Systems and methods for imaging communication and control
A telesurgical mentoring platform with a wheeled base, a lower rack mounted on the base, an upper rack extending vertically from the lower rack, a compactly foldable articulated arm that is configured to extend horizontally outward away from the upper rack and configured to connect to a connector piece holding an end effectuator at its distal end, a tablet personal computer; the console configured to be readily mobilized on the floor of an existing operating room and is capable of providing a connectivity point for communication, audiovisual, and data transfer services in an operating room.
1. An imaging system comprising:
a pan-tilt-zoom camera supported by a distal end of an articulated arm supported by one or more racks on a wheeled base, wherein the articulated arm comprises at least a plurality of pieces configured for free-swinging movement relative to one another, about a vertical axis within a limited horizontal plane, thereby permitting the pan-tilt-zoom-camera to move within the limited horizontal plane relative to the one or more racks;
an additional camera disposed on an upper portion of the one or more racks, wherein the upper portion of the one or more racks comprises a vertical portion and a lateral portion extending horizontally from the vertical portion, wherein the articulated arm and the additional camera are coupled to the lateral portion;
one or more video inputs configured to receive video inputs from additional video sources, said additional video sources comprising at least one of a fluoroscopy imaging system, an echocardiogram imaging system, or an endoscopic imaging system;
one or more processors configured to receive and encrypt images from the pan-tilt-zoom camera, the additional camera, and the one or more video inputs; and
one or more communication systems configured to deliver the images to an electronic display supported by the rack and a remote tablet at a different location from the imaging system, wherein the additional camera is (i) independently movable relative to the electronic display and (ii) positioned in front of the electronic display,
wherein the remote tablet is configured to receive controls from a user to (1) select one or more image sources from the pan-tilt-zoom camera, the additional camera, and the one or more video inputs to display on the tablet; and (2) control movement of the pan-tilt-zoom camera and the articulated arm.
2. The imaging system of claim 1 , wherein the electronic display comprises a tablet computer.
3. The imaging system of claim 1 , wherein the pan-tilt-zoom camera is angled via the articulating arm to produce live video images on the electronic display.
4. The imaging system of claim 1 , wherein the articulating arm is connected to an upper rack of the one or more racks via an articulated arm base, which allows for free-swinging movement of the articulated arm in the limited horizontal plane.
5. The imaging system of claim 1 , wherein the articulating arm and a connector piece of the plurality of pieces are connected by an articulated arm base joint allowing for free-swinging movement of the articulated arm and the connector piece in a horizontal plane.
6. The imaging system of claim 1 , wherein the imaging system is movable to a convenient location in an operating room or near a patient or a surgical environment.
7. The imaging system of claim 1 , wherein the electronic display is configured to display one or more image or video outputs from the pan-tilt-zoom camera.
8. The imaging system of claim 7 , wherein the one or more image or video outputs are delivered and transferred via a physical connection or via the Internet.
9. The imaging system of claim 1 , further comprising:
an ethernet input for establishing an Internet connection;
an HDMI monitor output for mirroring existing monitors in the imaging system; and
one or more imaging system inputs to directly input the imaging system, encrypt a real-time view obtained using the imaging system, and transmit the real-time view to a remote user.
10. The imaging system of claim 1 , further comprising:
a video mixer which allows for toggling of various video sources to provide multi-screen functionality comprising a full screen view, a split screen view, a tri-view, or a quad-view.
11. The imaging system of claim 1 , further comprising a power supply, wherein the power supply comprises a rechargeable battery source.
12. The imaging system of claim 1 , further comprising a stand-alone speaker and a stand-alone microphone.
13. The imaging system of claim 1 , further comprising an on-board computer in communication with the electronic display and an audiovisual component for network conferencing of video content and audio content in real time to a remote user.
14. The imaging system of claim 13 , wherein the video content and audio content are delivered and transferred via the Internet to the remote user.
15. The imaging system of claim 1 , wherein the upper portion of the one or more racks comprises a lateral extension to which the articulated arm and the additional camera are coupled.
16. The imaging system of claim 1 , wherein at least one of the pan-tilt-zoom camera or the additional camera is configured to provide up to a 360-degree visualization of an operating room in which the imaging system is located.
17. The imaging system of claim 1 , wherein the articulated arm and the additional camera are coupled to different surfaces or sides of the lateral portion.
18. The imaging system of claim 1 , wherein the articulated arm and the additional camera are coupled to opposing surfaces or sides of the lateral portion.
19. The imaging system of claim 1 , wherein the images delivered to the electronic display and the remote tablet are manipulable, togglable, or selectable by a remote user and a local user of the imaging system.
20. The imaging system of claim 1 , wherein the pan-tilt-zoom camera is configured for gesture-based control by both a remote user and a local user of the imaging system.