Gas spring surgical impacting tools
Various exemplary gas spring surgical impacting tools and methods of using gas spring surgical impacting tools are provided. In general, a surgical impacting tool includes a gas spring assembly. The gas spring assembly includes a sealed chamber configured to contained compressed gas therein. The surgical impacting tool also includes a motor configured to cause compression of the gas in the sealed chamber. The compression and decompression of the gas is configured to drive movement of a surgical implement attached to the surgical impacting tool and configured to impact bone.
1. A surgical tool, comprising:
a first piston;
a second piston that is independent from the first piston and is located rearward of the first piston;
a first strike surface;
a second strike surface;
a sealed chamber configured to contain compressed gas therein, the chamber defining a longitudinal axis extending between forward and rearward ends of the chamber, the first and second pistons each being positioned along the longitudinal axis of the chamber; and
a motor configured to drive movement of the first piston in a first direction and to drive movement of the first piston in a second direction that is opposite to the first direction, the movement of the first piston in the first direction being configured to cause compression of the gas in the chamber and the first piston to strike the first strike surface and thereby communicate a rearward force to an end effector operatively coupled to the first piston, and the movement of the first piston in the second direction being configured to cause compression of the gas in the chamber and the second piston to strike the second strike surface and thereby communicate a forward force to the end effector operatively coupled to the second piston.
2. The tool of claim 1 , wherein an opening is formed in a wall of the chamber;
the gas is configured to be introduced into the chamber through the opening and then the opening sealed;
the motor is configured to drive the movement of the first piston with chamber containing the compressed gas; and
a longitudinal axis extending through the opening is substantially perpendicular to the longitudinal axis extending between the first and second ends of the chamber.
3. The tool of claim 2 , further comprising a screw seated in and sealing the opening;
wherein, with the screw sealing the opening, a longitudinal axis of the screw is substantially perpendicular to the longitudinal axis extending between the first and second ends of the chamber.
4. The tool of claim 1 , further comprising an anvil, the anvil including the first and second strike surfaces.
5. The tool of claim 1 , further comprising a first shaft with a helical thread thereon;
wherein the movement of the first piston in the first and second directions is translational movement; and
wherein the motor is configured to cause rotation of the first shaft and thereby drive the translational movement of the first piston.
6. The tool of claim 5 , further comprising an anvil; and
a second shaft extending radially outward and being configured to slide along the helical thread in response to the rotation of the first shaft;
wherein the anvil includes the first and second strike surfaces.
7. The tool of claim 1 , further comprising a first bumper located in the chamber, operatively coupled to the first piston, and configured to bump against a rearward inner surface of the chamber; and
a second bumper located in the chamber, operatively coupled to the second piston, and configured to bump against a forward inner surface of the chamber.
8. The tool of claim 1 , further comprising a housing in which the first piston, the second piston, the first strike surface, the second strike surface, and the sealed chamber are disposed.
9. The tool of claim 8 , wherein the housing is configured to be handheld by a user.