of the plurality of process arrays.
RELATED APPLICATIONS
[0001] This application claims the benefit of U.S. Provisional Patent Application Serial No. 60/214,508 filed on Jun. 28, 2000 and titled THERMAL PROCESSING DEVICES AND METHODS (Attorney Docket No. 55265USA19.003), which is hereby incorporated by reference in its entirety.
[0002] This application is a continuation-in-part of U.S. patent application Ser. No. 09/710,184, filed Nov. 10, 2000, titled CENTRIFUGAL FILLING OF SAMPLE PROCESSING DEVICES (Attorney Docket No. 55265USA9A.002), which is hereby incorporated by reference in its entirety.
GRANT INFORMATION
[0003] The present invention may have been made with support from the U.S. Government under NIST Grant No. 70NANB8H4002. The U.S. Government may have certain rights in the inventions recited herein.
Provisional Applications (1)
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Number |
Date |
Country |
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60214508 |
Jun 2000 |
US |
Continuation in Parts (1)
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Number |
Date |
Country |
Parent |
09710184 |
Nov 2000 |
US |
Child |
09895010 |
Jun 2001 |
US |