Display arrangements for robot-assisted surgical platforms
Various surgical systems are disclosed. A surgical system comprises a robotic tool, a robot control system, a surgical instrument, and a surgical hub. The robot control system comprises a control console and a control unit in signal communication with the control console and the robotic tool. The surgical hub comprises a display. The surgical hub is in signal communication with the robot control system. The surgical hub is configured to detect the surgical instrument and represent the surgical instrument on the display.
1. A surgical system for controlling a robotic surgical system positioned in a sterile field, the surgical system comprising:
a remote control console positioned outside of the sterile field, wherein the remote control console comprises a first interface comprising a first display, wherein the robotic surgical system is to be controlled by a clinician via the first interface; and
a second interface positioned in the sterile field, wherein the second interface comprises a handheld device comprising a second display, and wherein the robotic surgical system is to be controlled by the clinician via the handheld device.
2. The surgical system of claim 1 , wherein the remote control console further comprises a surgical hub comprising a processor and a memory, and wherein the surgical hub is configured to communicate a display element to the first display and the second display.
3. The surgical system of claim 1 , wherein an operating parameter of the robotic surgical system is adjustable via a user input to the second interface.
4. The surgical system of claim 3 , wherein the second display comprises a touchscreen, and wherein the user input comprises the clinician interacting with the touchscreen.
5. The surgical system of claim 1 , wherein the robotic surgical system is to be controlled by a signal from the second interface, and wherein the signal is overridable via the first interface.
6. The surgical system of claim 1 , wherein the robotic surgical system is to be controlled by a signal from the second interface, wherein a notification is produced on the first display based on the signal, and wherein a clinician can permit or prevent the signal from controlling the robotic surgical system by interacting with the first interface.
7. The surgical system of claim 1 , wherein the robotic surgical system comprises a surgical tool, and wherein the second interface can control the surgical tool, based on the second interface making contact with the surgical tool.
8. The surgical system of claim 1 , further comprising a third interface positioned in the sterile field, wherein the robotic surgical system is to be controlled by the clinician via the third interface, and wherein the third interface comprises a wearable device.
9. The surgical system of claim 1 , wherein the second interface is incorporated into a handheld surgical instrument positioned in the sterile field.
10. The surgical system of claim 1 , further comprising a situational awareness module configured to influence when the second interface can control the robotic surgical system.
11. A surgical system for controlling a robotic surgical system positioned in a sterile field, the surgical system comprising:
a remote control console positioned outside of the sterile field, wherein the remote control console comprises:
a first surgical hub comprising a processor and a memory; and
a first interface comprising a first display, wherein the robotic surgical system is to be controlled by a clinician via the first interface;
a second surgical hub positioned in the sterile field, wherein the second surgical hub is in signal communication with the first surgical hub, and wherein the second surgical hub comprises a processor, a memory, and a generator in signal communication with a handheld surgical instrument positioned in the sterile field; and
a second interface positioned in the sterile field, wherein the second interface comprises a second display, and wherein the robotic surgical system is configured to be controlled by the clinician via the second interface.
12. The surgical system of claim 11 , wherein the robotic surgical system is to be controlled by a signal from the second interface, and wherein the signal is overridable via the first interface.
13. The surgical system of claim 11 , wherein the robotic surgical system is to be controlled by a signal from the second interface, wherein a notification is produced on the first display based on the signal, and wherein a clinician can permit or prevent the signal from controlling the robotic surgical system by interacting with the first interface.
14. The surgical system of claim 11 , wherein the robotic surgical system comprises a surgical tool, and wherein the second interface can control the surgical tool, based on the second interface making contact with the surgical tool.
15. The surgical system of claim 11 , wherein the second interface comprises a wearable device.
16. The surgical system of claim 11 , wherein the second interface comprises a handheld device.
17. The surgical system of claim 11 , further comprising the handheld surgical instrument, and wherein the second interface is incorporated into the handheld surgical instrument.
18. The surgical system of claim 11 , further comprising a situational awareness module configured to influence when the second interface can control the robotic surgical system.
19. A surgical system for controlling a robotic surgical system positioned in a sterile field, the surgical system comprising:
a remote control console positioned outside of the sterile field, wherein the remote control console comprises a first interface comprising a first display, wherein the robotic surgical system is to be controlled by a clinician via the first interface;
a situational awareness module; and
a second interface positioned in the sterile field, wherein the second interface comprises a handheld device comprising a second display, wherein the robotic surgical system is to be selectively controlled by the clinician via the second interface, and wherein the selective control is influenced by the situational awareness module.
20. The surgical system of claim 8 , wherein the wearable device is configured to be worn on an arm of the clinician.