IP Library Patent Application 16906159
Patent Application
App. No. 16/906,159

ROBOTICALLY POSITIONED X-RAY AND C-ARM

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Quick Facts
Patent No.
US None
App. No.
16/906,159
Abstract

The invention involves a system and method for taking x-rays in a surgical setting. The system includes a multi-axis robot having an automatic tool change system. The robot can therefore go to the tools and pick up the x-ray apparatus, which may be in the form of a C-arm. The x-ray apparatus can then be manipulated about the patient to obtain the desired x-rays, which are viewable in real time. The x-ray apparatus can then be repositioned in the tool rack and the robot utilized for other parts of the surgery. Should additional x-rays be needed, the robot can reattach the x-ray apparatus and position the apparatus according to a new location; or the robot can track any movements of the patient via an electromagnetic or radio frequency sensor system, whereby the x-ray apparatus can be positioned exactly as it was with respect to the patient from a previous x-ray.

Claims (17)

1 . A robotically controlled x-ray ( 100 ) system comprising:

a robot ( 10 ) having an arm assembly ( 11 ), said arm assembly having at least two axes of computer controlled movement for positioning a distal end ( 14 ) of said arm assembly ( 11 ) at a desired position and orientation in response to electric signals received from a control computer ( 31 ), an x-ray source ( 26 ) secured to said distal end ( 14 ) of said arm assembly ( 11 ) and an image receiver ( 28 ) secured at a position to receive x-rays from said x-ray source ( 26 ) to produce an image.

2 . The robotically controlled x-ray system ( 100 ) of claim 1 wherein said arm assembly ( 11 ) includes up to seven axes of movement to allow said arm assembly ( 11 ) to be positioned as desired by a surgeon.

3 . The robotically controlled x-ray system ( 100 ) of claim 1 wherein said axes of movement are monitored for relative position with respect to an adjacent axis of movement to provide electrical feedback to said control computer ( 31 ).

4 . The robotically controlled x-ray system ( 100 ) of claim 1 wherein said x-ray source ( 26 ) includes an x-ray arm ( 20 ), said x-ray arm ( 20 ) including one or more C-shaped rails ( 22 ), said x-ray source ( 26 ) secured to a first end ( 44 ) of said one or more C-shaped rails ( 22 ) and an image receiver ( 28 ) secured to a second end ( 46 ) of said one or more C-shaped rails ( 22 ) to receive x-rays from said x-ray source ( 26 ) to produce an x-ray image on a monitor ( 32 ), said x-ray source ( 26 ) and said image receiver ( 28 ) positioned on said one or more C-shaped rails ( 22 ) to allow said x-ray source ( 26 ) and said image receiver ( 28 ) to be positioned on opposite sides of a patient ( 42 ).

5 . The robotically controlled x-ray system ( 100 ) of claim 4 wherein said x-ray arm ( 20 ) includes a rail motor ( 24 ) for traversing said one or more C-shaped rails ( 22 ) in either direction along the longitudinal centerline of said one or more C-shaped rails ( 22 ).

6 . The robotically controlled x-ray system ( 100 ) of claim 4 wherein said one or more C-shaped rails ( 22 ) are connected to said arm assembly ( 11 ) in a manner which allows said C-shaped rails ( 22 ) to be angled with respect to a longitudinal axis ( 30 ) of said patient ( 42 ).

7 . The robotically controlled x-ray system ( 100 ) of claim 1 including a tracking system ( 34 ) for tracking movements of said animal, said tracking system ( 34 ) providing position feedback to said control computer ( 31 ), said control computer ( 31 ) constructed and arranged to utilize patient position to provide predetermined x-ray images.

8 . The robotically controlled x-ray system ( 100 ) of claim 7 wherein said tracking system ( 34 ) utilizes electromagnetic sensors ( 36 ) to monitor said patient position.

9 . The robotically controlled x-ray system ( 100 ) of claim 7 wherein said tracking system utilizes optic sensors ( 36 ) to monitor said patient position.

10 . The robotically controlled x-ray system ( 100 ) of claim 7 wherein said tracking system ( 34 ) utilizes a combination of optic sensors and electromagnetic sensors ( 36 ) to monitor said patient position.

11 . The robotically controlled x-ray system ( 100 ) of claim 1 wherein said distal end ( 14 ) of said arm assembly ( 11 ) includes a tool change coupler ( 16 ), said tool change coupler ( 16 ) constructed and arranged to selective coupling and uncoupling of said distal end ( 14 ) of said arm assembly ( 11 ) to one or more different tools ( 48 ).

12 . The robotically controlled x-ray system ( 100 ) of claim 11 including a tool rack ( 18 ) positioned within reach and at a known position with respect to said distal end ( 14 ) of said arm assembly ( 11 ).

13 . The robotically controlled x-ray system ( 100 ) of claim 12 wherein said tools ( 48 ) are stored in said tool rack ( 18 ) in a manner that allows any one of said tools ( 48 ) to be selectively attached to said distal end ( 14 ) of said arm assembly ( 11 ).

14 . The robotically controlled x-ray system ( 100 ) of claim 13 wherein said tool rack ( 18 ) is constructed and arranged to allow said arm assembly ( 11 ) to move to a first known position adjacent said tool rack ( 18 ) for dropping a first tool ( 48 ) and wherein said arm assembly ( 11 ) is repositioned by said control computer ( 31 ) to position said arm assembly ( 11 ) in a second position adjacent said tool rack ( 18 ) to attach said distal end ( 14 ) of said arm assembly ( 11 ) to a second tool ( 48 ) supported by said tool rack ( 18 ).

15 . The robotically controlled x-ray system ( 100 ) of claim 1 including a second robot ( 10 ) having a second arm assembly ( 11 ), said second arm assembly ( 11 ) having at least two axes of computer controlled movement for positioning a distal end ( 14 ) of said second arm ( 11 ) at a desired position and orientation in response to electric signals received from a control computer ( 31 ), image receiver ( 28 ) secured to said distal end ( 14 ) of said second arm assembly ( 11 ), said second arm assembly computer controlled to position said image receiver ( 28 ) at a position with respect to said arm assembly ( 11 ) to receive x-rays from said x-ray source ( 26 ) to produce an image.

16 . The robotically controlled x-ray system ( 100 ) of claim 3 wherein said control computer ( 31 ) includes a storage medium for storing images received by said image receiver ( 28 ), said images being recallable for viewing.

Assignments (4)
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Nov 8, 2021
From: CAPSTONE SURGICAL TECHNOLOGIES, LLC
To: GLOBUS MEDICAL, INC.
Reel/Frame 058041/0925 →
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Oct 18, 2021
From: BONO, PETER L.
To: CAPSTONE SURGICAL TECHNOLOGIES, LLC
Reel/Frame 057844/0893 →
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Oct 14, 2021
From: LORD, THOMAS J.
To: BONO, PETER L.
Reel/Frame 057799/0738 →
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Jun 19, 2020
From: BONO, PETER L.; LARK, JAMES D.
To: BONO, PETER L.
Reel/Frame 052988/0110 →