IP Library › Granted Patent US 12,156,754
Granted Patent B2
US 12,156,754 · App. 17/525,011 · Granted Dec 3, 2024

Radiation shielding system

Inventors: Robert Evans Foster (Birmingham, AL); Lloyd Guyton Bowers Cooper (Birmingham, AL); William Thomas Livingston (Birmingham, AL); Foster D Phillips (Birmingham, AL)
Assignee: Rampart IC, LLC
A61B6/107G21F3/00
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Quick Facts
Patent No.
US 12,156,754
App. No.
17/525,011
Granted
Dec 3, 2024
Kind
B2
Abstract

A radiation shield assembly is described, configured to block radiation emanating from a radiation source from reaching a user. Two shields are supported by a support arm, and are configured to rotate and translate relative to one another about the support arm's longitudinal axis. This allows the shield to be easily configured and reconfigured as necessary to visualize various parts of a patient's body via radiography.

Claims (37)

1. A radiation shield assembly, configured to block radiation emanating from a radiation source from below a table for supporting a patient, the assembly comprising:

(a) a support arm constructed to support at least the majority of the weight of the shield assembly;

(b) a first generally planar vertical shield; and

(c) a second generally planar vertical shield;

wherein the first generally planar vertical shield is joined to the second generally planar vertical shield to form a radiopaque barrier;

wherein the first generally planar vertical shield and the second generally planar vertical shield are capable of being positioned over the table,

wherein the radiation shield assembly is configured to allow at least on of the first generally planar vertical shield and the second generally planar vertical shield to be rotated relative to the other about an approximately vertical axis; and

wherein the radiation shield assembly is configured to position the first generally planar vertical shield and the second generally planar vertical shield to protect a user's upper body from radiation emanating from the radiation source.

2. The radiation shield assembly of claim 1 , wherein the first generally planar vertical shield is configured to be positioned such that a top edge of the first generally planar vertical shield is at least 175 cm (±20%) from the floor.

3. The radiation shield assembly of claim 1 , wherein the first generally planar vertical shield is configured to be positioned such that a top edge of the first generally planar vertical shield is at least about the height of an adult human above the floor.

4. The radiation shield assembly of claim 1 , wherein the first generally planar vertical shield has a height of at least about the distance from the upper surface of the table to an average human's full height.

5. The radiation shield assembly of claim 1 , wherein the first generally planar vertical shield is fastened to the support arm and the second generally planar vertical shield is fastened to the support arm.

6. The radiation shield assembly of claim 1 , wherein the support arm is configured to translate the radiation shield assembly relative to the table.

7. The radiation shield assembly of claim 1 , wherein the support arm is supported from overhead.

8. The radiation shield assembly of claim 1 , wherein in operation the support arm supports the entire weight of the radiation shield assembly.

9. The radiation shield assembly of claim 1 , wherein at least one of the first generally planar vertical shield and the second generally planar vertical shield are configured to translate along the support arm.

10. The radiation shield assembly of claim 1 , configured to position the first generally planar vertical shield and the second generally planar vertical shield to protect the user's head from radiation emanating from the radiation source.

11. The radiation shield assembly of claim 1 , wherein at least one of the first generally planar vertical shield and the second generally planar vertical shield is configured to translate along the support arm.

12. The radiation shield assembly of claim 1 , wherein the support arm is configured to position the first generally planar vertical shield and the second generally planar vertical shield to protect the user's upper body from the radiation emanating from the radiation source.

13. The radiation shield assembly of claim 1 , wherein one or both of said shields have a radiopacity of at least 0.5 mm lead equivalent.

14. The radiation shield assembly of claim 1 , further comprising a third generally planar shield fastened to the first generally planar vertical shield.

15. The radiation shield assembly of claim 14 , wherein the third generally planar shield is translationally static with respect to the first generally planar vertical shield.

16. The radiation shield assembly of claim 1 , wherein both of said shields reduce radiation exposure to no more than about 2.5 mR/hr when measured by the Modified ASTM F3094/IEC 61331-1 Protocol.

17. A radiation shield assembly, configured to block radiation emanating from a radiation source from below a table for supporting a patient, the assembly comprising:

(a) a support arm configured to be suspended from overhead, the support arm configured to support about the entire weight of the shield assembly;

(b) a first generally planar vertical shield that has a radiopacity to X-rays of at least 0.5 mm lead equivalent; and

(c) a second generally planar vertical shield that has a radiopacity to X-rays of at least 0.5 mm lead equivalent;

wherein the first generally planar vertical shield is joined to the second generally planar vertical shield to form a radiopaque barrier;

wherein the support arm is capable of positioning the first generally planar vertical shield and the second generally planar vertical shield above the table;

wherein the radiation shield assembly is configured to allow at least one of the first generally planar vertical shield and the second generally planar vertical shield to be rotated relative to the other about an approximately vertical axis;

wherein the radiation shield assembly is configured to position the first generally planar vertical shield and the second generally planar vertical shield to protect a user's upper body from radiation emanating from the radiation source.

18. A radiography method comprising:

(a) positioning the radiation shield assembly of claim 1 between a patient and the user; and

(b) irradiating the patient using the radiation source positioned such that radiation passes at least partially through the patient while being blocked from reaching the user's upper body by the radiation shield assembly.

19. A radiography method comprising:

(a) positioning the radiation shield assembly of claim 17 between a patient and the user; and

(b) irradiating the patient using the radiation source positioned such that radiation passes at least partially through the patient while being blocked from reaching the user's upper body by the radiation shield assembly.

Assignments (3)
ENTITY CONVERSION Recorded Aug 7, 2025
From: RAMPART IC, LLC
To: RAMPART IC, INC.
Reel/Frame 072354/0111 →
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded May 4, 2022
From: INTERVENTION FOR LIFE, LLC
To: RAMPART IC, LLC
Reel/Frame 059810/0137 →
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Apr 26, 2022
From: FOSTER, ROBERT EVANS; COOPER, LLOYD GUYTON BOWERS; LIVINGSTON, WILLIAM THOMAS; PHILLIPS, FOSTER D.
To: INTERVENTION FOR LIFE, LLC
Reel/Frame 059736/0692 →
Continuity (3)
Continuation 16083393
Provisional Application 62544468 · Aug 11, 2017
Related Publication 20220071576A1 · Mar 10, 2022
Cited By (2)
US 12,622,659 US 12,629,114