Hand-manipulated input device for robotic system
Certain aspects relate to systems and techniques for an input device for controlling a robotic surgical tool. The input device can include a first pair of opposing links and a second pair of opposing links. The first pair of opposing links and second pair of opposing links can be arranged radially symmetrically. The input device can be configured to control operation of the robotic surgical tool.
1. An input device for controlling a robotic surgical tool, the input device comprising:
a first pair of opposing links; and
a second pair of opposing links, wherein:
each of the second pair of opposing links comprises a clutch button;
the first pair of opposing links and the second pair of opposing links are arranged radially; and
the input device is configured to control operation of the robotic surgical tool.
2. The input device of claim 1 , wherein the first pair of opposing links is longer than the second pair of opposing links.
3. The input device of claim 1 , wherein the first pair of opposing links are of equal length as the second pair of opposing links.
4. The input device of claim 1 , wherein each of the first pair of opposing links comprises a finger pad.
5. The input device of claim 1 , wherein the clutch button comprises a push button.
6. The input device of claim 1 , wherein the clutch button comprises a protruding ledge.
7. The input device of claim 1 , wherein when the clutch button is actuated, the clutch button is configured to decouple the input device from controlling operation of the robotic surgical tool.
8. The input device of claim 1 , wherein each of the first pair of opposing links and each of the second pair of opposing links is coupled to a central longitudinal member.
9. The input device of claim 8 , wherein proximal ends of each of the first pair of opposing links and each of the second pair of opposing links are configured to radially move relative to the central longitudinal member.
10. The input device of claim 8 , wherein each of the first pair of opposing links are configured to move together, such that proximal ends of the first pair of opposing links are positioned equally distant from the central longitudinal member.
11. The input device of claim 1 , wherein the first pair of opposing links and the second pair of opposing links are configured to move together.
12. An input device for controlling a robotic surgical tool, the input device comprising:
a multi-link grasper comprising three or more links coupled to a central longitudinal member and each of at least two links of the three or more links comprises a clutch button, wherein:
the three or more links are spaced less than 180 degrees from one another about the central longitudinal member; and
the multi-link grasper is configured for controlling operation of the robotic surgical tool.
13. The input device of claim 12 , wherein each of the three or more links are configured to move from an open position where proximal ends of each of the three or more links are positioned radially away from the central longitudinal member to a closed position where the proximal ends of each of the three or more links are positioned radially close to the central longitudinal member.
14. The input device of claim 13 , wherein each of the three or more links are biased in the open position.
15. An input device for controlling a surgical tool, the input device comprising:
a multi-link grasper comprising two or more links about a central longitudinal member for controlling operation of the surgical tool, wherein:
at least one of the two or more links comprises a finger input; and
in a first mode, the finger input operates as a finger clutch and, in a second mode, the finger input operates as a selecting tool.
16. The input device of claim 15 , wherein the finger input comprises a rotary input.
17. The input device of claim 15 , wherein the central longitudinal member comprises a sensor for detecting a mode of the finger input.