Light guided digitization method to register a bone
A system, device, and method is provided that improves the point collection process during bone registration for computer-assisted surgical procedures. A user is guided in the point collection process by projecting a set of points directly on the bone with a tracked digitizer probe following a rough registration of the bone. The system, device, and method therefore negates the need for the user to constantly look-up on an instructional display monitor and make the complicated mappings between the displayed instructions on the monitor and the actual bone.
1 . A digitizer probe, comprising:
a body;
a light emitter coupled to the body for projecting light on the bone;
a light emitting diode (LED) coupled to at least one of the body or a tracking element for transferring data;
a probe tip located at a distal end of the body for contacting the bone at the locations of the projected light;
and
the tracking element coupled to at least one of the body or the light emitter for a tracking system to track a location of at least one of the digitizer or the light emitter.
2 . The digitizer probe of claim 1 wherein said tracking element comprises a plurality of passive or active markers.
3 . The digitizer probe of claim 1 wherein the light emitter is coupled to the body at a location proximal to the probe tip.
4 . The digitizer probe of claim 1 wherein said light emitter is laterally offset from an axis of the body.
5 . The digitizer probe of claim 1 wherein the tracking element is coupled to the body at a location proximal to the probe tip, wherein the light emitter is located between the probe tip and the tracking element.
6 . The digitizer probe of claim 1 wherein said light emitter comprises at least one of an image projector, one or more lasers, or one or more light emitting diodes (LEDs) distinct from the LED.
7 . The digitizer probe of claim 1 wherein the light projected by the light emitter is in the form of one or more registration points, wherein the one or more registration points are projected on the bone at one or more pre-defined locations, respectively.
8 . The digitizer probe of claim 7 wherein a pre-defined location for a registration point is a location of a point defined with respect to pre-operative bone data.
9 . A digitizer probe, comprising:
a body;
a light emitter coupled to the body for projecting light on the bone;
a probe tip located at a distal end of the body for contacting the bone at the locations of the projected light; and
a tracking element coupled to at least one of the body or the light emitter for a tracking system to track a location of at least one of the digitizer or the light emitter; and
computing components operatively coupled to the light emitter for controlling operation of the light emitter.
10 . The digitizer probe of claim 9 wherein the computing components, in response to movement of at least one of the light emitter or the bone, control the light emitter to maintain the projected light at a pre-defined location.
11 . The digitizer probe of claim 9 further comprising a receiver for receiving control signals from computing components, wherein the control signals control operation of the light emitter.
12 . A system, comprising:
a digitizer probe comprising: a body, a light emitter coupled to the body for projecting light on the bone, a probe tip located at a distal end of the body for contacting the bone at the locations of the projected light, and a tracking element coupled to at least one of the body or the light emitter; and
a tracking system for tracking a location of at least one of the digitizer or the light emitter.
13 . The system of claim 12 further comprising computing components for generating control signals to control operation of the light emitter.
14 . The system of claim 13 wherein the computing components are housed in the digitizer probe.
15 . The system of claim 13 wherein the digitizer probe comprises a receiver for receiving the control signals from the computing components.
16 . The system of claim 13 wherein the computing components, in response to movement of at least one of the light emitter or the bone, control the light emitter to maintain the projected light at a pre-defined location.
17 . The system of claim 12 wherein said light emitter comprises at least one of an image projector, one or more lasers, or one or more light emitting diodes (LEDs).
18 . The system of claim 12 wherein the tracking system is an optical tracking system.
19 . The system of claim 12 wherein the light projected by the light emitter is in the form of one or more registration points, wherein the one or more registration points are projected on the bone at one or more pre-defined locations, respectively.