DISPOSITIF DE FIXATION PAR VIS, KIT DE FIXATION ET PROCÉDÉ DE FIXATION
20200205869 · 2020-07-02
Inventors
- Jean-Marie Berger (Eden Prairie, MN, US)
- Pierric DERANSART (SAINT MARTIN D'URIAGE, FR)
- Christopher R. Chuinard (Traverse City, MI, US)
- Thomas Bradley Edwards (Houston, TX, US)
- Grant E. Garrigues (Hinsdale, IL, US)
- Armodios M. Hatzidakis (Denver, CO, US)
- Gregory P. Nicholson (Western Spring, IL, US)
- Felix Buddy SAVOIE (New Orleans, LA, US)
Cpc classification
A61F2/4601
HUMAN NECESSITIES
A61B17/68
HUMAN NECESSITIES
A61F2002/4627
HUMAN NECESSITIES
A61F2/4644
HUMAN NECESSITIES
A61F2002/2835
HUMAN NECESSITIES
A61F2/30749
HUMAN NECESSITIES
A61B17/8866
HUMAN NECESSITIES
A61B2017/567
HUMAN NECESSITIES
A61B17/8605
HUMAN NECESSITIES
A61B2034/105
HUMAN NECESSITIES
A61B17/863
HUMAN NECESSITIES
A61B2017/681
HUMAN NECESSITIES
A61B34/10
HUMAN NECESSITIES
International classification
A61B17/86
HUMAN NECESSITIES
A61B34/10
HUMAN NECESSITIES
Abstract
Disclosed is a bone screw fixation device including two screws and only two. The bone screw includes: a first screw provided at its proximal end with a head for compressing the bone by an end-abutment; and a second screw provided at its distal end with a bone threading having a first helix pitch and at its proximal end with a bone threading having a helix with a pitch smaller than the first helix pitch.
Claims
1. A bone screw fixation device comprising two screws and only two, comprising: A first screw provided at a proximal end with a head for compressing the bone by an end-abutment; A second screw provided at a distal end with a bone threading having a first helix pitch and at a proximal end with a bone threading having a helix with a pitch smaller than the first helix pitch.
2. The fixation device according to claim 1, wherein the head screw comprises: a distal threaded portion threaded according to a first pitch, a proximal threaded portion threaded according to a second pitch smaller than the first pitch.
3. The fixation device according to claim 1, wherein at least one of the screws comprises a conical proximal threaded portion.
4. The fixation device according to claim 1, wherein the two screws comprise a conical proximal threaded portion.
5. The fixation device according to claim 2, wherein the conicity of the proximal portion of the two screws has a half angle of about 10 degrees.
6. The fixation device according to claim 1, wherein the two screws have a smooth middle portion separating the proximal portion from the distal portion.
7. The fixation device according to claim 1, wherein the distal threaded portion of the two screws forms between 46 and 58 percent of the total length.
8. The fixation device according to claim 1, wherein the proximal threaded portion of the two screws has a length of 5 to 10 mm.
9. The fixation device according to claim 1, wherein at least one of the screws comprises a cannula, that is to say that the screw is provided with a longitudinal through hole.
10. The fixation device according to claim 1, wherein the proximal portion of at least one screw includes a smooth portion.
11. The fixation device according to claim 1, wherein the distal threaded portion of at least one screw includes a multiple threading.
12. The fixation device according to claim 1, wherein the total length difference between the two screws is comprised between 0.5 and 5.5 millimeters.
13. A fixation kit formed of the device according to claim 1, wherein said screws have been previously sterilized.
14. The fixation kit formed of the device according to claim 1, wherein the screws are previously selected and/or manufactured based on a preoperative planning.
15. A bone screw provided at a proximal end with a head for compressing the bone by an end-abutment, at a distal end with a bone threading according to a first pitch, wherein the bone screw comprises under the head a proximal smooth portion and the bone screw comprises under the proximal smooth portion a proximal threaded portion threaded according to a second pitch smaller than the first pitch.
16. The screw according to claim 15 wherein the proximal threaded portion is conical.
17. The screw according to claim 15, wherein the distal threaded portion includes a multiple thread.
18. The screw according to claim 15, wherein the proximal smooth portion has a diameter less than the largest diameter of the proximal threaded portion.
19. A method for fixing a bone graft on a shoulder bone, the method using two screws and only two where each screw has a different design according to claim 1.
20. The fixation method according to claim 19, the method comprising, before the selection and the use of the screws, a preoperative planning including the following operations: collecting a preoperative imaging of the shoulder of the patient by radiography and/or ultrasound and/or CT image and/or MRI of the shoulder, modelling the joint, identifying at least one anatomical structure, preoperative planning of at least one of the following operations: sizing the graft, positioning the graft on the host bone and positioning the screws.
Description
BRIEF DESCRIPTION OF THE DRAWINGS
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DESCRIPTION OF A PREFERRED EMBODIMENT
[0088] An embodiment of the device of the invention consists of the two illustrated screws.
[0089] The first screw 100 of
[0090] The rod 120 is divided into several portions: [0091] A smooth proximal portion 121 disposed under the head 110, [0092] A conical proximal threaded portion 122 having a given pitch (single thread and disposed under the smooth proximal portion 121), [0093] A smooth middle portion 123, [0094] A distal threaded portion 124 having a pitch larger (double thread) than the pitch of the proximal portion 122.
[0095] The second screw 200 of
[0099] As illustrated in the drawing of
[0102] In addition, the length of the screws 100 and 200 is defined so that the distal threaded portions 124 and 230 of the screws pass through the cortical wall, of the host bone O, opposite the bone graft G.
[0103] Prior to the surgical intervention, during the phase of collecting data 310, the preoperative imaging of the patient to be operated is acquired in various ways. For example, radiographies and/or ultrasounds and/or CT images and/or MRI of the shoulder are used.
[0104] Based on the preoperative imaging of the patient to be operated, during a modeling and identification phase 320, at least one segmentation and treatment algorithm allows modeling the joint of the patient, identifying at least one anatomical structure. This phase may include the measurement of at least one specific feature of the joint of the patient.
[0105] During the planning phase 330, the surgeon performs a preoperative planning by means of a computer interface allowing to view the modeling of the joint and to perform at least one of the following operations: sizing the graft, positioning the graft on the host bone and positioning and selecting the screws constituting the fixation device according to the invention.
[0106] This method may further include the constitution, manufacture and provision for the surgical intervention of a patient-specific fixation kit produced based on the previously collected data and, particularly, on the planning output data.
[0107] It is understood that the device which has just been described and represented above, has been for the purpose of disclosure rather than limitation. Of course, various arrangements, modifications and improvements can be made to the example above, without departing from the scope of the invention.