Claims
- 1. An instrument for determining characteristics of a target material, comprising:
a probe head comprised of a fused glass cane having a plurality of light conducting conduits therein, wherein an interrogation surface of the fused glass cane is shaped to conform to a non-uniform surface area of a target material.
- 2. The instrument according to claim 1, further comprising:
a housing; and an inner core mounted in the housing, wherein the probe head is attached to the inner core.
- 3. The instrument according to claim 2, wherein the probe head is removably attachable to the inner core.
- 4. The instrument according to claim 3, wherein a plurality of optical fibers run through the inner core, and wherein the plurality of optical fibers in the inner core are coupled to corresponding ones of the plurality of light conducting conduits in the probe head.
- 5. The instrument according to claim 4, wherein the inner core includes a coupling mechanism that attaches the probe head to the inner core, and that couples the plurality of optical fibers in the inner core to corresponding ones of the light conducting conduits in the probe head.
- 6. The instrument according to claim 1, wherein a surface of the probe head opposite the interrogation surface is coupled to a flexible bundle of optical fibers.
- 7. The instrument according to claim 1, wherein the interrogation surface comprises a first substantially flat portion and a second conical portion with a rounded tip.
- 8. An instrument for determining characteristics of a target material, comprising:
an outer housing; an inner core mounted in the outer housing; and a probe head mounted on an end of the inner core, wherein the probe head is configured to conform to a non-uniform surface area of a target material, and wherein the probe head is configured to interrogate a plurality of interrogation positions spaced apart on the surface area of the target material.
- 9. The instrument according to claim 8, wherein the inner core comprises a first inner core and a second inner core, the second inner core being configured to slide axially with respect to the first inner core, wherein the first inner core and the second inner core abut an interrogation surface of the probe head, and wherein axial movement of the second inner core relative to the first inner core changes a shape of the interrogation surface so that the interrogation surface can conform to a non-uniform surface of a target material.
- 10. The instrument according to claim 9, further comprising a flexible end cap that covers the interrogation surface.
- 11. The instrument according to claim 9, wherein the first and second inner cores are rotatably mounted in the outer housing, and wherein the probe head is mounted on an end of the first and second inner cores.
- 12. The instrument according to claim 9, wherein the second inner core is mounted inside an axial bore passing through the first inner core.
- 13. The instrument of claim 12, wherein the probe head comprises a first face attached to an end of the first inner core, wherein the first face has a central aperture, and wherein the probe head further comprises a second face attached to an end of the second inner core, and wherein the second face is moveable with respect to the first face so that the second inner core can move axially with respect to the first inner core.
- 14. The instrument according to claim 13, wherein the second inner core is mounted in the axial bore of the first inner core such that the first and second inner cores rotate together.
- 15. The instrument according to claim 13, wherein the first face is substantially flat and the second face is conical with a rounded tip.
- 16. The instrument according to claim 8, further comprising:
a detent mechanism attached to the inner core, wherein the detent mechanism is configured to allow the inner core to be rotated between a plurality of predetermined rotational positions relative to the outer housing.
- 17. An instrument for determining characteristics of a target material, comprising:
a probe head comprised of a plurality of interrogation devices are that are configured such that the plurality of interrogation devices can move to collectively conform to a non-uniform surface area of a target material.
- 18. The instrument according to claim 17, further comprising:
a housing; and an inner core mounted in the housing, wherein the probe head is attached to the inner core.
- 19. The instrument according to claim 17, wherein the plurality of interrogation devices are mounted in the probe head so that they are each individually moveable.
- 20. The instrument according to claim 17, wherein a spring mechanism biases each of the plurality of interrogation devices away from the probe head.
- 21. The instrument according to claim 17, further comprising an end cap that covers distal ends of the plurality of interrogation devices, wherein the end cap is flexible so that it can conform to a non-uniform surface area of a target material.
- 22. The instrument according to claim 21, wherein each of the plurality of interrogation devices is biased towards an inner surface of the end cap.
- 23. The instrument according to claim 17, wherein the probe head includes a plurality of cylindrical apertures, and wherein each of the plurality of interrogation devices comprises:
a hollow shaft mounted inside a corresponding cylindrical aperture in the probe head; and a spring that biases the hollow shaft out of its cylindrical aperture.
- 24. The instrument according to claim 23, wherein each of the plurality of interrogation devices further comprise at least one optical fiber that extends into a corresponding hollow shaft such that a distal end of the at least one optical fiber is adjacent a distal end of the hollow shaft.
- 25. The instrument of claim 24, further comprising a flexible end cap that covers the plurality of interrogation devices mounted in the probe head, wherein the springs of the interrogation devices bias the distal ends of the hollow shafts and the distal ends of the optical fibers towards an inner surface of the end cap.
- 26. The instrument of claim 17, wherein the probe head includes an interrogation surface and a rear surface located opposite the interrogation surface, wherein the interrogation surface is shaped to conform to a non-uniform surface area of a target material, and wherein optical fibers run through the probe head from the rear surface to interrogation positions on the interrogation surface.
- 27. The instrument of claim 26, wherein at least two optical fibers are located at each interrogation position, wherein at least one optical fiber at each interrogation position is configured to conduct excitation light to the interrogation position, and wherein at least one optical fiber at each interrogation position is configured to receive light that is scattered from or generated by a target material.
- 28. The instrument of claim 26, further comprising a detector, wherein light scattered from or generated by a target material adjacent the interrogation surface of the probe head is conducted to the detector by at least some of the optical fibers.
- 29. The instrument according to claim 26, further comprising a flexible sheath configured to cover and conform to a shape of the interrogation surface of the probe head.
- 30. The instrument according to claim 29, wherein the flexible sheath is substantially optically clear.
- 31. The instrument according to claim 29, wherein the flexible sheath is disposable.
- 32. The instrument according to claim 29, wherein the flexible sheath is formed of a material having a low durometer and high tear strength.
- 33. The instrument according to claim 29, wherein the flexible sheath is configured to allow wavelengths of light within a range of approximately 280 nm to approximately 700 nm to pass therethrough without substantial attenuation.
- 34. The instrument according to claim 29, wherein an index matching agent is located between the flexible sheath and the interrogation surface of the probe head.
- 35. An instrument for determining characteristics of a target material, comprising:
a probe head including an interrogation surface that is configured to conform to a non-uniform surface area of a target material; and a sheath that covers the interrogation surface, wherein the sheath is flexible so that is can conform to a non-uniform surface area of a target material.
- 36. The instrument according to claim 35, further comprising:
a housing; and an inner core mounted in the housing, wherein the probe head is attached to the inner core.
- 37. The instrument according to claim 35, wherein the flexible sheath is substantially optically clear.
- 38. The instrument according to claim 35, wherein the flexible sheath is formed of a material having a low durometer and high tear strength.
- 39. The instrument according to claim 35, wherein the flexible sheath is configured to allow wavelengths of light within a range of approximately 280 nm to approximately 700 nm to pass therethrough without substantial attenuation.
- 40. A method of detecting characteristics of a target material, comprising the steps of:
positioning a probe head having a plurality of interrogation devices adjacent a first plurality of interrogation positions on a non-uniform surface area of a target material so that the plurality of interrogation devices conform to the non-uniform surface area; and detecting characteristics of the target material at the first plurality of interrogation positions with the plurality of interrogation devices, wherein a portion of the plurality of interrogation devices are positioned on a first probe face, wherein a portion of the plurality of interrogation devices are positioned on a second probe face, wherein the second probe face is axially slidable with respect to the first probe face, and wherein the positioning step comprises moving the second probe face relative to the first probe face so that the plurality of interrogation devices conform to the non-uniform surface area of the target material.
- 41. A method of detecting characteristics of a target material, comprising the steps of:
positioning a probe head having a plurality of interrogation devices adjacent a first plurality of interrogation positions on a non-uniform surface area of a target material so that the plurality of interrogation devices conform to the non-uniform surface area; and detecting characteristics of the target material at the first plurality of interrogation positions with the plurality of interrogation devices, wherein the plurality of interrogation devices are each mounted in the probe head so that they are axially slidable within the probe head, and wherein the positioning step comprises pushing the probe head into contact with the target material to cause at least some of the plurality of interrogation devices to move, thereby causing the plurality of interrogation devices to conform to the non-uniform surface area of the target material.
- 42. A method of detecting characteristics of a target material, comprising the steps of:
positioning a probe head having a plurality of interrogation devices adjacent a first plurality of interrogation positions on a non-uniform surface area of a target material so that the plurality of interrogation devices conform to the non-uniform surface area; and detecting characteristics of the target material at the first plurality of interrogation positions with the plurality of interrogation devices; repositioning the probe head so that the plurality of interrogation devices are adjacent at least one additional plurality of interrogation positions on the target material, wherein the first and at least one additional plurality of positions are not coincident; and detecting characteristics of the target material at the at least one additional plurality of interrogation positions.
- 43. The method of claim 42, wherein the repositioning step comprises rotating the plurality of interrogation devices around a common axis.
- 44. An instrument for determining characteristics of a target material, comprising:
a housing: an inner core mounted on the housing, wherein the inner core includes a first inner core and a second inner core, the second inner core being configured to slide axially with respect to the first inner core; and a probe head mounted on ends of the first and second inner cores, wherein axial movement of the second inner core relative to the first inner core changes a shape of an interrogation surface of the probe head so that the interrogation surface conform to a non-uniform surface of a target material.
- 45. An instrument for determining characteristics of a target material, comprising:
a probe head comprising a fused optical bundle having a plurality of light transmitting conduits therein, wherein an interrogation surface of the fused optical fiber bundle is shaped to conform to a non-uniform surface area of a target material.
- 46. The instrument according to claim 45, wherein said fused optical fiber bundle comprises a glass fused optical fiber bundle.
- 47. The instrument according to claim 46, wherein said fused optical fiber bundle comprises a fused glass cane.
RELATED APPLICATIONS
[0001] This application is a divisional of application Ser. No. 09/533,817 filed Mar. 24, 2000, which is a continuation-in-part of International Application No. PCT/US99/10947 filed May 19, 1999, which claims priority to Provisional Application No. 60/126,065 filed Mar. 24, 1999. The contents of all of the above-mentioned applications are hereby incorporated by reference.
Provisional Applications (1)
|
Number |
Date |
Country |
|
60126065 |
Mar 1999 |
US |
Divisions (1)
|
Number |
Date |
Country |
Parent |
09533817 |
Mar 2000 |
US |
Child |
10446857 |
May 2003 |
US |
Continuation in Parts (1)
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Number |
Date |
Country |
Parent |
PCT/US99/10947 |
May 1999 |
US |
Child |
09533817 |
Mar 2000 |
US |