Claims
- 1. An endoscope for inspection of an observation cavity, comprising:a shaft, said shaft having an inner shaft and an outer shaft, said outer shaft surrounding said inner shaft at a distance; an optical system arranged in said inner shaft; said shaft being configured in the region of its distal end in such a way that it is substantially impermeable to electromagnetic radiation in the infrared spectral range, wherein said outer shaft at least partially has, in the region of its distal end, a coating that reflects infrared radiation; and wherein a lumen is constituted between said inner shaft and said outer shaft as a delivery conduit for a cooling medium from the proximal end to the distal end of said shaft.
- 2. The endoscope of claim 1, wherein said reflective coating is constituted such that its reflective capability is optimized for the radiation of a black body at a temperature of 2200° C.
- 3. The endoscope of claim 1, wherein said reflective coating is a gold film.
- 4. The endoscope of claim 1, wherein there is arranged at the distal end of said shaft, on the light-entry side, an optical bandpass filter, that is transparent in the visible spectral range and that at least partially absorbs and/or reflects radiation in the infrared spectral range.
- 5. The endoscope of claim 4 wherein said optical bandpass filter additionally has a substrate that absorbs infrared radiation.
- 6. The endoscope of claim 1, wherein at least one outlet opening for said cooling medium is arranged in said outer shaft in the region of its distal end.
- 7. The endoscope of claim 6, wherein said cooling medium is a gas, in particular compressed air.
- 8. The endoscope of claim 1, wherein a lumen is constituted between said inner shaft and said outer shaft as a delivery conduit for a cooling medium from the proximal ends to the distal end of said shaft, wherein said cooling medium is a gas, in particular compressed air.
- 9. The endoscope of claim 1, wherein a lumen is constituted between said inner shaft and said outer shaft as a delivery conduit for a cooling medium from the proximal end to the distal end of said shaft, and wherein a distally closed glass shield is arranged around the distal end of said shaft, the cooling medium being discharged in the proximal direction between said outer shaft and said glass shield.
- 10. The endoscope of claim 1, wherein a lumen is constituted between said inner shaft and said outer shaft as a delivery conduit for a cooling medium from the proximal ends to the distal end of said shaft, and wherein said at least one outlet opening is configured such that said cooling medium emerges in a manner directed substantially away from said observation cavity.
- 11. The endoscope of claim 1, wherein a lumen is constituted between said inner shaft and said outer shaft as a delivery conduit for a cooling medium from the proximal end to the distal end of said shaft, wherein at least one outlet opening for said cooling medium is arranged in said outer shaft in the region of its distal end, wherein a distally closed glass shield is arranged around the distal end of said shaft, and wherein flow obstacles, which prevent said cooling medium emerging from said at least one outlet opening from flowing into a region of said glass shield located in the visual field region of said endoscope, are arranged between said glass shield and said outer shaft.
- 12. The endoscope of claim 1, wherein a lumen is constituted between said inner shaft and said outer shaft as a delivery conduit for a cooling medium from the proximal end to the distal end of said shaft, wherein at least one outlet opening for said cooling medium is arranged in said outer shaft in the region of its distal end, and wherein said at least one outlet opening is arranged laterally in said outer shaft.
- 13. The endoscope of claim 1, wherein a lumen is constituted between said inner shaft and said outer shaft as a delivery conduit for a cooling medium from the proximal end to the distal end of said shaft, wherein several outlet openings are arranged in circumferentially distributed fashion in said outer shaft.
- 14. The endoscope of claim 1, wherein a lumen is constituted between said inner shaft and said outer shaft as a delivery conduit for a cooling medium from the proximal end to the distal end of said shaft, wherein at least one outlet opening for said cooling medium is arranged in said outer shaft in the region of its distal end, and wherein said at least one outlet opening is configured so that said cooling medium is depressurized upon emergence.
- 15. The endoscope of claim 1, wherein a lumen is constituted between said inner shaft and said outer shaft as a delivery conduit for a cooling medium from the proximal end to the distal end of said shaft, and wherein a shutoff apparatus for throttling the delivery of said cooling medium is provided.
- 16. The endoscope of claim 15, wherein temperature-deformable elements, in particular bimetallic elements, which effect said throttling of the delivery of said cooling medium are arranged in the distal region of said shaft.
- 17. The endoscope of claim 1, wherein a lumen is constituted between said inner shaft and said outer shaft as a delivery conduit for a cooling medium from the proximal end to the distal end of said shaft, wherein said delivery conduit is additionally designed for taking samples.
- 18. The endoscope of claim 1, wherein a lumen is constituted between said inner shaft and said outer shaft as a delivery conduit for a cooling medium from the proximal end t the distal of said shaft, wherein said delivery conduit is additionally designed for the delivery of reagents.
- 19. An endoscope for inspection of an observation cavity, comprising:a shaft, said shaft having an inner shaft and an outer shaft, said outer shaft surrounding said inner shaft at a distance; an optical system arranged in said inner shaft; said shaft being configured in the region of its distal end in such a way that it is substantially impermeable to electromagnetic radiation in the infrared spectral range, wherein said outer shaft at least partially has, in the region of its distal end, a coating that reflects infrared radiation; wherein a lumen is constituted between said inner shaft and said outer shaft as a delivery conduit for a cooling medium from the proximal end to the distal end of said shaft; and wherein there is arranged at the distal end of said shaft, on the light-entry side, an optical bandpass filter, preferably a thin-film bandpass filter, that is transparent in the visible spectral range and that at least partially absorbs and/or reflects radiation in the infrared spectral range.
Priority Claims (1)
Number |
Date |
Country |
Kind |
198 21 401 |
May 1998 |
DE |
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CROSS REFERENCE TO PENDING APPLICATION
This application is a continuation of pending International application PCT/EP99/03336 filed May 12, 1999.
US Referenced Citations (5)
Number |
Name |
Date |
Kind |
3575528 |
Beam et al. |
Apr 1971 |
A |
4685402 |
Nelson et al. |
Aug 1987 |
A |
4744407 |
Fishman et al. |
May 1988 |
A |
5396080 |
Hannotiau et al. |
Mar 1995 |
A |
5809998 |
Hughes et al. |
Sep 1998 |
A |
Continuations (1)
|
Number |
Date |
Country |
Parent |
PCT/EP99/03336 |
May 1999 |
US |
Child |
09/479700 |
|
US |