IP Library › Granted Patent US 12,414,751
Granted Patent B2
US 12,414,751 · App. 18/914,208 · Granted Sep 16, 2025

Ergonomic improvements in cone beam breast computed tomography

Inventors: Ruola Ning (Atlanta, GA); Shaohua Liu (Atlanta, GA)
Assignee: Koning Corporation
A61B6/502A61B6/032A61B6/035A61B6/0435A61B6/0478A61B6/0487A61B6/4085A61B8/0825G06T7/00G06T2207/30068
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Quick Facts
Patent No.
US 12,414,751
App. No.
18/914,208
Granted
Sep 16, 2025
Kind
B2
Abstract

A cone beam breast computed tomography system includes a pivotable patient interface panel such that a patient can be introduced to the panel in an upright position and the panel can then be pivoted to dispose the patient in a generally prone orientation for imaging.

Claims (42)

1. A CBBCT scanning system comprising:

a base member;

a CBBCT gantry subsystem coupled to and supported by said base member, said CBBCT gantry subsystem including a CBBCT gantry, said CBBCT gantry being adapted and configured to rotate about an axis of rotation; and

a patient interface panel, said patient interface panel including a patient support step assembly, said patient interface panel having a patient interface surface, said patient interface surface having an elevation axis, said patient interface panel being pivotally coupled to said base member with a pivotal hinge, said patient interface panel being adapted to pivot about said pivotal hinge between a first patient loading configuration in which said elevation axis is disposed generally aligned with said axis of rotation to support said patient in a standing configuration, and a second patient imaging configuration in which said elevation axis is disposed generally transverse to said axis of rotation to support said patient in a prone configuration.

2. A CBBCT scanning system as defined in claim 1 further comprising an actuator, said actuator being coupled between said base member and said patient interface panel, said actuator being adapted to motivate said pivot about said pivotal hinge between said first patient loading configuration and said second patient imaging configuration.

3. A CBBCT scanning system as defined in claim 2 wherein said actuator comprises a linear actuator.

4. A CBBCT scanning system as defined in claim 2 wherein said actuator comprises a rotary actuator.

5. A CBBCT scanning system as defined in claim 1 wherein said patient interface panel includes a patient interface surface region with an aperture therethrough.

6. A CBBCT scanning system as defined in claim 5 further comprising a patient interface subpanel disposed within said aperture.

7. A CBBCT scanning system as defined in claim 6 wherein said patient interface subpanel includes a breast aperture, said breast aperture being adapted to receive a patient breast therethrough for imaging.

8. A CBBCT scanning system as defined in claim 6 wherein said patient interface subpanel includes a breast stabilization unit, said breast stabilization unit being adapted to support said patient breast during imaging.

9. A CBBCT scanning system as defined in claim 1 wherein said step assembly is coupled to a seat adjustment mechanism.

10. A CBBCT scanning system as defined in claim 9 wherein said seat adjustment mechanism is adapted to adjust a saddle upper surface of a saddle portion in a vertical degree of freedom.

11. A CBBCT scanning system as defined in claim 9 wherein said seat adjustment mechanism is adapted to adjust a saddle upper surface of a saddle portion in a horizontal degree of freedom.

12. A method of conducting a CBBCT scan comprising:

providing a base member;

providing a CBBCT gantry, said CBBCT gantry being rotationally coupled to said base member for rotation about an axis of rotation, said axis of rotation being substantially immobile with respect to said base member;

providing a patient interface panel;

pivotally coupling said patient interface panel to said base member;

disposing said patient interface panel in a first generally upright orientation;

introducing a patient to said patient interface panel;

thereafter, disposing said patient interface panel in a second scanning orientation;

thereafter, operating said CBBCT gantry to conduct said CBBCT scan; and

thereafter, disposing said patient interface panel in said first generally upright orientation.

13. A method of conducting a CBBCT scan as defined in claim 12 , further comprising:

providing a patient step, said patient step having a patient step upper surface region, said patient step upper surface region being adapted to support said patient during imaging; and

adjusting said patient step for patient positioning.

14. A method of conducting a CBBCT scan as defined in claim 12 wherein said first generally upright orientation comprises an orientation between at least about 80° and at least 90° with respect to the horizontal.

15. A method of conducting a CBBCT scan as defined in claim 12 wherein said first generally upright orientation comprises an orientation between at least about 70° and at least 80° with respect to the horizontal.

16. A method of conducting a CBBCT scan as defined in claim 12 wherein said first generally upright orientation comprises an orientation between at least about 50° and at least 70° with respect to the horizontal.

17. A method of conducting a CBBCT scan as defined in claim 12 wherein said second scanning orientation comprises an orientation between at least about 0° and at least 20° with respect to the horizontal.

18. A method of conducting a CBBCT scan as defined in claim 12 wherein said second scanning orientation comprises an orientation between at least about 20° and at least 45° with respect to the horizontal.

19. A method of conducting a CBBCT scan as defined in claim 12 wherein said second scanning orientation comprises an orientation between at least about 45° and at least 70° with respect to the horizontal.

20. A CBBCT scanning system comprising:

a base member;

a CBBCT gantry subsystem coupled to and supported by said base member, said CBBCT gantry subsystem including a CBBCT gantry, said CBBCT gantry being adapted and configured to rotate about an axis of rotation; and

a patient interface panel, said patient interface panel having a patient interface surface with an aperture therethrough and a patient interface subpanel disposed within said aperture, said patient interface subpanel including a breast aperture of variable size, said patient interface surface having an elevation axis, said patient interface panel being pivotally coupled to said base member with a pivotal hinge, said patient interface panel being adapted to pivot about said pivotal hinge between a first patient loading configuration in which said elevation axis is disposed generally aligned with said axis of rotation and a second patient imaging configuration in which said elevation axis is disposed generally transverse to said axis of rotation.

21. A CBBCT scanning system as defined in claim 20 wherein said patient interface subpanel including a breast aperture of variable size comprises:

a replaceable panel having a breast aperture of fixed size therewithin.

22. A CBBCT scanning system as defined in claim 20 wherein said patient interface subpanel including a breast aperture of variable size comprises:

a replaceable panel having a breast aperture of adjustable size therewithin.

23. A CBBCT scanning system as defined in claim 20 wherein said breast aperture is placed asymmetrically with respect to a centerline of said patient interface subpanel.

Assignments (1)
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Oct 14, 2024
From: NING, RUOLA, DR.; LIU, SHAOHUA
To: KONING CORPORATION
Reel/Frame 068889/0437 →
Continuity (9)
Continuation PCTUS2023018359 · Apr 12, 2023
Provisional Application 63430571 · Dec 6, 2022
Provisional Application 63401546 · Aug 26, 2022
Provisional Application 63401513 · Aug 26, 2022
Provisional Application 63401475 · Aug 26, 2022
Provisional Application 63401548 · Aug 26, 2022
Provisional Application 63401493 · Aug 26, 2022
Provisional Application 63331153 · Apr 14, 2022
Related Publication 20250032060A1 · Jan 30, 2025
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