Surgical instrument actuation mechanisms
Systems and methods for computer-assisted systems using robotic technology are described. For example, this disclosure describes systems and methods that can be used in various contexts such as, but not limited to, minimally invasive computer-assisted tele-operated surgery using robotic technology. The disclosure describes instruments and mechanisms for actuating and controlling the motions of such instruments. The instruments and actuator mechanisms may be used in medical operations and non-medical operations.
1. A surgical instrument actuation mechanism comprising:
a first spline shaft;
a second spline shaft;
a carriage translatable along the first and second spline shafts; and
a screw slidably mated around the second spline shaft and threadedly coupled with the carriage for driving translation of the carriage along the first spline shaft and the second spline shaft.
2. The surgical instrument actuation mechanism of claim 1 , further comprising:
a pinion gear axle extending from the carriage; and
a pinion gear rotatably coupled to the pinion gear axle.
3. The surgical instrument actuation mechanism of claim 1 , wherein the carriage is a second carriage, and wherein the surgical instrument actuation mechanism further comprises:
a first carriage; and
a first leadscrew threadedly coupled with the first carriage.
4. The surgical instrument actuation mechanism of claim 3 , wherein the first leadscrew extends parallel to a longitudinal axis of the surgical instrument actuation mechanism, and wherein the first carriage translates along the longitudinal axis in response to rotations of the first leadscrew.
5. The surgical instrument actuation mechanism of claim 3 , wherein the first carriage comprises:
a first platform member; and
a second platform member fixedly coupled to the first platform member in a spaced apart arrangement, and
wherein the second carriage is disposed between the first platform member and the second platform member.
6. The surgical instrument actuation mechanism of claim 5 , further comprising:
a first rack meshed with a pinion gear; and
a second rack meshed with the pinion gear,
wherein the second platform member is fixedly coupled to the first platform member by slides on which the first rack and the second rack slidably translate.
7. A surgical instrument actuation mechanism comprising:
a first spline shaft;
a second spline shaft;
a carriage translatable along the first and second spline shafts;
a collar slidably mated with the second spline shaft and threadedly coupled with the carriage;
a pinion gear axle extending from the carriage; and
a pinion gear rotatably coupled to the pinion gear axle,
wherein the collar is a second collar, wherein the surgical instrument actuation mechanism further comprises a first collar slidably mated with the first spline shaft, and wherein the first collar comprises a worm meshed with a worm gear that is coupled to the pinion gear.
8. The surgical instrument actuation mechanism of claim 7 , wherein the carriage is a second carriage, and wherein the surgical instrument actuation mechanism further comprises:
a first carriage; and
a first leadscrew threadedly coupled with the first carriage.
9. The surgical instrument actuation mechanism of claim 8 , wherein the first leadscrew extends parallel to a longitudinal axis of the surgical instrument actuation mechanism, and wherein the first carriage translates along the longitudinal axis in response to rotations of the first leadscrew.
10. The surgical instrument actuation mechanism of claim 8 , wherein the first carriage comprises:
a first platform member; and
a second platform member fixedly coupled to the first platform member in a spaced apart arrangement, and
wherein the second carriage is disposed between the first platform member and the second platform member.
11. The surgical instrument actuation mechanism of claim 10 , further comprising:
a first rack meshed with the pinion gear; and
a second rack meshed with the pinion gear,
wherein the second platform member is fixedly coupled to the first platform member by slides on which the first rack and the second rack slidably translate.
12. A surgical instrument actuation mechanism comprising:
a first spline shaft;
a second spline shaft;
a carriage translatable along the first and second spline shafts;
a collar slidably mated with the second spline shaft and threadedly coupled with the carriage;
a pinion gear axle extending from the carriage; and
a pinion gear rotatably coupled to the pinion gear axle,
a first rack meshed with the pinion gear; and
a second rack meshed with the pinion gear,
wherein the first rack and the second rack are meshed with the pinion gear at diametrically opposite sides of the pinion gear.
13. The surgical instrument actuation mechanism of claim 12 , wherein the carriage is a second carriage, and wherein the surgical instrument actuation mechanism further comprises:
a first carriage; and
a first leadscrew threadedly coupled with the first carriage.
14. The surgical instrument actuation mechanism of claim 13 , wherein the first leadscrew extends parallel to a longitudinal axis of the surgical instrument actuation mechanism, and wherein the first carriage translates along the longitudinal axis in response to rotations of the first leadscrew.
15. The surgical instrument actuation mechanism of claim 13 , wherein the first carriage comprises:
a first platform member; and
a second platform member fixedly coupled to the first platform member in a spaced apart arrangement, and
wherein the second carriage is disposed between the first platform member and the second platform member.
16. The surgical instrument actuation mechanism of claim 15 , further comprising:
a first rack meshed with the pinion gear; and
a second rack meshed with the pinion gear,
wherein the second platform member is fixedly coupled to the first platform member by slides on which the first rack and the second rack slidably translate.