Surgical robotic automation with tracking markers and controlled tool advancement
Devices, systems, and methods for aiding insertion of a surgical implant by providing a threaded guide tube configured to engage a threaded surgical instrument such that an end-effector of a robot may provide force to drive the surgical implant into a patient. In addition, devices, systems, and methods relating to a dilator system for use with a robotic system that allows independent and separate control of tools within the dilator system.
1. A system for independently advancing multiple components of a tool into bone, comprising:
a center shank configured to advance a first component of the tool into a bone, wherein the center shank is threaded;
a rod disposed around the center shank and configured to advance a second component of the tool in the bone, wherein the rod is configured to move independently from the center shank,
wherein the system is mounted to a surgical robot, the first component is a center pin, and the second component is an inner dilator,
wherein the center pin is configured to have a pointy distal end to engage the bone, and wherein the rod is corkscrew shaped and helically disposed around the center shank.
2. The system of claim 1 , further comprising an outer sleeve and an outer dilator,
wherein the center shank, the rod, the inner dilator, and the outer dilator are disposed within the outer sleeve, and
wherein the inner dilator is configured to advance over the center pin and the outer dilator is configured to advance over the inner dilator.
3. The system of claim 2 , further comprising at least one handle configured to advance the outer dilator over the inner dilator.
4. The system of claim 1 , wherein the inner dilator is restricted from rotating as rod advances the inner dilator.
5. The system of claim 1 , further comprising a threaded cap.
6. The dilator system of claim 5 , wherein the threaded cap has a corkscrew shaped through-hole configured to receive the rod and a threaded through-hole configured to receive the central shaft.
7. The system of claim 1 , wherein the robot is configured to position the system relative to a patient.
8. The system of claim 7 , further comprising a plurality of helical rods disposed around the center shank and configured to independently rotate as nested helices, each helical rod configured to advance a different component of the tool into a patient.