Sizing instrument and punch for use in a surgical procedure to implant a stemless humeral component
A stemless humeral component for replacing the humeral head of a patient's humerus includes a support flange having a number of cantilevered legs extending distally away from a bottom surface thereof. Instruments and methods for surgically installing the stemless humeral component are also disclosed.
1. A surgical instrument assembly for use during a surgical procedure to implant a stemless humeral component to replace the humeral head of a patient's humerus, comprising:
a surgical punch configured to punch holes in the patient's humerus to receive a number of legs of the stemless humeral component, the surgical punch comprising a number of tines,
a sizing instrument having a generally dome-shaped round body having a flattened upper surface and a planar opposite, lower surface, with a number of punch guide holes formed therein, and an elongated drill guide bore extending through a center of the sizing instrument from the upper surface to the lower surface, and
a trial head component, comprising:
(i) a generally hemispherically-shaped trial bearing surface, (ii) an underside surface opposite the trial bearing surface, and (iii) a center lug extending laterally away from the underside surface,
wherein each of the punch guide holes is positioned in a location that aligns with one of the tines of the surgical punch,
wherein each of the tines of the surgical punch is generally T-shaped when viewed in a cross-section extending orthogonal to a longitudinal axis of the tine, and
wherein the center lug is configured to be frictionally secured to the sizing instrument when the center lug is inserted into the drill guide bore.
2. The surgical instrument assembly of claim 1 , wherein each of the punch guide holes of the sizing instrument is generally T-shaped.
3. The surgical instrument assembly of claim 1 , wherein:
each of the punch guide holes extends from the upper surface to the lower surface, and
the sizing instrument further includes a number of bone-engaging spikes extending downwardly from its lower surface.
4. The surgical instrument assembly of claim 1 , further comprising a center drill bit configured to surgically drill a hole in the patient's humerus to receive an elongated sleeve of the stemless humeral component, wherein the center drill bit comprises:
a cutting head having a cutting tip with a plurality of helical cutting flutes extending therefrom, and
an annular collar positioned at an end of the cutting head opposite the cutting tip, the collar having an outer diameter that is larger than the diameter of the drill guide bore of the sizing instrument so as to function as a depth stop when the annular collar engages the flattened upper surface of the sizing instrument.
5. The surgical instrument assembly of claim 1 , wherein each of the tines of the surgical punch has a longitudinal axis, the longitudinal axes of the tines being parallel to each other.
6. The surgical instrument assembly of claim 1 , wherein:
the surgical punch further includes a connector configured to secure the surgical punch to an impaction handle, and
the sizing instrument further includes a connector configured to secure the sizing instrument to an alignment handle.
7. A surgical instrument assembly for use during a surgical procedure to implant a stemless humeral component to replace the humeral head of a patient's humerus, comprising:
a surgical punch configured to punch holes in the patient's humerus to receive a number of legs of the stemless humeral component, the surgical punch comprising a number of tines,
a sizing instrument having a generally round body with a number of punch guide holes formed therein and an elongated drill guide bore extending through a center of the sizing instrument, wherein each of the punch guide holes is positioned in a location that aligns with one of the tines of the surgical punch, and
a trial head component, comprising:
(i) a generally hemispherically-shaped trial bearing surface, (ii) an underside surface opposite the trial bearing surface, and (iii) a center lug extending laterally away from the underside surface,
wherein the center lug is configured to be frictionally secured to the sizing instrument when the center lug is inserted into the elongated drill guide bore of the sizing instrument.
8. The surgical instrument assembly of claim 7 , wherein each of the tines of the surgical punch is generally T-shaped when viewed in a cross-section extending orthogonal to a longitudinal axis of the tine.
9. The surgical instrument assembly of claim 7 , wherein each of the tines of the surgical punch has a longitudinal axis, the longitudinal axes of the tines being parallel to each other.
10. The surgical instrument assembly of claim 7 , wherein each of the punch guide holes extends from the upper surface to the lower surface, and the sizing instrument further includes a number of bone-engaging spikes extending downwardly from its lower surface.
11. The surgical instrument assembly of claim 7 , further comprising a center drill bit configured to surgically drill a hole in the patient's humerus to receive an elongated sleeve of the stemless humeral component, wherein the center drill bit comprises:
a cutting head having a cutting tip with a plurality of helical cutting flutes extending therefrom, and
an annular collar positioned at an end of the cutting head opposite the cutting tip, the collar having an outer diameter that is larger than the diameter of the drill guide bore of the sizing instrument so as to function as a depth stop when the annular collar engages a flattened upper surface of the sizing instrument.
12. The surgical instrument assembly of claim 7 , wherein:
the surgical punch further includes a connector configured to secure the surgical punch to an impaction handle, and
the sizing instrument further includes a connector configured to secure the sizing instrument to an alignment handle.