METHOD FOR FORMING AND SETTING DENTURE
20200085547 ยท 2020-03-19
Inventors
Cpc classification
A61C13/0004
HUMAN NECESSITIES
A61C13/1016
HUMAN NECESSITIES
A61C13/0024
HUMAN NECESSITIES
A61C9/0053
HUMAN NECESSITIES
International classification
Abstract
A method for forming and setting a denture has the following steps: using a stereoscopic scanner to capture a patient's maxillary, mandibular gum shapes to generate stereoscopic maxillary, mandibular gum data and an occlusion record of a patient's maxilla and mandible; using a computer tomography scanner to scan patient's maxilla, mandible shapes to generate tomographic maxilla, mandible data; using a 3D processing device to consolidate the stereoscopic maxillary, mandibular gum data, occlusion record of a patient's maxilla and mandible, tomographic maxilla, mandible data to generate 3D full-tooth data; planning detailed positions and sizes of a upper (lower) prosthesis adapted to set on the patient maxilla (mandible) side, a plurality of upper (lower) fixing elements for fixing the upper (lower) prosthesis through the 3D full-tooth data; and making the upper, lower prostheses, and using each upper (lower) fixing element to implant the upper (lower) prosthesis into the patient's maxilla (mandible).
Claims
1. A method for forming and setting a denture, having the following steps: (a) using at least one stereoscopic scanner to capture a patient's maxillary gum shape and mandibular gum shape to generate stereoscopic maxillary gum data, stereoscopic mandibular gum data and an occlusion record of a patient's maxilla and mandible; (b) using at least one computer tomography scanner to scan a patient's maxilla shape and mandible shape to generate tomographic maxilla data and tomographic mandible data; (c) using at least one 3D processing device to consolidate said stereoscopic maxillary gum data, stereoscopic mandibular gum data, occlusion record of a patient's maxilla and mandible, tomographic maxilla data and tomographic mandible data to generate 3D full-tooth data; (d) planning detailed positions and sizes of at least one upper prosthesis adapted to set on said patient maxilla side, a plurality of upper fixing elements for fixing said upper prosthesis, at least one lower prosthesis adapted to set on said patient's mandible side and a plurality of lower fixing elements for fixing said lower prosthesis through said 3D full-tooth data; and (e) making said upper prosthesis and lower prosthesis, and using each said upper fixing element to implant said upper prosthesis into said patient's maxilla, and using each said lower fixing element to implant said lower prosthesis into said patient's mandible.
2. The method according to claim 1, wherein when step (a) using at least one stereoscopic scanner is processed, if said patient's maxilla or mandible has no tooth, processing step (a1): making said patient wear a proper traditional denture, and then capturing and generating stereoscopic upper denture data, stereoscopic lower denture data and occlusion data of said dentures with said stereoscopic scanner.
3. The method according to claim 2, wherein step (a0): making said traditional denture must first be processed if said patient has no said traditional denture before step (a) using at least one stereoscopic scanner is processed.
4. The method according to claim 2, wherein when step (b) using at least one computer tomography scanner is processed, said patent having no tooth still needs to process step (b1): allowing said patient to wear said traditional denture and scanning said denture with said computer tomography scanner to generate tomographic upper denture data and tomographic lower denture data.
5. The method according to claim 4, wherein said 3D full-tooth data in step (c) using at least one 3D processing device also consolidates said stereoscopic upper denture data, stereoscopic lower denture data, said occlusion data of dentures, tomographic upper denture data and tomographic lower denture data.
6. The method according to claim 5, wherein said 3D processing device is allowed to generate 3D digital virtual prosthesis data according to said 3D full-tooth data to match with said patient having no tooth after step (c) using at least one 3D processing device.
7. The method according to claim 1, said computer tomography scanner in step (b) using at least one computer tomography scanner is a cone beam computer tomography scanner.
8. The method according to claim 1, wherein each said upper fixing element and each said lower fixing element in step (d) planning detailed positions and sizes respectively comprise bone fixation sleeve, fixation nail, spiral or cement.
9. The method according to claim 1, where said upper prosthesis in step (d) planning detailed positions and sizes is formed with a plurality of upper fixation holes allowing each said upper fixing element to be passed through, and said lower prosthesis in step (d) planning detailed positions and sizes is formed with a plurality of lower fixation holes allowing each said lower fixing element to be passed through.
10. The method according to claim 9, wherein each said upper fixation hole and each said lower fixation hole are respectively configured with at least one filler adapted to seal each said upper fixing element and each said lower fixing element.
Description
BRIEF DESCRIPTION OF THE DRAWINGS
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DETAILED DESCRIPTION OF THE PREFERRED EMBODIMENTS
[0014] Referring to
[0015] Step (a) stereoscopic scanning: referring to
[0016] Step (b) tomographic scamming referring to
[0017] Step (c) consolidation processing: referring to
[0018] Step (d) planning referring to
[0019] Final step (e) implantation: referring to
[0020] Therefore, the method for forming and setting a denture of the present invention has the following advantages over the prior arts: allowing the present invention to achieve the size and setting position being capable of being matched with a patient so as to facilitate installment use.