IP Library › Granted Patent US 12,290,396
Granted Patent B2
US 12,290,396 · App. 17/977,165 · Granted May 6, 2025

Cable management clamp and method for securing cables in C-arm imaging systems

Inventor: Carlos Martinez Ferreira (Paris, FR)
Assignee: GE Precision Healthcare LLC
A61B6/56A61B6/4441
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Quick Facts
Patent No.
US 12,290,396
App. No.
17/977,165
Granted
May 6, 2025
Kind
B2
Abstract

A clamp for releasably engaging a cable chain employed on a C-arm X-ray imaging device includes a positioning member having a rear surface formed complementary to a portion of the C-arm imaging device, a pivot arm attached to the positioning member, a biasing member disposed on the pivot arm, and a clamp arm rotatably mounted to the pivot arm, wherein the biasing member is engaged between the positioning member and the clamp arm to move the clamp arm between a release position and a locking position. The clamp is engageable with the cable chain to hold the cable chain in alignment with the at least one of the housing and the C-arm, and is operable separately from the imaging device, such that the clamp can hold the cable chain on the housing or C-arm even when power is not provided to the imaging device.

Claims (64)

1. A C-arm x-ray imaging device comprising:

a base;

a carriage operably connected to the base and having at least one axis of movement with respect to the base

a C-arm movably connected to the carriage, the C-arm including an x-ray source and an x-ray detector disposed thereon in alignment with one another; and

a cable management system comprising:

a housing disposed on the carriage, the housing defining an interior;

a number of cables extending from the base into the interior of the housing;

a cable chain having a first end secured within the interior of the housing and a second end affixed to the C-arm, the cable chain defining a channel therein that receives the number of cables to direct the number of cables from the base to the C-arm; and

at least one clamp releasably engageable with the cable chain to hold the cable chain in alignment with the at least one of the housing and the C-arm,

wherein the at least one clamp comprises:

a first clamp disposed on one side of the at least one of the housing and the C-arm;

a second clamp disposed on an opposite side of the at least one of the housing and the C-arm; and

an alignment member extending between the first clamp and the second clamp across the at least one of the housing and the C-arm.

2. The C-arm x-ray imaging device of claim 1 , wherein the at least one clamp is self-locking.

3. The C-arm x-ray imaging device of claim 1 , wherein the at least one clamp is operable separately from the C-arm x-ray imaging device.

4. The C-arm x-ray imaging device of claim 1 , wherein the at least one clamp is disposed within the interior of the housing.

5. The C-arm x-ray imaging device of claim 1 , wherein the C-arm includes a groove extending along an outer surface of the C-arm capable of receiving a portion of the cable chain therein, and wherein the first clamp, the second clamp and the alignment member are is disposed within the groove.

6. The C-arm x-ray imaging device of claim 5 , wherein the clamp comprises:

a positioning member having a rear surface formed complementary to a portion of the C-arm imaging device;

a pivot arm attached to the positioning member;

a biasing member disposed on the pivot arm; and

a clamp arm rotatably mounted to the pivot arm,

wherein the biasing member is engaged between the positioning member and the clamp arm to move the clamp arm between a release position and a locking position.

7. The C-arm x-ray imaging device of claim 6 , wherein the biasing member is a spring.

8. The C-arm x-ray imaging device of claim 7 , wherein the spring comprises:

a coil disposed around the pivot arm,

a brace extending outwardly from the coil and engaged with the positioning member; and

a biasing arm extending outwardly from the coil and engaged with the clamp arm.

9. The C-arm x-ray imaging device of claim 7 , wherein the clamp arm includes a first end having an engagement surface thereon and a second end including a locking member thereon, wherein the locking member is disposed on the second end perpendicularly relative to the engagement surface.

10. A clamp for releasably engaging a cable chain employed on a C-arm X-ray imaging device, the clamp comprising:

a positioning member having a rear surface formed complementary to a portion of the C-arm imaging device;

a pivot arm attached to the positioning member;

a biasing member disposed on the pivot arm; and

a clamp arm rotatably mounted to the pivot arm,

wherein the biasing member is engaged between the positioning member and the clamp arm to move the clamp arm between a release position and a locking position.

11. The clamp of claim 10 , wherein the clamp arm includes a first end having an engagement surface thereon and a second end including a locking member thereon, wherein the locking member is disposed on the second end perpendicularly relative to the engagement surface.

12. The clamp of claim 10 , wherein the pivot arm extends outwardly from opposed sides of the positioning member into engagement with the first end and the second end of the clamp arm.

13. The clamp of claim 10 , further comprising:

a first clamp;

a second clamp; and

an alignment member extending between the first clamp and the second clamp.

14. The clamp of claim 10 , wherein the biasing member is a spring.

15. The clamp of claim 14 , wherein spring comprises:

a coil disposed around the pivot arm,

a brace extending outwardly from the coil and engaged with the positioning member; and

a biasing arm extending outwardly from the coil and engaged with the clamp arm.

16. A method of managing the position of cables connecting a detector and an x-ray source of a C-arm to a base of a C-arm x-ray imaging device, the method comprising the steps of:

providing a C-arm-ray imaging device comprising:

a base;

a carriage operably connected to the base and having at least one axis of movement with respect to the base;

a C-arm movably connected to the carriage, the C-arm including an x-ray source and an x-ray detector disposed thereon in alignment with one another; and

a cable management system comprising:

a housing disposed on the carriage, the housing defining an interior;

a number of cables extending from the base into the interior of the housing;

a cable chain having a first end secured within the interior of the housing and a second end affixed to the C-arm, the cable chain defining a channel therein that receives the number of cables to direct the number of cables from the base to the C-arm; and

at least one clamp releasably engageable with the cable chain to hold the cable chain in alignment with the at least one of the housing and the C-arm;

placing the number of cables within the cable chain; and

moving the C-arm relative to the carriage; and

 engaging the cable chain with the at least one clamp to maintain the cable chain within a profile of at least one of the housing or the C-arm,

wherein the step of engaging the cable chain with the at least one clamp comprises:

 contacting a clamp arm on the at least one clamp with the cable chain; and

 pivoting a locking member disposed on the clamp arm over the cable chain.

17. The method of claim 16 , wherein the C-arm includes a groove formed in an outer surface of the C-arm, and wherein at least one clamp is disposed within the groove, and wherein the step of engaging the cable chain with the at least one clamp comprises positioning the cable chain within the groove to engage the at least one clamp.

18. The method of 16 , wherein the clamp arm is a spring-biased clamp arm and wherein the step of pivoting the locking member over the cable chain comprises contacting the clamp arm with the cable chain to overcome the bias of the spring biased clamp arm.

Assignments (1)
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Oct 31, 2022
From: MARTINEZ FERREIRA, CARLOS
To: GE PRECISION HEALTHCARE LLC
Reel/Frame 061596/0191 →
Continuity (1)
Related Publication 20240138802A1 · May 2, 2024
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