IP Library Granted Patent US 12,002,571
Granted Patent B2
US 12,002,571 · App. 16/729,747 · Granted Jun 4, 2024

Dynamic surgical visualization systems

Inventors: Frederick E. Shelton, IV (Hillsboro, OH); Jason L. Harris (Lebanon, OH)
Assignee: Cilag GmbH International
G16H30/40A61B1/000094A61B34/10A61B90/361A61B2034/2051A61B34/30A61B2090/374A61B2090/3762
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Quick Facts
Patent No.
US 12,002,571
App. No.
16/729,747
Granted
Jun 4, 2024
Kind
B2
Abstract

Various systems and methods of controlling a surgical visualization system and controlling devices according to the displayed point of view of the surgical visualization system are disclosed. The visualization system can allow users to change, update, or manipulate the displayed visualization utilizing overlapping or multiple images. Further, the controls and/or display screens of surgical instruments coupled to the visualization system can be adjusted to correspond to the orientation of the surgical instrument as visualized by the visualization system.

Claims (42)

1. A control system for a handheld surgical instrument comprising a user control, the control system comprising:

an imaging system, comprising:

an emitter configured to emit electromagnetic radiation (EMR); and

an image sensor configured to receive the EMR reflected from a surgical site; and

a control circuit in signal communication with the imaging system and the handheld surgical instrument, wherein the control circuit is configured to:

generate an image of the surgical site based on the EMR received by the image sensor;

define a first coordinate system with respect to the surgical site according to the image;

receive a second coordinate system defined by the handheld surgical instrument;

determine a transfer function to translate a coordinate in the second coordinate system to the first coordinate system; and

provide the transfer function to the handheld surgical instrument to cause the handheld surgical instrument to adjust the user control according to the transfer function.

2. The control system of claim 1 , further comprising a surgical hub, the surgical hub comprising the control circuit.

3. The control system of claim 2 , wherein the surgical hub comprises a situational awareness module configured to provide the transfer function to the handheld surgical instrument according to a surgical context determined by the situational awareness module.

4. The control system of claim 1 , wherein the transfer function is configured to cause the handheld surgical instrument to adjust at least one articulation control actuator of the handheld surgical instrument.

5. The control system of claim 4 , wherein the handheld surgical instrument comprises an end effector, a shaft, and an articulation joint, wherein the end effector is articulatable relative to the shaft about the articulation joint, wherein the at least one articulation control actuator is configured to articulate the end effector about the articulation joint in a first direction, and wherein the at least one articulation control actuator is configured to articulate the end effector about the articulation joint in a second direction different than the first direction based on the handheld surgical instrument being provided with the transfer function.

6. The control system of claim 1 , wherein the transfer function is configured to cause the handheld surgical instrument to adjust a graphical user interface of the handheld surgical instrument.

7. The control system of claim 6 , wherein the graphical user interface is configured to display an image on the graphical user interface in a first orientation, and wherein the graphical user interface is configured to display the image on the graphical user interface in a second orientation different than the first orientation based on the handheld surgical instrument being provided with the transfer function.

8. A control system, comprising:

an imaging system configured to capture a live feed of a surgical site from a first point of view, wherein the imaging system comprises:

an emitter configured to emit structured electromagnetic radiation (EMR); and

an image sensor configured to receive the structured EMR reflected from the surgical site;

a display screen; and

a control circuit communicatively coupled to the imaging system and the display screen, wherein the control circuit is configured to:

generate a first image of the surgical site based on the structured EMR received by the image sensor;

receive a second image of the surgical site;

align the first image and the second image;

generate a three-dimensional representation of the surgical site based on the first image and the second image as aligned;

display the live feed of the surgical site from the first point of view on the display screen, wherein the live feed is displayed with a first visual characteristic;

receive a user selection to manipulate a point of view of the surgical site; and

according to the user selection, update the point of view as displayed on the display screen from a first state, in which the live feed of the surgical site from the first point of view is displayed on the display screen with the first visual characteristic, to a second state, in which a second point of view of the surgical site is displayed on the display screen, wherein, in the second state, an out-of-sight portion of the surgical site from the first point of view is shown on the display screen, wherein the out-of-sight portion is displayed based on the three-dimensional representation of the surgical site, and wherein the out-of-sight portion is displayed with a second visual characteristic different than the first visual characteristic.

9. The control system of claim 8 , wherein the control circuit is further configured to isolate an irregularity from at least one of the first image or the second image based on the other of the first image or the second image, and wherein the three-dimensional representation generated from the first image and the second image lacks the irregularity.

10. The control system of claim 9 , wherein the irregularity comprises at least one of a tissue, a biological structure, or an object.

11. The control system of claim 8 , wherein the control circuit is further configured to:

generate a third image of the surgical site based on the structured EMR received by the image sensor; and

update the three-dimensional representation based on the third image.

12. The control system of claim 8 , wherein the second image is received from a non-real-time image source.

13. The control system of claim 12 , wherein the non-real-time image source comprises at least one of a CT scan or an MRI.

14. The control system of claim 8 , wherein the display screen comprises an input interface, and wherein the control circuit is configured to receive the user selection from the input interface.

15. The control system of claim 14 , wherein the input interface comprises a manipulatable widget.

16. The control system of claim 14 , wherein the display further comprises a coordinate element configured to visually communicate a shift from a coordinate system of the first state to a coordinate system of second state.

17. The control system of claim 8 , wherein the user selection comprises an input to rotate the three-dimensional representation from the first point of view to the second point of view.

18. The control system of claim 8 , wherein the first visual characteristic comprises a first color, and wherein the second visual characteristic comprises a second color different than the first color.

19. The control system of claim 8 , wherein the second visual characteristic comprises highlighting.

Assignments (2)
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Jul 6, 2021
From: ETHICON LLC
To: CILAG GMBH INTERNATIONAL
Reel/Frame 056983/0569 →
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Apr 30, 2020
From: SHELTON, FREDERICK E., IV; HARRIS, JASON L.
To: ETHICON LLC
Reel/Frame 052540/0165 →
Continuity (1)
Related Publication 20210196384A1 · Jul 1, 2021
Cited By (3)
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