Method and apparatus for a radiolucent and MRI compatible cranial stabilization pin
A substantially radiolucent cranial stabilization pin is adapted for use with a fixture for immobilizing a patient's head during a medical procedure. The pin includes a tip and a body, which are secured together to form the pin. The tip and body are constructed from non-ferrous, non-magnetic materials that are biocompatible. The tip and body are safe for use with, and compatible with, imaging techniques including MR imaging and CT imaging. In some examples the tip is a titanium insert and the body is molded within and around at least a portion of the tip. In some versions, the tip includes a hollow portion and one or more openings providing access to the hollow portion. The molded body flows into and around portions of the tip creating a secure pin suitable to withstand torque and axial forces observed in use.
1. A skull pin for use with a stabilizing device, wherein the pin comprises: a. a tip, wherein the tip is configured to contact a patient's skull, wherein the tip comprises a conical member, wherein the conical member comprises: i. a point at a distal end of the tip, wherein the point is configured to contact the patient's skull, ii. a substantially thin sidewall, wherein the substantially thin sidewall comprises an exterior surface and an interior surface, wherein the interior surface defines an inner cavity of the tip, iii. one or more protrusions formed in the interior surface of the sidewall, wherein the one or more protrusions comprise a threaded configuration; and b. a body, wherein the body comprises a proximal end and a distal end, wherein the proximal end of the body is dimensioned to fit in an opening of a skull clamp arm, wherein the distal end of the body is secured to the tip, wherein the distal end of the body extends within the inner cavity of the tip and contacts the one or more protrusions, wherein the body is a molded piece, wherein the tip is an insert piece and bonded to the body during molding.
2. The pin of claim 1 , wherein the one or more protrusions comprise one or more ridges, wherein the one or more ridges define one or more gaps between the ridges, wherein the distal end of the body extends within the inner cavity of the tip and fills the one or more gaps defined by the ridges.
3. The device of claim 1 , wherein the conical portion of the tip is substantially hollow.
4. The pin of claim 1 , wherein the device is substantially radiolucent.
5. The pin of claim 1 , wherein the tip is comprised of titanium and the body is comprised of plastic.
6. A skull pin for use with a stabilizing device, wherein the pin comprises: a. a tip, wherein the tip is configured to contact a patient's skull, wherein the tip comprises: i. a conical portion, ii. a point at a distal end of the conical potion, wherein the point is configured to contact the patient's skull, iii. a substantially thin sidewall, wherein the substantially thin sidewall comprises an exterior surface and an interior surface, wherein the interior surface defines an inner cavity of the tip, iii. one or more protrusions formed in the sidewall of the tip, wherein the one or more protrusions comprise a threaded configuration; and b. a body, wherein the body comprises a proximal end and a distal end, wherein the proximal end of the body is configured to be selectively retained within a skull clamp, wherein the distal end of the body is secured to the tip, wherein the distal end of the body extends within the inner cavity of the tip and contacts the one or more protrusions, wherein the body is a molded piece, wherein the tip is an insert piece and bonded to the body during molding.
7. A device for use with a head stabilizing device, wherein the device comprises a tip configured to contact a patient's skull, wherein the tip comprises: a. a point at a distal end, wherein the point is configured to contact the patient's skull; b. a sidewall, wherein the sidewall comprises an exterior surface and an interior surface, wherein the interior surface defines an inner cavity; and c. one or more protrusions formed in the sidewall, wherein the one or more protrusions comprise a threaded configuration configured to engage a body that is selectively securable to the head stabilizing device, wherein the body is a molded piece, wherein the tip is an insert piece and bonded to the body during molding.