IP Library Granted Patent US 7,604,403
Granted Patent B2
US 7,604,403 · App. 12/331,949 · Granted Oct 20, 2009

X-ray irradiating apparatus and X-ray imaging system

Assignee: GE Medical Systems Global Technology Company, LLC
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Quick Facts
Patent No.
US 7,604,403
App. No.
12/331,949
Granted
Oct 20, 2009
Kind
B2
Abstract

An X-ray irradiating apparatus includes an X-ray tube attached to a front end of a column suspended from a carriage, the carriage being displaceable along a rail parallel to a ceiling. The X-ray irradiating apparatus includes a power supply cable fixed at one end thereof to the carriage, a guide mechanism for guiding the cable along the rail upon displacement of the carriage, and a reaction force mechanism for applying to the carriage a reaction force which withstands a tension induced by slackening of the cable outside the guide mechanism.

Claims (38)

1. An X-ray irradiating apparatus comprising:

a carriage configured to move along a rail oriented parallel to a ceiling;

an X-ray tube coupled to a front end of a column suspended from said carriage;

a power supply cable coupled at a first end to said carriage;

a guide mechanism configured to guide said cable along said rail upon movement of said carriage; and

a reaction force mechanism configured to apply a reaction force to said carriage which withstands a tension induced by slackening of said cable outside said guide mechanism.

2. An X-ray irradiating apparatus according to claim 1 , wherein said reaction force mechanism comprises:

a belt entrained around a pulley and extending in parallel with said rail;

a connecting member configured to couple said carriage to said belt; and

a spring configured to apply the reaction force to said belt.

3. An X-ray irradiating apparatus according to claim 2 , wherein the reaction force applied by said spring increases with movement of said carriage in a slack increasing direction of said cable and decreases with movement of said carriage in a slack decreasing direction of said cable.

4. An X-ray irradiating apparatus according to claim 3 , wherein said spring comprises a spiral spring.

5. An X-ray irradiating apparatus according to claim 4 , wherein said spiral spring is configured to apply the reaction force to said belt through said pulley.

6. An X-ray irradiating apparatus according to claim 5 , wherein said pulley is rotatably coupled to a fixed shaft, and said spiral spring is coupled at a first end to said fixed shaft and at a second end to said pulley.

7. An X-ray irradiating apparatus according to claim 6 , wherein said pulley comprises a coaxial hollow portion, said spiral spring is coupled at said first end to said fixed shaft and at said second end to an inner wall of said hollow portion.

8. An X-ray irradiating apparatus according to claim 2 , wherein said belt comprises a toothed belt and said pulley comprises a toothed pulley.

9. An X-ray irradiating apparatus according to claim 1 , wherein said guide mechanism comprises a plurality of rollers disposed along said rail.

10. An X-ray irradiating apparatus according to claim 9 , wherein said plurality of rollers are disposed on a same side as said belt with respect to said rail.

11. An X-ray imaging system comprising:

a carriage configured to move along a rail oriented parallel to a ceiling;

an X-ray tube coupled to a front end of a column suspended from said carriage;

a power supply cable coupled at a first end to said carriage;

a guide mechanism configured to guide said cable along said rail upon movement of said carriage;

a reaction force mechanism configured to apply a reaction force to said carriage which withstands a tension induced by slackening of said cable outside said guide mechanism;

an X-ray detector configured to detect X-rays emitted by said X-ray tube; and

an operator console configured to reconstruct an image based on the X-rays detected by said X-ray detector.

12. An X-ray imaging system according to claim 11 , wherein said reaction force mechanism comprises:

a belt entrained around a pulley and extending in parallel with said rail;

a connecting member configured to couple said carriage to said belt; and

a spring configured to apply the reaction force to said belt.

13. An X-ray imaging system according to claim 12 , wherein the reaction force applied by said spring increases with movement of said carriage in a slack increasing direction of said cable and decreases with movement of said carriage in a slack decreasing direction of said cable.

14. An X-ray imaging system according to claim 13 , wherein said spring comprises a spiral spring.

15. An X-ray imaging system according to claim 14 , wherein said spiral spring is configured to apply the reaction force to said belt through said pulley.

16. An X-ray imaging system according to claim 15 , wherein said pulley is rotatably coupled to a fixed shaft, and said spiral spring is coupled at a first end to said fixed shaft and at a second end to said pulley.

17. An X-ray imaging system according to claim 16 , wherein said pulley comprises a coaxial hollow portion, said spiral spring is coupled at said first end to said fixed shaft and at said second end to an inner wall of said hollow portion.

18. An X-ray imaging system according to claim 12 , wherein said belt comprises a toothed belt and said pulley comprises a toothed pulley.

19. An X-ray imaging system according to claim 11 , wherein said guide mechanism comprises a plurality of rollers disposed along said rail.

20. An X-ray imaging system according to claim 19 , wherein said plurality of rollers are disposed on a same side as said belt with respect to said rail.

Assignments (2)
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Dec 10, 2008
From: XIONG, YI
To: GE HUALUN MEDICAL SYSTEMS CO., LTD.
Reel/Frame 021956/0864 →
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Dec 10, 2008
From: GE HUALUN MEDICAL SYSTEMS CO., LTD.
To: GE MEDICAL SYSTEMS GLOBAL TECHNOLOGY COMPANY, LLC
Reel/Frame 021956/0908 →
Continuity (1)
Related Publication 20090154652A1 · Jun 18, 2009