DIGITAL HANDING USING A FLEX OR BEND SENSOR
A surgeon input tool is configured to generate input to a surgical robotic system to actuate jaw open-close of a surgical instrument. The tool comprises a grip and an elongate member extending from the grip such that when the grip is positioned against a palm of a human hand, the elongate member is positionable in contact with a finger of the hand, such as the index finger. The member includes a flexible bend sensor which generates signals in response to bending of the member by the user.
1 . A surgeon input tool comprising:
a grip, and
an elongate member extending from the grip such that when the grip is positioned against a palm of a human hand, the elongate member is positionable in contact with a finger of the hand, wherein the member comprises a flexible bend sensor and is moveable relative to the grip between a first position and a second position.
2 . The surgeon input tool of claim 1 , wherein the flexible bend sensor is configured to sense bending in 1DOF.
3 . The surgeon input tool of claim 1 , wherein the bend sensor is configured to send bending in 2 DOFs.
4 . The surgeon input tool of claim 1 , further including at least one haptic element disposed on at least one of the grip and the elongate member.
5 . The surgeon input tool of claim 1 , further including a spring member resiliently biasing the flexible bend sensor in the first position.
6 . A method of generating input for commanding jaw actuation of a robotically controlled surgical instrument, the method including:
positioning a surgeon input tool in contact with a hand of a surgeon,
using a finger of the hand, applying a force to a flexible bend sensor of the surgeon input tool in a first direction, causing said bend sensor to bend and generate a first signal, and
in response to the first signal, causing a jaw of the surgical instrument to move from an open position to a closed position.
7 . The method of claim 6 , wherein the method further includes:
bending the flexible bend sensor in a second direction different from the first direction, causing said bend sensor to generate a second signal, and
in response to the second signal, causing axial rolling of the surgical instrument relative to its longitudinal axis.
8 . The method of claim 6 , wherein the flexible bend sensor is moveable from a first position to a second position to generate the first signal, and wherein the method includes resiliently moving the flexible bend sensor from the second position to the first position upon at least partial release of the force.