System and method for location determination using movement between optical labels and a 3D spatial mapping camera
A system determining a location for a surgical procedure, the system including a jig having a frame, a first marker fixed to the frame, wherein the first marker includes a scanable label, and a second marker moveably connected to the frame, such that the second marker can move positions independent of the frame, and wherein the second marker includes a scanable label. The system also includes a mixed reality headset configured to scan the scanable label of the first marker and the scanable label of the second marker, to provide location data to the mixed reality headset.
1. A system for determining a location for a surgical procedure, comprising:
a jig;
wherein the jig includes:
a frame;
a first marker connected to the frame, wherein the first marker includes a scanable label;
a second marker moveably connected to the frame, such that the second marker can move positions independent of the frame, and wherein the second marker includes a scanable label;
wherein the scanable label of the first marker includes data that is configured to be utilized to determine the orientation of the second marker;
wherein the frame includes a slot configured to receive the second marker such that the slot is in friction fit engagement with the second marker;
at least one locking pin configured to bias the frame against the second marker within the slot; and
a mixed reality headset configured to scan the scanable label of the first marker and the scanable label of the second marker, to provide location data to the mixed reality headset.
2. The system of claim 1 , further comprising:
a 3D spatial mapping camera configured to spatially map the jig and the bone, wherein the mixed reality headset configured to communicate with the 3D mapping camera, such that the mixed reality headset provides a determined location for the second marker relative to the bone.
3. The system of claim 1 , wherein the first marker is fixed to the frame such that the first marker does not move independent of the frame.
4. The system of claim 1 , wherein the scanable label of the first marker includes data receivable by the mixed reality headset related to the jig.
5. The system of claim 1 , wherein the scanable label of the second marker includes data receivable by the mixed reality headset related to a determined position of the second marker.
6. The system of claim 1 , wherein the second marker includes a target, configured to identify a location to drill.
7. The system of claim 1 , wherein the second marker may move laterally, with respect to the frame, within the slot.
8. The system of claim 1 , further comprising a mounting plate fastened to the frame and configured to abut a bone.
9. The system of claim 1 , wherein the scanable label of the first marker is removable.
10. The system of claim 1 , wherein the scanable label of the second marker is removable.
11. The system of claim 1 , wherein the second marker can be inserted into the slot such that the second marker may move laterally, with respect to the frame, within the slot.
12. A system for determining a location for a surgical procedure, comprising:
a jig configured and arranged to be attached to a bone;
wherein the jig includes:
a frame;
a first marker connected to the frame, wherein the first marker includes a scanable label;
a second marker moveably connected to the frame, such that the second marker can move positions independent of the frame, and wherein the second marker includes a scanable label;
wherein the scanable label of the first marker includes data that is configured to be utilized to determine the orientation of the second marker;
wherein the frame includes a slot configured to receive the second marker such that the slot is in direct friction fit engagement with the second marker;
at least one locking pin, separate from the second marker, configured to bias the frame against the second marker within the slot;
a 3D spatial mapping camera configured to spatially map the jig and the bone; and
a mixed reality headset configured to communicate with the 3D mapping camera, such that the mixed reality headset provides determined location for the second marker relative to the bone.
13. The system of claim 12 , wherein the a mixed reality headset is configured to scan the scanable label of the first marker and the scanable label of the second marker, to provide location data to the mixed reality headset.
14. The system of claim 12 , wherein the first marker is fixed to the frame such that the first marker does not move independent of the frame.
15. The system of claim 12 , wherein the scanable label of the first marker includes data receivable by the mixed reality headset related to the jig.
16. The system of claim 12 , wherein the scanable label of the second marker includes data receivable by the mixed reality headset related to a determined position of the second marker.
17. The system of claim 12 , wherein the second marker includes a target, configured to identify a location to drill.
18. The system of claim 12 , wherein the second marker may move laterally, with respect to the frame, within the slot.
19. The system of claim 12 , further comprising a mounting plate fastened to the frame and configured to abut a bone.
20. The system of claim 12 , wherein the second marker can be inserted into the slot such that the second marker may move laterally, with respect to the frame, within the slot.
21. A system for determining a location for a surgical procedure, comprising:
a jig;
wherein the jig includes:
a frame;
a first marker connected to the frame, wherein the first marker includes a scanable label;
a second marker moveably connected to the frame, such that the second marker can move positions independent of the frame, and wherein the second marker includes a scanable label;
a mixed reality headset configured to scan the scanable label of the first marker and the scanable label of the second marker, to provide location data to the mixed reality headset;
a 3D spatial mapping camera configured to spatially map the jig and the bone, wherein the mixed reality headset configured to communicate with the 3D mapping camera, such that the mixed reality headset provides a determined location for the second marker relative to the bone;
wherein the first marker is fixed to the frame such that the first marker does not move independent of the frame;
wherein the scanable label of the first marker includes data receivable by the mixed reality headset related to the jig, wherein the scanable label of the first marker is removable, and wherein the scanable label of the first marker includes data that is configured to be utilized to determine the orientation of the second marker;
wherein the scanable label of the second marker includes data receivable by the mixed reality headset related to a determined position of the second marker, wherein the scanable label of the second marker is removable;
wherein the second marker includes a target, configured to identify a location to drill;
wherein the frame includes a slot configured to receive the second marker, the slot being defined by opposing interior surfaces, said opposing interior surfaces being disposed in friction fit engagement with the second marker, wherein the second marker can be inserted into the slot and the second marker may move laterally and translationally 360 degrees, with respect to the frame, within the slot, and the slot is configured to receive the second marker with a friction fit engagement;
at least one locking pin configured to bias said opposing interior surfaces of the slot against the second marker, and
a mounting plate fastened to the frame and configured to abut a bone.
22. A system for determining a location for a surgical procedure, comprising:
a jig;
wherein the jig includes:
a frame;
a first marker connected to the frame, wherein the first marker includes a scanable label;
a second marker moveably connected to the frame, such that the second marker can move positions independent of the frame, and wherein the second marker includes a scanable label;
wherein the frame includes a slot configured to receive the second marker such that the slot is in friction fit engagement with the second marker, wherein the second marker can be inserted into the slot such that the second marker may move laterally, with respect to the frame, within the slot;
at least one locking pin configured to bias the frame against the second marker within the slot;
and
a mixed reality headset configured to scan the scanable label of the first marker and the scanable label of the second marker, to provide location data to the mixed reality headset.
23. The system of claim 22 , further comprising:
a 3D spatial mapping camera configured to spatially map the jig and the bone, wherein the mixed reality headset configured to communicate with the 3D mapping camera, such that the mixed reality headset provides a determined location for the second marker relative to the bone.
24. The system of claim 22 , wherein the first marker is fixed to the frame such that the first marker does not move independent of the frame.
25. The system of claim 22 , wherein the scanable label of the first marker includes data that is configured to be utilized to determine the orientation of the second marker.
26. The system of claim 22 , wherein the scanable label of the second marker includes data receivable by the mixed reality headset related to a determined position of the second marker.
27. The system of claim 22 , wherein the second marker includes a target, configured to identify a location to drill.
28. The system of claim 22 , further comprising a mounting plate fastened to the frame and configured to abut a bone.