Bone stabilization device
11147604 · 2021-10-19
Assignee
Inventors
Cpc classification
A61B17/7291
HUMAN NECESSITIES
A61B17/8645
HUMAN NECESSITIES
International classification
Abstract
A device and method for stabilizing a broken bone while it heals is disclosed. The device preferably has a (a) first (or proximal) section with a driving head, threads and a first diameter, and (b) second (or distal) section that is threaded and has a second diameter. The first section is preferably greater in diameter than the second section so that greater torque can be applied to tighten the device. The device may include one or more self-tapping structures to lessen the torque required to screw it into a bone.
Claims
1. An orthopedic stabilization device having a total length, x, along a longitudinal axis and comprising: an external thread which extends along the entire total length, x, of the device; a first section having: a length, l.sub.1, along the longitudinal axis, wherein l.sub.1 forms 25-45% of the total length, x, and a major diameter, d.sub.1, and a minor diameter, d.sub.2, a first free end of the device, the first free end including a head configured to interface with a driver; a second end; and a transition portion that extends from the second end toward the first end of the first section, the transition portion including a cutting structure and a taper, wherein d.sub.1 is substantially uniform between the first end and the transition portion of the first section; and a second section extending from the second end of the first section to a second free end of the device, the second section having: a length, l.sub.2, along the longitudinal axis, wherein l.sub.2 forms 55-75% of the total length, x, and a major diameter, d.sub.3 extending from the second end of the first section, and a minor diameter, d.sub.4, wherein d.sub.3 is substantially uniform and the largest outer diameter of the second section, and wherein d.sub.1 is 7-15% greater than d.sub.3, and d.sub.2 is greater than d.sub.4.
2. The device of claim 1, wherein the device is comprised of one or more of nitinol, stainless steel, or titanium steel.
3. The device of claim 1, wherein the length, x, is between 3.5 cm and 8.5 cm.
4. The device of claim 1, wherein d.sub.1 is between 3.0 mm and 4.5 mm.
5. The device of claim 1, wherein d.sub.3 is between 3.0 mm and 4.5 mm.
6. The device of claim 1, wherein the second section has an end that includes a second cutting surface.
7. The device of claim 1, wherein the device includes a cannulation.
8. The device of claim 1, wherein d.sub.1 is between 0.33 mm and 0.7 mm greater than the d.sub.3.
9. The device of claim 1, wherein the external thread comprises one or more threads with a first pitch in the first section, and one or more threads with a second pitch in the second section, wherein the first pitch is the same as the second pitch.
10. The device of claim 1, wherein the external thread is a single thread along the length of the device.
11. The device of claim 1, wherein the first section comprises about 40% of the length, x, of the device.
12. The device of claim 1, wherein d.sub.1 is at least 5% of the length, x.
13. The device of claim 1, wherein d.sub.1 is between 4% and 7% of the length, x.
14. The device of claim 1, wherein d.sub.1 is between 4% and 10% of the length, x.
15. The device of claim 1, wherein the external thread has a pitch of about 1 mm/revolution.
16. The device of claim 1, wherein the head has a minor diameter that is the same as d.sub.2.
17. The device of claim 1, wherein a free end of the second section comprises a plurality of prongs that are offset from the longitudinal axis of the device.
18. An intramedullary fracture fixation device having a length, x, along a longitudinal axis and comprising: a thread extending along the entire length of the device, the thread having a constant pitch; a first section having a first length along the longitudinal axis, the first section comprising: a first, free end including a head configured to interface with a driver, a second end, a first portion having a first substantially uniform outer diameter extending from the first, free end of the first section; and a second portion extending from the first portion to the second end of the first section, wherein the second portion comprises a taper and a first cutting flute that includes one or more interruptions in the thread to form one or more serration; a second section comprising: a first end extending from the second end of the first section, a second, free end, wherein a tip at the second, free end of the second section comprises a second cutting flute, a second length along the longitudinal axis, and a second substantially uniform outer diameter that is smaller than the first substantially uniform outer diameter, and a cannulation extending through the length of the device, wherein an outer diameter of the taper of the second portion decreases from the first outer diameter at a first end of the taper to the second outer diameter at a second end of the taper, wherein the first end of the taper is further away from the second section than the second end of the taper.
Description
BRIEF DESCRIPTION OF THE DRAWINGS
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DETAILED DESCRIPTION OF PREFERRED EMBODIMENTS
(12) Turning now to the figures, where the purpose is to describe preferred embodiments of the invention and not to limit same,
(13) First section 12 has first threads 10A which preferably have a height of about 0.5 to 1 mm as measured from outer surface 17, and a pitch of about 1 mm per revolution. A driving surface, or head, 18 is shown as being the same diameter of first section 12, but head 18 may have a different diameter or be of a different shape, such as triangular. Head 18 may accept any suitable driver configuration, such as a Torx drive, slotted, Pozidriv, Robertson, tri-wing, Torq-Set, SpannerHead, Triple Square, and hex head. A cutting structure 20 is shown in
(14) Second section 14 has first threads 14A which preferably have a height of about 0.5-1 mm as measured from outer surface 17, and a pitch of about 1 mm/revolution. A cutting structure 28 is shown in
(15) Threads 10A on the first section 10 preferably have the same pitch as the thread 14A, and extend outward from surface 17 of device 10 by the same amount as threads 14A, although any suitable thread configuration is acceptable, including threads with differential pitches threads on either or both of sections 12 and 14.
(16) Device 10 may be cannulated or non-cannulated. As shown, device 10 has a cannula 32 extending therethrough. A non-cannulated device may be have a smaller diameter than a cannulated device.
(17) The diameter of the first section is preferably about 4%, or 5%, or 4% to 7%, or 4% to 10%, of the length of device 10.
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(22) If a non-cannulated device is used, the Kwire may be used to form a pilot hole, and device 10 would be driven into the pilot hole.
(23) In another aspect of the invention, the device has a single diameter with threads of the same pitch and height. This device may have a head similar to the one described above, but that is about 0.5 mm wider than the rest of the device, or about 7%-15% wider, in order to generate sufficient torque. Such a device may also have multiple self-tapping, or cutting structures, in order to reduce the amount of torque required to screw the device into an opening in a bone. For example, such a device may have one cutting structure at its distal tip, and one or more other cutting structures along its length, and/or a cutting structure juxtaposed the head so the head of the device does not extend beyond the bone.
(24) Specific exemplary embodiments of the invention are described below:
(25) 1. A device for repairing a bone, the device for being received in the bone and comprising:
(26) (a) a shaft having a length and an outer surface,
(27) (b) a first end and a second end;
(28) (c) threads on the outer surface, wherein the threads comprise 85% or more of the shaft length; and
(29) (d) a driving surface at the first end; wherein the first section has a larger diameter than the second section of the device.
2. The device of example 1 wherein the device is comprised of one or more of nitinol, stainless steel and titanium steel.
3. The device of example 1 or 2, wherein the first section has a self-tapping configuration and the second section has a self-tapping portion.
4. The device of any of examples 1-3 wherein the first end has a diameter at least 7% wider than the diameter of the second end.
5. The device of any of examples 1-4 wherein the first end has a diameter that is 7%-15% wider than the diameter of the second end.
6. The device of any of examples 1-5 that has that has a length of between 3.5 cm and 8.5 cm, or 3.5 to 7.5 cm, or 4.0 to 8.0 cm, or about 7 cm.
7. The device of any of examples 1-6 wherein the first diameter is between 3.5 mm and 5.0 mm.
8. The device of any of examples 1-7 wherein the second diameter is between 3.0 mm and 4.5 mm.
9. The device of any of examples 1-8 that further includes a cutting surface at the second end.
10. The device of any of examples 1-9 that further includes a cutting surface between the first end and the second end.
11. The device of any of examples 1-10 that includes a cannula.
12. The device of any of examples 1-11 wherein the first end is between 0.3 mm and 0.7 mm greater in diameter than the diameter of the second end.
13. The device of any of examples 1-12 wherein the first end is between 7% and 15% greater in diameter than the diameter of the second end.
14. The device of any of examples 1-13 wherein the threads on the first end have the same pitch as a pitch of the threads on the second end.
15. The device of any of examples 1-13 wherein the threads on the first end have a different pitch than a pitch of the threads on the second end.
16. The device of any of examples 1-15 wherein the threads are continuous along the length of the device.
17. The device of any of examples 1-16 wherein the threads on the first section comprise up to 40% of the length of the device.
18. The device of any of examples 1-17 wherein the driving head is selected from the group consisting of designs that can accept one of the following drivers: a flat screwdriver, a Phillips screw driver, a hex head, and an Allen wrench.
19. The device of any of examples 1-8 wherein the driving head has the same diameter as the first end.
20. The device of any of examples 1-19 wherein the threads have the same height.
21. The device of any of examples 1-20 wherein the threads have the same height and pitch.
22. The device of any of examples 1-21 that has a length and the diameter of the first section is at least 4%, or at least 5%, of the length.
23. The device of any of examples 1-21 that has a length and the diameter of the first section is between 4% and 7% of the length.
24. The device of any of examples 1-21 that has a length and the diameter of the first section is between 4% and 10% of the length.
(30) Having thus described some embodiments of the invention, other variations and embodiments that do not depart from the spirit of the invention will become apparent to those skilled in the art. The scope of the present invention is thus not limited to any particular embodiment, but is instead set forth in the appended claims and the legal equivalents thereof. Unless expressly stated in the written description or claims, the steps of any method recited in the claims may be performed in any order capable of yielding the desired result.