Adapter assembly with pulley system and worm gear drive for interconnecting electromechanical surgical devices and surgical end effectors
An adapter assembly for selective connection to a surgical device is provided. The adapter assembly includes an outer tube having a distal end and a proximal end, a housing secured to the proximal end of the outer tube, and a cable drive assembly supported by the housing. The cable drive assembly includes a worm gear drive assembly, a cable gear assembly coupled to the worm gear drive assembly, and one or more cables coupled to the cable gear assembly and axially translatable within the outer tube.
1. An adapter assembly for selectively interconnecting an end effector to a handle assembly supporting a motor, the motor configured to impart drive force from the handle assembly to the end effector to operate the end effector, the adapter assembly comprising:
an adapter housing configured to couple to the handle assembly;
an outer tube extending distally from the adapter housing and configured to support the end effector; and
a cable drive assembly supported by the adapter housing and including:
a worm gear;
a capstan; and
a cable coupled to the capstan, the cable axially translatable in response to rotation of the capstan and the worm gear to operate the end effector.
2. The adapter assembly of claim 1 , further including a firing assembly that extends through the cable drive assembly and into the outer tube.
3. The adapter assembly of claim 2 , wherein the firing assembly includes a firing shaft that rotates independent of the cable drive assembly to actuate a firing function of the end effector.
4. The adapter assembly of claim 1 , wherein the cable drive assembly further includes a second capstan and a second cable coupled to the second capstan.
5. The adapter assembly of claim 4 , wherein the second cable is axially translatable in response to rotation of a second worm gear.
6. The adapter assembly of claim 1 , wherein the adapter housing includes an outer housing and an inner housing, the inner and outer housings supporting the cable drive assembly therein.
7. The adapter assembly of claim 1 , wherein the cable drive assembly further includes at least one pulley supporting the cable and configured to direct the cable into the outer tube.
8. The adapter assembly of claim 1 , wherein the cable drive assembly further includes a body portion that supports the worm gear in contacting relation with a cable gear.
9. The adapter assembly of claim 1 , wherein the outer tube defines a longitudinal axis that extends between proximal and distal ends of the outer tube, the worm gear supported on a shaft member that extends in parallel relationship to the longitudinal axis of the outer tube, the shaft member rotatable to rotate the worm gear.
10. A surgical stapling apparatus, comprising:
an end effector;
a handle assembly configured to operate the end effector; and
an adapter assembly for selectively interconnecting the end effector and the handle assembly, the adapter assembly including:
an adapter housing configured to couple to the handle assembly;
an outer tube extending distally from the adapter housing and configured to support the end effector; and
a cable drive assembly supported by the adapter housing and including:
a worm gear;
a capstan; and
a cable coupled to the capstan, the cable axially translatable in response to rotation of the capstan and the worm gear to operate the end effector.
11. The surgical stapling apparatus of claim 10 , wherein the adapter assembly further includes a firing assembly that extends through the cable drive assembly and into the outer tube.
12. The surgical stapling apparatus of claim 11 , wherein the firing assembly includes a firing shaft that rotates independent of the cable drive assembly to actuate a firing function of the end effector.
13. The surgical stapling apparatus of claim 10 , wherein the cable drive assembly further includes a second capstan and a second cable coupled to the second capstan.
14. The surgical stapling apparatus of claim 13 , wherein the second cable is axially translatable in response to rotation of the second capstan.
15. The surgical stapling apparatus of claim 10 , wherein the adapter housing of the adapter assembly includes an outer housing and an inner housing, the inner and outer housings supporting the cable drive assembly therein.
16. The surgical stapling apparatus of claim 10 , wherein the cable drive assembly further includes at least one pulley supporting the cable and configured to direct the cable into the outer tube.
17. The surgical stapling apparatus of claim 10 , wherein the cable drive assembly further includes a body portion that supports the worm gear in contacting relation with a cable gear.
18. The surgical stapling apparatus of claim 10 , wherein the outer tube of the adapter assembly defines a longitudinal axis that extends between proximal and distal ends of the outer tube, the worm gear supported on a shaft member that extends in parallel relationship to the longitudinal axis of the outer tube, the shaft member rotatable to rotate the worm gear.
19. An end effector assembly, comprising:
an end effector;
an adapter assembly for selective connection to the end effector and a handle assembly, the adapter assembly comprising:
an adapter housing configured to couple to the handle assembly;
an outer tube extending distally from the adapter housing and configured to support the end effector; and
a cable drive assembly supported by the adapter housing and including:
a worm gear;
a capstan; and
a cable coupled to the capstan, the cable axially translatable in response to rotation of the capstan and the worm gear to operate the end effector.
20. The end effector assembly of claim 19 , wherein the cable drive assembly further includes a second capstan and a second cable coupled to the second capstan.