Claims
- 1. A device to removably constrain a plurality of probes, each of the probes having a top surface and a bottom surface, so that the top and bottom surfaces of the constrained probes are substantially exposed, the device comprising:
a frame having:
(a) first, second, third and fourth side members, wherein said first, second, and third side members have coplanar top surfaces and coplanar bottom surfaces, the coplanar surfaces respectively defining a top and a bottom frame plane; and (b) constraining means to constrain the plurality of probes within said frame, said means fully constraining each of the probes in a first frame axis that is orthogonal to said top and bottom frame planes, said means fully constraining each of the probes in a second frame axis that is orthogonal to said first frame axis, and said means slidably constraining each of the probes in a third frame axis that is orthogonal to said first and second frame axes, wherein said constraining means are configured to permit the top and bottom surfaces of probes constrained within said frame to be substantially exposed respectively through the top and bottom frame planes.
- 2. The device of claim 1, wherein said constraining means comprise a plurality of ribs integrally formed with said frame, each rib having a longitudinal centerline and a cross section, wherein the longitudinal centerline of each said rib is parallel to said third frame axis and orthogonal to the cross section of said rib, wherein the cross section is shaped to mate with a receiving recess of one of the plurality of probes to be constrained within said frame, and wherein adjacent said ribs constrain the mated probe fully in said first and second frame axes and slidably in said third frame axis.
- 3. The device of claim 2, wherein the cross-section of each said rib is shaped as a dovetail so that adjacent ribs form a dovetail mortise therebetween.
- 4. The device of claim 2, wherein the cross-section of each said rib is an inverted T-shape so that adjacent said ribs form a T-shaped mortise therebetween.
- 5. The device of any one of claims 2-4 wherein each said rib extends incompletely from the top plane of said frame toward the bottom plane of said frame, whereby each of the plurality of probes mated thereto is suspended between adjacent said ribs and is fully constrained in said first frame axis.
- 6. The device of claim 2, wherein said plurality of ribs are disposed to recess at least the top surface of each of the probes constrained within said frame.
- 7. The device of claim 1, wherein said constraining means comprises a cross bar integrally formed with and connecting said first and third frame side members, said cross bar having a bottom surface coplanar with the bottom frame plane, wherein said cross bar is configured to permit the bottom surface of the probes constrained within said frame to be substantially exposed through the bottom frame plane.
- 8. The device of claim 1, further comprising means for frictionally securing the probes slidably in said third frame axis.
- 9. The device of claim 8, wherein said frictional means comprises a plurality of projections disposed on said frame that increases the normal forces between each constrained probe and said frame.
- 10. The device of claim 2, wherein the longitudinal centerline of each said rib is a predetermined distance away from the longitudinal centerlines of adjacent ribs.
- 11. The device of claim 10, wherein the predetermined distance is within the range of 8 to 10 mm, inclusive.
- 12. The device of claim 1, wherein said device can constrain up to 12 probes within said frame.
- 13. The device of claim 2, further comprising a plurality of alignment indentations disposed on said frame, each alignment indentation disposed between successively adjacent said ribs to facilitate alignment of said frame for insertion and removal of one of the plurality of probes.
- 14. The device of claim 1, further comprising means to stack said frame.
- 15. The device of claim 14, wherein said stacking means comprise:
a plurality of alignment pins protruding from said frame; and a plurality of alignment holes blindly boring into said frame, wherein each said alignment hole is disposed concentrically with and spatially distant to each said alignment pin.
- 16. The device of claim 1, further comprising identifying indicia on said frame.
- 17. The device of claim 16, wherein said identifying indicia is a barcode.
- 18. The device of claim 1, wherein:
said frame is substantially rectangular; said first and third side members and said third frame axis are substantially parallel; and said second and fourth side members and said second frame axis are substantially parallel.
- 19. A probe to be removably accepted by a device having at least one mortise, the probe comprising:
a substantially rectangular beam having a longitudinal centerline, a top surface, a bottom surface, and two sides parallel to the longitudinal centerline; and a plurality of active surfaces at discretely interrogatable locations disposed along the longitudinal centerline on the top surface of said beam in a fixed spatial relationship, wherein the two sides are undercut to form a tenon therebetween, said tenon slidably engaging the at least one mortise of the device.
- 20. The probe of claim 19, wherein said tenon is dovetail-shaped.
- 21. The probe of claim 19, wherein said tenon is I-shaped.
- 22. The probe of claim 19, wherein said rectangular beam comprises electrically conductive material.
- 23. The probe of claim 19, wherein said plurality of active surfaces are affinity capture surfaces.
- 24. The probe of claim 19, wherein said plurality of active surfaces comprise eight active surfaces.
- 25. The probe of claim 19, further comprising identifying indicia disposed on said rectangular beam.
- 26. The probe of claim 25, wherein said identifying indicia is a barcode.
- 27. The probe of claim 19, further comprising a groove disposed orthogonal to the longitudinal centerline to facilitate insertion and removal of said probe from the cassette.
- 28. The probe of claim 27, wherein said groove is disposed on the bottom surface of said beam.
- 29. The probe of claim 27, further comprising a second groove disposed orthogonal to the longitudinal centerline to facilitate insertion and removal of said probe from the cassette.
- 30. A device to facilitate application of fluid samples discretely to a plurality of active areas disposed on the top surfaces of a plurality of probes constrained in fixed spatial relationship, the device comprising:
a block having:
a top and a bottom surface; four side surfaces; a plurality of noncommunicating through-holes disposed orthogonal to the block top surface and block bottom surface to permit separate delivery of individual fluid samples discretely to the plurality of active areas; and an integrated seal disposed on the block bottom surface, wherein said seal is capable, when said block is engaged to the plurality of probes, of contacting the top surfaces of the plurality of probes and establishing fluid noncommunication among the plurality of active areas thereof.
- 31. The device of claim 30, further comprising at least one contoured ledge disposed on at least one of the side surfaces.
- 32. The device of claim 31, further comprising a non-integral component to engage said block to the plurality of probes.
- 33. The device of claim 32, wherein said engaging component comprises:
a base plate; and at least one linkage assembly having a medial link and a L-shaped link, said medial link rotatably connecting said L-shaped link to said base plate, wherein said at least one linkage assembly is configured to engage said block to the plurality of probes by rotating said medial and L-shaped links to sandwich said block and the plurality of probes between said L-shaped link and said base plate, said L-shaped link contoured to rotatably engage said at least one contoured ledge to urge said block towards the plurality of probes.
- 34. The device of claim 33, wherein said base plate comprises a plurality of holes, each hole parallel to adjacent oblong holes.
- 35. The device of claim 33, wherein said L-shaped link comprises:
a first bar; and two second bars integral with and non-coplanar to said first bar at longitudinally opposing ends of said first bar.
- 36. The device of claim 33, wherein said medial link rotatably connects said first bar to said base plate.
- 37. The device of claim 33, wherein said medial link comprises two bars, each of said bars rotatably connected to said first bar at longitudinally opposing ends of said first bar.
- 38. The device of claim 32, further comprising a plurality of indentations disposed on the side surfaces of said block to facilitate removal of said engaging component.
- 39. The device of claim 30, further comprising a frame to removably constrain the plurality of probes during engagement with said block.
- 40. The device of claim 39, wherein said frame comprises:
first, second, third and fourth side members, wherein said first, second, and third side members have coplanar top surfaces and coplanar bottom surfaces, the coplanar surfaces respectively defining a top and a bottom frame plane; and constraining means to constrain the plurality of probes within said frame, said means fully constraining each of the probes in a first frame axis that is orthogonal to said top and bottom frame planes, fully constraining each of the probes in a second frame axis that is orthogonal to said first frame axis, said means slidably constraining each of the probes in a third frame axis that is orthogonal to said first and second frame axes, wherein said constraining means are configured to permit the top and bottom surfaces of probes constrained within said frame to be substantially exposed respectively through the top and bottom frame planes.
- 41. The device of claim 40, wherein:
said frame is substantially rectangular; said first and third side members and said third frame axis are substantially parallel; said second and fourth side members and said second frame members are substantially parallel; said block is substantially rectangular; and the side block surfaces are substantially orthogonal to the top and bottom block surfaces.
- 42. The device of claim 39, further comprising:
a plurality of alignment pins disposed on said frame; and a plurality of alignment holes disposed on the bottom surface of said block, wherein said plurality of alignment pins complement said plurality of alignment holes to constrain said frame and said block in a fixed spatial relationship.
- 43. A system for facilitating sample preparation, transport into a mass spectrometer, and subsequent storage, the system comprising:
a plurality of probes to accept the samples at discretely interrogatable locations disposed in a fixed spatial relationship, each probe having substantially flat top and bottom surfaces; and a frame having:
(a) first, second, third and fourth side members, wherein said first, second, and third side members have coplanar top surfaces and coplanar bottom surfaces, the coplanar surfaces respectively defining a top and a bottom frame plane; and (b) constraining means to constrain the plurality of probes within said frame, said means fully constraining each of the probes in a first frame axis that is orthogonal to said top and bottom frame planes, fully constraining each of the probes in a second frame axis that is orthogonal to said first frame axis, said means slidably constraining each of the probes in a third frame axis that is orthogonal to said first and second frame axes, wherein said constraining means are configured to permit the top and bottom surfaces of probes constrained within said frame to be substantially exposed respectively through the top and bottom frame planes.
- 44. The system of claim 43, wherein 12 said probes are constrained within said frame.
- 45. The device of claim 43, wherein:
said frame is substantially rectangular; said first and third side members and said third frame axis are substantially parallel; and said second and fourth side members and said second frame axis are substantially parallel.
- 46. A device to removably constrain a plurality of probes, each of the probes having a top surface and a bottom surface, so that the top and bottom surfaces of the constrained probes are substantially exposed, the device comprising:
a frame having:
(a) first, second, third and fourth side members, wherein said first, second, and third side members have coplanar top surfaces and coplanar bottom surfaces, the coplanar surfaces respectively defining a top and a bottom frame plane; and (b) a plurality of ribs coupled to said frame, said plurality of ribs shaped to constrain the plurality of probes within said frame, said plurality of ribs fully constraining each of the probes in a first frame axis that is orthogonal to said top and bottom frame planes, said plurality of ribs fully constraining each of the probes in a second frame axis that is orthogonal to said first frame axis, and said plurality of ribs slidably constraining each of the probes in a third frame axis that is orthogonal to said first and second frame axes, wherein said plurality of ribs are configured to permit the top and bottom surfaces of probes constrained within said frame to be substantially exposed respectively through the top and bottom frame planes.
CROSS-REFERENCE TO RELATED APPLICATIONS
[0001] This application claims priority to U.S. provisional patent application Serial No. 60/359,940, filed Feb. 26, 2002, and U.S. provisional patent application Serial No. 60/374,889, filed Apr. 23, 2002, the disclosures of which are incorporated by reference in their entireties.
Provisional Applications (2)
|
Number |
Date |
Country |
|
60359940 |
Feb 2002 |
US |
|
60374889 |
Apr 2002 |
US |