IP Library Granted Patent US 9,974,502
Granted Patent B2
US 9,974,502 · App. 15/376,295 · Granted May 22, 2018

Mobile base and X-ray machine mounted on such a mobile base

Inventors: Bernard Bouvier (Eragny sur Oise, FR); Carlos Martinez Ferreira (Paris, FR); Bruno Galloni (Saint Lubin des Joncherets, FR); Jean-Luc Thomé (Saint Grégoire, FR); Guy Jean Sébastien Caverot (Nantes, FR)
Assignee: GENERAL ELECTRIC COMPANY
A61B6/4405A61B6/102A61B6/4441A61B6/547A61B6/548A61B6/4423
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Quick Facts
Patent No.
US 9,974,502
App. No.
15/376,295
Granted
May 22, 2018
Kind
B2
Abstract

A mobile base designed to receive an X-ray machine is provided. An X-ray machine capable of being mounted on the mobile base is also provided. The X-ray machine of the invention is configured to move using a motor-driven system associated with a navigation system. The navigation system of the invention enables the X-ray machine to be moved automatically and with precision from one position to another within an examination, hybrid or operation room. The X-ray machine is also configured for the automatic positioning of the moving parts around the patient, while at the same time keeping the region to be subjected to radiography within an X-ray beam.

Claims (35)

1. A mobile base configured to support a medical imaging machine comprising:

at least one motorized drive wheel;

an optical positioning system comprising a gyrolaser, a reading system and a memory, the system configured to compute position data corresponding to a position of the medical imaging machine in a predefined fixed referential system on the basis of reflections from reflectors positioned about a defined space, the positions of the reflectors stored in the memory; and

a processing unit in communication with the at least one motorized drive wheel and the optical positioning system, and configured to receive the position data corresponding to the position of the medical imaging machine and generate a corresponding output for controlling direction and speed of the at least one motorized drive wheel to move and orient the mobile base to one or more desired positions in the defined space.

2. The mobile base of claim 1 , wherein the medical imaging system is an X-ray machine.

3. The mobile base of claim 1 , wherein the reflectors are catadioptric reflectors.

4. The mobile base of claim 1 , further comprising a traction encoder mounted on the at least one motorized drive wheel, wherein the traction encoder and a direction encoder are configured to provide data relative to a position of the X-ray machine.

5. The mobile base of claim 2 , further comprising a support structure comprising:

a supporting arm comprising an upper end to which the X-ray machine is designed to be fixed; and

a set of structural parts resting on the floor comprising at least one wheel and being assembled with the supporting arm,

wherein the supporting arm and the set of structural parts are configured to give the mobile base mechanical characteristics of rigidity relative to the supporting arm.

6. The mobile base of claim 5 , wherein the set of structural parts comprises:

a baseplate fixed to the supporting arm, the baseplate comprising a horizontal plate on which the at least one motorized drive wheel is installed;

a crossbar fixedly joined to the baseplate; and

an element with two arms having an angle and being fixedly joined to the crossbar, the arms being situated on a front part of the X-ray machine.

7. The mobile base of claim 6 , wherein the element with two arms is positioned at a determined distance so that the front ends of the arms do not collide with an X-ray tube, and the distance between the tube and an isocenter of the X-ray machine is maximized.

8. The mobile base of claim 6 , wherein the edges of the arms and of the crossbar are lined with vertical reinforcement parts.

9. The mobile base of claim 6 , wherein a plastic flexible material is inserted at the position where the crossbar and the baseplate are fixedly joined.

10. The mobile base of claim 6 , further comprising at least one freewheel mounted on one end of each arm on a face before the ground, wherein the at least one freewheel is mounted so that a rotational axis of the at least one freewheel is off-center relative to a supporting base of the at least one freewheel on the ground.

11. The mobile base of claim 10 , further comprising a braking apparatus mounted on the at least one freewheel, wherein the braking apparatus is configured to block the rotation of the at least one freewheel and keep the at least one freewheel stopped.

12. The mobile base of claim 6 , further comprising a connection pole having a lower end and an upper end, wherein the lower end is fixed to the support structure and the upper end bears a gyrolaser.

13. The mobile base of claim 1 , further comprising a man-machine interface in communication with the processing unit for entering at least one of instructed values of destination and instructed values of trajectory.

14. The mobile base of claim 13 , wherein the man-machine interface is embedded in the mobile base or placed at a distance from the mobile base.

15. The mobile base of claim 13 , wherein the man-machine interface comprises at least one of a touchscreen, a joystick and a remote control unit.

16. The mobile base of claim 1 , wherein the mobile base is electrically powered through a battery or a mains supply.

17. The mobile base of claim 1 , further comprising a safety system comprising anti-collision and tilt sensors.

18. The mobile base of claim 1 , wherein the processing unit is also configured to receive inputs from a user corresponding to at least one of destination, trajectory, and orientation of the mobile base.

19. The mobile base of claim 1 , wherein the at least one motorized drive wheel comprises two motorized drive wheels.

20. An X-ray machine comprising:

an X-ray tube configured to emit an X-ray beam along a direction of emission;

an X-ray detector aligned in the direction of emission of the X-ray beam and positioned to face the X-ray tube,

wherein the X-ray machine is mounted on a mobile base comprising:

at least one motorized drive wheel;

an optical positioning system comprising a gyrolaser, a reading system and a memory, the system configured to compute position data corresponding to a position of the X-ray machine in a predefined fixed referential system on the basis of reflections from reflectors positioned about a defined space, the positions of the reflectors stored in the memory; and

a processing unit in communication with the at least one motorized drive wheel and the optical positioning system, and configured to receive the position data corresponding to the position of the X-ray machine and generate a corresponding output for controlling direction and speed of the at least one motorized drive wheel to move and orient the mobile base to one or more desired positions in the defined space.

Assignments (5)
NUNC PRO TUNC ASSIGNMENT Recorded May 8, 2025
From: GENERAL ELECTRIC COMPANY
To: GE PRECISION HEALTHCARE LLC
Reel/Frame 071225/0218 →
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Mar 11, 2022
From: BA ROBOTIC SYSTEMS GROUP
To: BA HEALTHCARE
Reel/Frame 059241/0962 →
CHANGE OF NAME Recorded Jul 12, 2021
From: RISE BA
To: BA ROBOTIC SYSTEMS GROUP
Reel/Frame 057306/0451 →
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Jun 3, 2021
From: BOUVIER, BERNARD; FERREIRA, CARLOS MARTINEZ; GALLONI, BRUNO; THOME, JEAN-LUC; CAVEROT, GUY JEAN SEBASTIEN
To: GENERAL ELECTRIC COMPANY
Reel/Frame 056434/0070 →
JOINT ASSIGNMENT OR 50% OF RIGHTS Recorded Jun 3, 2021
From: GENERAL ELECTRIC COMPANY
To: RISE, BA
Reel/Frame 056476/0315 →
Priority Claims (1)
FR 09 58556 · Dec 1, 2009 · national
Continuity (3)
Continuation 14867256 · Sep 28, 2015
Continuation 13513315
Related Publication 20170086764A1 · Mar 30, 2017