Method for usage of the shroud as an aspect of sensing or controlling a powered surgical device, and a control algorithm to adjust its default operation
A method for controlling a surgical instrument is disclosed. In at least one instance, the surgical instrument comprises a shroud and the operation of the surgical instrument is modified based on input from a sensing circuit configured to sense a parameter of the shroud. In certain instances, the surgical instrument comprises a strain gage circuit and the operation of the surgical instrument is modified based on input from the strain gage circuit.
1. A method for controlling a surgical instrument, comprising:
rotating, with a motor control circuit, an output shaft of an electric motor;
sensing, with a strain gauge, strain experienced by the surgical instrument wherein the surgical instrument comprises a shroud, and wherein the strain gauge is attached to the shroud;
communicating, from the strain gauge, the sensed strain to the motor control circuit; and
changing, with the motor control circuit, the speed of the electric motor based on the sensed strain.
2. The method of claim 1 , wherein said changing comprises slowing the speed of the electric motor.
3. The method of claim 2 , wherein said changing comprises increasing the speed of the electric motor.
4. The method of claim 1 , wherein the surgical instrument comprises a shaft extending from the shroud and an end effector rotatably connected to the shaft, and wherein said rotating comprises rotating the output shaft of the electric motor to rotate the end effector relative to the shaft.
5. The method of claim 1 , wherein the surgical instrument comprises an end effector including a movable jaw, and wherein said rotating comprises rotating the output shaft of the electric motor to move the movable jaw.
6. The method of claim 1 , wherein the surgical instrument comprises a firing driver, and wherein said rotating comprises rotating the output shaft of the electric motor to move the firing driver.
7. The method of claim 1 , wherein the strain gauge is embedded in a wall of the shroud.
8. The method of claim 1 , wherein said method further comprises pressing the shroud to control the speed of the electric motor.
9. The method of claim 1 , wherein the motor control circuit comprises default operating controls, and wherein said method further comprises:
providing, by the strain gauge, data to the motor control circuit; and
modifying, by the motor control circuit, the default operating controls based on the provided data.
10. A method for controlling a surgical instrument, comprising:
operating, with a motor control circuit, an electric motor;
sensing, with a strain gauge, strain experienced by the surgical instrument;
communicating, from the strain gauge, the sensed strain to the motor control circuit;
sensing, with a force sensor, a force experienced by the surgical instrument;
communicating, from the force sensor, the sensed force to the motor control circuit; and
changing, with the motor control circuit, the speed of the electric motor based on the sensed strain and the sensed force.
11. The method of claim 10 , wherein the motor control circuit comprises default operating controls, and wherein said method further comprises modifying, with the motor control circuit, the default operating controls based on the sensed strain.
12. The method of claim 10 , wherein the surgical instrument comprises a handle housing, and wherein the strain gauge is embedded in a wall of the handle housing, and wherein said method further comprises pressing the handle housing to control the speed of the electric motor.
13. The method of claim 10 , wherein the surgical instrument comprises a handle housing, and wherein the strain gauge is embedded in a wall of the handle housing.
14. A method for controlling a surgical instrument, comprising:
operating, with a motor control circuit, an electric motor;
sensing, with a first strain gauge, a first strain experienced by the surgical instrument along a first axis;
communicating, from the first strain gauge, the sensed first strain to the motor control circuit;
sensing, with a second strain gauge, a second strain experienced by the surgical instrument along a second axis that is transverse to the first axis;
communicating, from the second strain gauge, the sensed second strain to the motor control circuit; and
changing, with the motor control circuit, the speed of the electric motor based on the sensed first strain and the second strain.
15. The method of claim 14 , wherein said changing comprises slowing the speed of the electric motor.
16. The method of claim 14 , wherein said changing comprises increasing the speed of the electric motor.
17. The method of claim 14 , wherein the surgical instrument comprises a handle housing, and wherein the first strain gauge and the second strain gauge are embedded in a wall of the handle housing.