Surgical instrument comprising an adaptive control system
A surgical instrument system comprising an adaptive control system is disclosed. The instrument includes a motor control system configured to control the operation of a closure motor and a drive motor. The motor control system is configured to increase the clamping pressure applied by a first jaw during a secondary tissue cutting stroke as compared to the clamping pressure applied by the first jaw during a first tissue cutting stroke.
1. A surgical instrument, comprising:
a first jaw;
a second jaw, wherein said first jaw is movable toward said second jaw from an unclamped position to a clamped position during a jaw closure stroke;
a closure system, comprising:
a closure motor; and
a closure member operably coupled to said closure motor, wherein said closure member is movable through said jaw closure stroke by said closure motor to move said first jaw into said clamped position and apply clamping pressure to tissue captured between said first jaw and said second jaw;
a tissue cutting system, comprising:
a drive motor; and
a cutting member operably coupled to said drive motor, wherein said cutting member is movable through a tissue cutting stroke by said drive motor to cut the tissue captured between said first jaw and said second jaw after said first jaw has been moved into said clamped position, and wherein said surgical instrument is reusable to perform a second tissue cutting stroke; and
a motor control system in communication with said closure motor and said drive motor, wherein said motor control system is configured to control the operation of said closure motor and said drive motor, and wherein said motor control system is configured to increase the clamping pressure applied by said first jaw during said second tissue cutting stroke as compared to the clamping pressure applied by said first jaw during said tissue cutting stroke.
2. The surgical instrument of claim 1 , wherein said motor control system is configured to increase said jaw closure stroke during said second tissue cutting stroke as compared to said tissue cutting stroke to increase the clamping pressure applied by said first jaw during said second tissue cutting stroke.
3. The surgical instrument of claim 2 , wherein said motor control system is configured to decrease the speed of said drive motor during said second tissue cutting stroke.
4. The surgical instrument of claim 1 , wherein said surgical instrument is reusable to perform a third tissue cutting stroke, and wherein said motor control system is configured to increase the clamping pressure applied by said first jaw during said third tissue cutting stroke as compared to the clamping pressure applied by said first jaw during said second tissue cutting stroke.
5. The surgical instrument of claim 4 , wherein said motor control system is configured to increase said jaw closure stroke during said third tissue cutting stroke to increase the clamping pressure applied by said first jaw during said third tissue cutting stroke.
6. A surgical instrument, comprising:
a first jaw;
a second jaw, wherein said first jaw is movable toward said second jaw from an unclamped position to a clamped position during a jaw closure stroke;
a closure system, comprising:
a closure motor; and
a closure member drivable by said closure motor, wherein said closure member is movable through said jaw closure stroke by said closure motor to move said first jaw into said clamped position and apply clamping pressure to tissue captured between said first jaw and said second jaw;
a tissue cutting system, comprising:
a drive motor; and
a cutting member drivable by said drive motor, wherein said cutting member is movable through a tissue cutting stroke by said drive motor to cut the tissue captured between said first jaw and said second jaw after said first jaw has been moved into said clamped position;
detecting means for detecting a cutting force being applied by said cutting member during said tissue cutting stroke; and
a motor control system in communication with said closure motor, said drive motor, and said detecting means, wherein said motor control system is configured to control operation of said closure motor and said drive motor, and wherein said motor control system is configured to increase the clamping pressure applied by said first jaw during said tissue cutting stroke when said detecting means detects an increase in said cutting force above a pre-determined threshold.
7. The surgical instrument of claim 6 , wherein said motor control system is configured to increase said jaw closure stroke during said tissue cutting stroke to increase the clamping pressure applied by said first jaw during said tissue cutting stroke.
8. The surgical instrument of claim 7 , wherein said motor control system is configured to decrease the speed of said drive motor when said jaw closure stroke is increased.
9. The surgical instrument of claim 8 , wherein said motor control system comprises a pulse width modulation circuit configured to control the speed of said drive motor.
10. The surgical instrument of claim 6 , wherein said detecting means comprises a current sensor configured to detect the current drawn by said drive motor.
11. A surgical instrument, comprising:
a first jaw;
a second jaw, wherein said first jaw is movable toward said second jaw from an unclamped position to a clamped position during a jaw closure stroke;
a closure system, comprising:
a closure motor; and
a closure member drivable by said closure motor, wherein said closure member is movable through said jaw closure stroke by said closure motor to move said first jaw into said clamped position and apply clamping pressure to tissue captured between said first jaw and said second jaw;
a tissue cutting system, comprising:
a drive motor; and
a cutting member drivable by said drive motor, wherein said cutting member is movable through a tissue cutting stroke by said drive motor to cut the tissue captured between said first jaw and said second jaw after said first jaw has been moved into said clamped position;
a sensor circuit configured to sense the cutting force being applied by said cutting member during said tissue cutting stroke; and
a motor control system in communication with said closure motor, said drive motor, and said sensor circuit, wherein said motor control system is configured to control operation of said closure motor and said drive motor, wherein said motor control system is configured to compare the cutting force sensed by said sensor circuit to a cutting force profile, and wherein said motor control system is configured to increase the clamping pressure applied by said first jaw during said tissue cutting stroke when said motor control system detects an increase in said sensed cutting force above said cutting force profile.
12. The surgical instrument of claim 11 , wherein said motor control system is configured to increase said jaw closure stroke during said tissue cutting stroke to increase the clamping pressure applied by said first jaw during said tissue cutting stroke.
13. The surgical instrument of claim 11 , wherein said motor control system is configured to decrease the speed of said drive motor when said jaw closure stroke is increased.
14. The surgical instrument of claim 13 , wherein said motor control system comprises a pulse width modulation circuit configured to control the speed of said drive motor.