CN209332350U - The 3D printing biteplate for treating temporomandibular joint disorcler TMP - Google Patents

The 3D printing biteplate for treating temporomandibular joint disorcler TMP Download PDF

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Publication number
CN209332350U
CN209332350U CN201822174966.3U CN201822174966U CN209332350U CN 209332350 U CN209332350 U CN 209332350U CN 201822174966 U CN201822174966 U CN 201822174966U CN 209332350 U CN209332350 U CN 209332350U
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biteplate
tooth
printing
temporomandibular joint
occlusion
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姜华
汪林
李鸿波
白阳
黄东宗
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Chinese PLA General Hospital
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Chinese PLA General Hospital
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Abstract

A kind of 3D printing biteplate for treating temporomandibular joint disorcler TMP, it is single for biteplate design in disorders of temporomandibular joint treatment, program is complicated in therapeutic process, not accurate problem is made to optimize, it includes the dental articulation set coincideing with upper denture whole tooth, and whole tooth putting holes are arranged in occlusion set;The inside bottom surface shape of dental articulation set is consistent with upper denture tooth bottom surface, and dental articulation set outside bottom surface is effectively engaged with mandibular dentition;Each dental articulation set connects with each other.The preparation method of biteplate is by canalis spinalis beam CT to cranium jaw Surface scan, and denture data when by spatial digitizer to maxillary dentition, mandibular dentition and upper lower jaw occlusion of dentition, data are all imported afterwards in Super Virtual software and rebuilds upper lower jaw and denture, upper tooth column data is moved up afterwards, upper tooth column data move up and original is imported in CAD afterwards, carry out biteplate design and is printed.

Description

The 3D printing biteplate for treating temporomandibular joint disorcler TMP
Technical field
The utility model belongs to oral cavity field the field of medical instrument technology, in particular for temporomandibular joint disorcler TMP Therapeutic device, and in particular to be a kind of 3D printing biteplate and preparation method thereof for treating temporomandibular joint disorcler TMP.
Background technique
Temporomandibular joint disorcler TMP disease (temporomandibular disorders, TMD) is that department of stomatology clinic is common Disease, main clinical manifestation have the sour swollen or pain of local joint, clicking of joint and mandibular movement obstacle.Painful area can be in joint Area or periarticular;And it can be with the tenderness of weight not etc.;Joint acid swollen or pain especially to chew and dehisce when it is obvious, snap exists Dehisce activity when appearance, it can be clear and melodious single sound or the cipher sound of fragmentation that the different phase in mandibular movement, which can occur, for sound, Common movement hinders to be limitation of mouth opening, Mandibular Deviation when dehiscing, lower jaw left and right sides limitation of movement etc..In addition, can also be with temporo The symptoms such as portion's pain, dizziness, tinnitus.
In order to mitigate temporomandibular joint disorcler TMP disease remporomandibular joint tensity, conservative therapy mode usually requires Borrowing the foreign object long period makes lower tooth keep certain distance, reaches and reduces joint strain degree, and then reaches treatment temporomandibular joint The problem of Joint disorder disease.The relatively effective mode of conservative therapy is to wear Occlusal pad (biteplate) treatment at present.Existing tooth The model for closing pad is according to the broad spectrum activity design carried out the case where most of patient, and occlusion design is single, and doctor is in concrete operations When, there are treatment procedure complexity, production is not accurate for occlusion treatment, it needs to usually require repeatedly tooth to be adjusted to close according to the case where patient, Patient's further consultation often the problems such as.And need that biteplate is fixed on upper tooth using link in operating process, comfort level is poor;And And because occlusion design is single, cause biteplate that cannot be fully solved various temporomandibular joint disorcler TMP clinical problems.
With the development of digitizing technique and 3D printing technique, the neck of digitizing technique and 3D printing technique is applied in clinic Domain is more and more, by application digitizing technique and 3D printing technique can with it is more accurate quickly according to patient itself the case where The model or prosthese of individuation are prepared, because having individuation, the identical property of the model and prosthese prepared is high, outcome It is good, without adjusting repeatedly.If digitizing technique and 3D printing technique can be reasonably applied to temporomandibular joint disorcler TMP disease Field, it will greatly improve the therapeutic efficiency of doctor, reduce patient suffering.
The utility model is for single, the treatment for biteplate design in temporomandibular joint disorcler TMP treatment in the prior art Program is complicated in the process, makes not accurate problem, provide a kind of 3D printing biteplate for treating temporomandibular joint disorcler TMP and Preparation method.
Utility model content
It is single in order to overcome the therapeutic device of temporomandibular joint disorcler TMP disease in the prior art to design, cause treatment procedure multiple Miscellaneous, instrument precision difference leads to problems such as outcome poor, and the utility model is effective by digitizing technique and 3D printing technique In conjunction with providing a kind of 3D printing biteplate and preparation method thereof for treating temporomandibular joint disorcler TMP.
A kind of preparation method of 3D printing biteplate that treating temporomandibular joint disorcler TMP, specifically:
(1) data acquisition and processing
1, the cranium jaw face of conical beam CT shooting patient is utilized;
2, the number of denture when scanning maxillary dentition, mandibular dentition and upper lower jaw occlusion of dentition respectively using spatial digitizer According to;Or scan the data of upper gnathode, mandibular model and articulation registration;
3, patient's conical beam CT data are imported in 3D printer software kit, reconstructs the upper mandibular portions of patient;Root Patient's head position is ajusted according to patient's orbitomeatal plane;
4,3 d scan data is also introduced into 3D printer software kit after, upper and lower dentition is registrated to the patient of reconstruction Upper mandibular dentition part;
5, the upper tooth column scan curved surface data duplication after registration is moved up at a distance from Occlusal pad consistency of thickness;
6, the upper tooth column scan data after exporting the upper tooth column scan data after being registrated together, moving up.
(2) guide plate design and production
1. by derived upper tooth column scan data, move up after upper tooth column scan data, import CAD software carry out Occlusal pad Design;
2. designed Occlusal pad is printed with 3D printer, Occlusal pad production is completed.
Further, 3D printer software kit is Super Virtual software or Proplan software;
Further, after the duplication of upper denture moves up, according to mandibular dentition the case where Fuzzy Processing is done to denture bottom surface on lower section, With meet facing and mandibular dentition effectively contact and space when mandibular dentition or so is movable.
Alternatively, the scan data of the image data of mandibular dentition, upper denture and the upper denture after moving up is imported into CAD, according to The case where mandibular dentition, does Fuzzy Processing to denture bottom surface on lower section, with meet facing and mandibular dentition effectively contact and a mandibular dentition left side Space when right activity.
Further, the Fuzzy Processing being passivated is done to denture bottom surface on lower section.
Further, the upper tooth column data to upper denture and after moving up carries out combination of entities, forms the occlusion of Intermediate Gray sets of holes Hardened structure;The sets of holes inner bottom surface of biteplate and upper denture are completely the same, and the outside bottom surface of biteplate is effectively to sting with mandibular dentition The bottom surface of conjunction.
Further, denture when scanning maxillary dentition, mandibular dentition and upper lower jaw occlusion of dentition respectively using spatial digitizer Range are as follows: the scanning range of maxillary dentition be upper denture whole tooth whole facing and palate part;The scanning of mandibular dentition Range is whole facings of mandibular dentition whole tooth;Scanning range is facing on the outside of whole teeth when upper and lower dentition is engaged.
Further, the side surface upper part in the interior outside of biteplate is all coincide to denture top, and such degree of agreement can guarantee Effective socket.
Further, it faces upward on the upside of the outside of biteplate and extends 2-5mm on jaw;Face upward extension 2- in jaw inside on the upside of inside 8mm.Such setting may further ensure that the stability after biteplate fitting.
Further, the little particle for increasing frictional force is set inside biteplate, and such setting can further increase fitting knot The maintenance and stability of structure, prevent from falling off.
Further, conical beam CT application DICOM3.0 format, thickness are set as 1.25mm;Coverage be from margo supraorbitalis to Lower jaw lower edge;
Further, spatial digitizer Smartoptics, 3shape or first face
Further, the scanning accuracy of spatial digitizer is not less than 15um;
Further, the scan data storage format of spatial digitizer is STL;Such format is conducive to subsequent and each software Matching carries out image real time transfer.
Further, the upper tooth column scan data duplication after registration is moved up into 2-15mm, such size that moves up can satisfy respectively Kind temporomandibular joint disorcler TMP disease;
Further, the material of 3D printing is biocompatible materials.
Further, the precision of 3D printing is not less than 50um;
Further, the material of 3D printing is transparent or semitransparent biocompatible materials, and such setting can increase system At biteplate aesthetic measure.
The invention also discloses a kind of biteplates of the 3D printing of above method preparation comprising whole with upper denture The identical dental articulation set of tooth, which is characterized in that whole tooth putting holes are set in occlusion set;The inside bottom of dental articulation set Face shape is consistent with upper denture tooth bottom surface, and dental articulation set outside bottom surface is effectively engaged with mandibular dentition;Each dental articulation covers phase Mutually perforation connection.
Further, dental articulation set includes a pair of of first molar occlusion set;A pair of of second molar occlusion set;A pair of of central incisor Occlusion set;A pair of of lateral incisor occlusion set;A pair of of canine tooth occlusion set;A pair of of frist premolar occlusion set;A pair of second premolar teeth is stung Trap;Each occlusion set connects with each other.
Further, dental articulation set further includes a pair of of third molar occlusion set;Wherein third molar occlusion set and the second mill Tooth occlusion set connects with each other.
Further, the outside bottom surface of dental articulation set is the bottom surface of passivation, and occlusion set outside bottom surface is made to can satisfy lower tooth Effective occlusion when moving left and right of column.
Further, the thickness range of dental articulation set is 1.5-10mm, and such rear end can satisfy most remporomandibular joints Dysfunction cases.
Further, the bottom thickness of dental articulation set is 2-5mm;Side and/or connecting plate with a thickness of 1.5-5mm;This Kind of setting can guarantee it is maxillomandibular efficiently separate, and the material loss of side can be reduced.
Further, connection plate inside is in denture base portion to the 2-5mm that coincide inside the upper jaw;Outer side connecting plate is on denture base portion Upper jaw top coincide 2-5mm.Such setting can guarantee stability when fitting.
Further, the side surface upper part in the interior outside of biteplate is all coincide to denture top, and such degree of agreement can guarantee Effective socket.
Further, the side surface upper part in the outside of biteplate extends 2-5mm on the upper jaw;The side surface upper part of inside is into the upper jaw Side or upside extend 2-5mm.Such setting may further ensure that the stability after biteplate fitting.
Further, increase the little particle of frictional force on the inside of biteplate close to tooth or the setting of upper jaw skin surface.Pass through setting Little particle effectively increases frictional force, further increases the stability of biteplate after fitting.
Further, little particle is pasted on biteplate inner surface using the spraying of particle spray coating rifle, and such mode is more succinct It is convenient.
Further, the material of biteplate is made of biocompatible materials.
Further, the material precision of biteplate is not less than 50um;
Further, biteplate is made of transparent or semitransparent biocompatible materials, and such setting, which can increase, to be made Biteplate aesthetic measure.
Above-mentioned instrument using when only need for biteplate set to be connected in sufferer in denture because what is fitted like a glove sets Meter, fitting is highly stable, and because being further provided with fine texture, can further increase the stability of fitting.
Compared with the biteplate instrument of the prior art, the technical solution of the utility model biteplate have individuality, and because It is digitized scanning and processing, property of coincideing is high, and it is with strong points, it is debugged repeatedly without doctor, it is easy to use.
Detailed description of the invention
Fig. 1 is the utility model biteplate forward sight overall structure diagram;
Fig. 2 is the utility model biteplate forward sight overall structure diagram;
Fig. 3 is view view overall structure diagram on the utility model biteplate;
Fig. 4 is side view overall structure diagram under the utility model biteplate;
Fig. 5 is the utility model biteplate longitudinal profile structure schematic;
In figure, 1, dental articulation set;11, first molar occlusion set;12, second molar occlusion set;13, third molar is engaged Set;14, central incisor occlusion set;15, lateral incisor occlusion set;16, canine tooth occlusion set;17, frist premolar occlusion set;18, second Premolar teeth occlusion set;311, inside bottom surface;312, outside bottom surface;32, the side surface upper part in outside;33, the side surface upper part of inside;4, Putting hole.
Specific embodiment
Attached drawing is only a kind of structural schematic diagram, and those skilled in the art can be very good to be met in conjunction with attached drawing and clinical practice The structure chart that clinic needs.
A kind of preparation method for the 3D printing biteplate for treating temporomandibular joint disorcler TMP of embodiment 1
A kind of preparation method of 3D printing biteplate that treating temporomandibular joint disorcler TMP, specifically:
(1) data acquisition and processing
1, the cranium jaw face of conical beam CT shooting patient is utilized;Conical beam CT application DICOM3.0 format, thickness are set as 1.25mm;Coverage is from margo supraorbitalis to lower jaw lower edge
2, the number of denture when scanning maxillary dentition, mandibular dentition and upper lower jaw occlusion of dentition respectively using spatial digitizer According to;The range of denture when scanning maxillary dentition, mandibular dentition and upper lower jaw occlusion of dentition respectively using spatial digitizer are as follows: up and down Scanning range is the outside facing that upper and lower dentition corresponds to tooth when occlusion of dentition;Spatial digitizer is Smartoptics, 3shape Or first face;The scanning accuracy of spatial digitizer is not less than 15um;The scan data storage format of spatial digitizer is STL;It is such Format is conducive to the subsequent matching with each software and carries out image real time transfer.
The range of denture when scanning maxillary dentition, mandibular dentition and upper lower jaw occlusion of dentition respectively using spatial digitizer Are as follows: the scanning range of maxillary dentition is upper denture whole tooth whole facing and palate part;The scanning range of mandibular dentition is Whole facings of mandibular dentition whole tooth;Scanning range is facing on the outside of whole teeth when upper and lower dentition is engaged.
3, patient's conical beam CT data are imported in Super Virtual software or Proplan software, is reconstructed on patient Mandibular portions;Patient's head position is ajusted according to patient's orbitomeatal plane;
4,3 d scan data is also introduced into Super Virtual software or Proplan software after, upper and lower dentition is matched The upper mandibular dentition part of the patient of standard to reconstruction;
5, the upper tooth column scan curved surface data duplication after registration is moved up at a distance from Occlusal pad consistency of thickness;Specific distance To move up 2-15mm, such size that moves up can satisfy various temporomandibular joint disorcler TMP diseases;After upper denture duplication moves up, according to Mandibular dentition the case where Fuzzy Processing is done to denture bottom surface on lower section, with meet facing and mandibular dentition effectively contact and mandibular dentition The space when activity of left and right.The Fuzzy Processing being passivated is done to denture bottom surface on lower section
6, the upper tooth column scan data after exporting the upper tooth column scan data after being registrated together, moving up.
(2) guide plate design and production
1. by derived upper tooth column scan data, move up after upper tooth column scan data, import CAD software carry out Occlusal pad Design;Upper tooth column data to upper denture and after moving up carries out combination of entities, forms the biteplate structure of Intermediate Gray sets of holes;It stings The sets of holes inner bottom surface of plywood and upper denture are completely the same, and the outside bottom surface 312 of biteplate is the bottom being effectively engaged with mandibular dentition Face;When CAD design, retain whole upper denture teeth;Form the biteplate of full denture.The side surface upper part in the interior outside of biteplate 32 all coincide to denture top, and such degree of agreement can guarantee effectively to be socketed.
It faces upward on the upside of the outside of biteplate and extends 2-5mm on jaw;Face upward extension 2-8mm in jaw inside on the upside of inside.This Kind setting may further ensure that the stability after biteplate fitting.
The scan data of the image data of mandibular dentition, upper denture and the upper denture after moving up is imported into CAD, according to mandibular dentition The case where Fuzzy Processing is done to denture bottom surface on lower section, with meet facing and mandibular dentition effectively contact and mandibular dentition or so is movable When space.The Fuzzy Processing being passivated is done to denture bottom surface on lower section.
2. designed Occlusal pad is printed with 3D printer, Occlusal pad production is completed.
Setting increases the little particle of frictional force inside biteplate, and such setting can further increase the maintenance of shrink-fit structure And stability, it prevents from falling off.The material of 3D printing is transparent or semitransparent biocompatible materials.The precision of 3D printing is not low In 50um.
A kind of preparation method for the 3D printing biteplate for treating temporomandibular joint disorcler TMP of embodiment 2
A kind of preparation method of 3D printing biteplate that treating temporomandibular joint disorcler TMP, specifically:
(1) data acquisition and processing
3, the cranium jaw face of conical beam CT shooting patient is utilized;Conical beam CT application DICOM3.0 format, thickness are set as 1.25mm;Coverage is from margo supraorbitalis to lower jaw lower edge
4, the number of denture when scanning maxillary dentition, mandibular dentition and upper lower jaw occlusion of dentition respectively using spatial digitizer According to;The range of denture when scanning maxillary dentition, mandibular dentition and upper lower jaw occlusion of dentition respectively using spatial digitizer are as follows: up and down Scanning range is the outside facing that upper and lower dentition corresponds to tooth when occlusion of dentition;Spatial digitizer is Smartoptics, 3shape Or first face;The scanning accuracy of spatial digitizer is not less than 15um;The scan data storage format of spatial digitizer is STL;It is such Format is conducive to the subsequent matching with each software and carries out image real time transfer.
The range of denture when scanning maxillary dentition, mandibular dentition and upper lower jaw occlusion of dentition respectively using spatial digitizer Are as follows: the scanning range of maxillary dentition is upper denture whole tooth whole facing and palate part;The scanning range of mandibular dentition is Whole facings of mandibular dentition whole tooth;Scanning range is facing on the outside of whole teeth when upper and lower dentition is engaged.
3, patient's conical beam CT data are imported in Super Virtual software or Proplan software, is reconstructed on patient Mandibular portions;Patient's head position is ajusted according to patient's orbitomeatal plane;
4,3 d scan data is also introduced into Super Virtual software or Proplan software after, upper and lower dentition is matched The upper mandibular dentition part of the patient of standard to reconstruction;
5, the upper tooth column scan curved surface data duplication after registration is moved up at a distance from Occlusal pad consistency of thickness;Specific distance To move up 2-15mm, such size that moves up can satisfy various temporomandibular joint disorcler TMP diseases;
6, the upper tooth column scan data after exporting the upper tooth column scan data after being registrated together, moving up.
(2) guide plate design and production
1. by derived upper tooth column scan data, move up after upper tooth column scan data, import CAD software carry out Occlusal pad Design;Upper tooth column data to upper denture and after moving up carries out combination of entities, forms the biteplate structure of Intermediate Gray sets of holes;It stings The sets of holes inner bottom surface of plywood and upper denture are completely the same, and the outside bottom surface 312 of biteplate is the bottom being effectively engaged with mandibular dentition Face;When CAD design, retain whole upper denture teeth;Form the biteplate of full denture.The side surface upper part in the interior outside of biteplate 32 all coincide to denture top, and such degree of agreement can guarantee effectively to be socketed.
It faces upward on the upside of the outside of biteplate and extends 2-5mm on jaw;Face upward extension 2-8mm in jaw inside on the upside of inside.This Kind setting may further ensure that the stability after biteplate fitting.
The scan data of the image data of mandibular dentition, upper denture and the upper denture after moving up is imported into CAD, according to mandibular dentition The case where Fuzzy Processing is done to denture bottom surface on lower section, with meet facing and mandibular dentition effectively contact and mandibular dentition or so is movable When space.The Fuzzy Processing being passivated is done to denture bottom surface on lower section.
3. designed Occlusal pad is printed with 3D printer, Occlusal pad production is completed.
Setting increases the little particle of frictional force inside biteplate, and such setting can further increase the maintenance of shrink-fit structure And stability, it prevents from falling off.The material of 3D printing is transparent or semitransparent biocompatible materials.The precision of 3D printing is not low In 50um.
A kind of 3D printing biteplate for treating temporomandibular joint disorcler TMP of embodiment 3
A kind of 3D printing biteplate for treating temporomandibular joint disorcler TMP comprising the tooth coincideing with upper denture whole tooth Tooth occlusion set 1, occlusion set is interior to be arranged whole tooth putting holes 4;311 shape of inside bottom surface of dental articulation set 1 and upper denture tooth Bottom of the tooth face is consistent, and dental articulation covers 1 outside bottom surface 312 and is effectively engaged with mandibular dentition.Form a pair of of first molar occlusion set 11;One To second molar occlusion set 12;A pair of of central incisor occlusion set 14;A pair of of lateral incisor occlusion set 15;A pair of of canine tooth occlusion set 16;One To frist premolar occlusion set 17;A pair of second premolar teeth occlusion set 18;Each occlusion set connects with each other.
Outside bottom surface 312 to each dental articulation set 1 is the bottom surface of passivation, can satisfy occlusion set outside bottom surface 312 Effective occlusion when moving left and right of mandibular dentition.
The bottom thickness of dental articulation set 1 is 2-5mm;Side and/or connecting plate with a thickness of 1.5-5mm;Such setting Can guarantee it is maxillomandibular efficiently separate, and the material loss of side can be reduced.
The side surface upper part 32 in the interior outside of biteplate is all coincide to denture top, and such degree of agreement can guarantee effectively Socket.
The side surface upper part 32 in the outside of biteplate extends 5mm on the upper jaw;The side surface upper part 33 of inside on the inside of the upper jaw or Upside extends 5mm.Such setting may further ensure that the stability after biteplate fitting.
Increase the little particle of frictional force on the inside of biteplate close to tooth or the setting of upper jaw skin surface.Have by the way that little particle is arranged Effect increases frictional force, further increases the stability of biteplate after fitting.Little particle is pasted using the spraying of particle spray coating rifle and is stung On plywood inner surface, such mode more succinctly facilitates.
Biteplate is made of transparent or semitransparent biocompatible materials, and such setting can increase manufactured biteplate Aesthetic measure.The material precision of biteplate is not less than 50um.
A kind of 3D printing biteplate for treating temporomandibular joint disorcler TMP of embodiment 4
A kind of 3D printing biteplate for treating temporomandibular joint disorcler TMP comprising the tooth coincideing with upper denture whole tooth Tooth occlusion set 1, occlusion set is interior to be arranged whole tooth putting holes 4;311 shape of inside bottom surface of dental articulation set 1 and upper denture tooth Bottom of the tooth face is consistent, and dental articulation covers 1 outside bottom surface 312 and is effectively engaged with mandibular dentition.Form a pair of of first molar occlusion set 11;One To second molar occlusion set 12;A pair of of third molar occlusion set 13;A pair of of central incisor occlusion set 14;A pair of of lateral incisor occlusion set 15;A pair of of canine tooth occlusion set 16;A pair of of frist premolar occlusion set 17;A pair of second premolar teeth occlusion set 18;Each occlusion set phase Mutually perforation connection.
Outside bottom surface 312 to each dental articulation set 1 is the bottom surface of passivation, can satisfy occlusion set outside bottom surface 312 Effective occlusion when moving left and right of mandibular dentition.
The bottom thickness of dental articulation set 1 is 2-5mm;Side and/or connecting plate with a thickness of 1.5-5mm;Such setting Can guarantee it is maxillomandibular efficiently separate, and the material loss of side can be reduced.
The side surface upper part 32 in the interior outside of biteplate is all coincide to denture top, and such degree of agreement can guarantee effectively Socket.
The side surface upper part 32 in the outside of biteplate extends 3mm on the upper jaw;The side surface upper part 33 of inside on the inside of the upper jaw or Upside extends 3mm.Such setting may further ensure that the stability after biteplate fitting.
Increase the little particle of frictional force on the inside of biteplate close to tooth or the setting of upper jaw skin surface.Have by the way that little particle is arranged Effect increases frictional force, further increases the stability of biteplate after fitting.Little particle is pasted using the spraying of particle spray coating rifle and is stung On plywood inner surface, such mode more succinctly facilitates.
Biteplate is made of transparent or semitransparent biocompatible materials, and such setting can increase manufactured biteplate Aesthetic measure.The material precision of biteplate is not less than 50um.
The explanation of above-described embodiment is only intended to understand the utility model.It should be pointed out that for the ordinary skill of this field For personnel, without departing from the principle of this utility model, several improvement can also be carried out to the utility model, these change Into also will be in the protection scope that fall into the utility model claims.

Claims (10)

1. a kind of 3D printing biteplate for treating temporomandibular joint disorcler TMP comprising the tooth coincideing with upper denture whole tooth Occlusion set (1), which is characterized in that whole tooth putting holes (4), the inside bottom surface of dental articulation set (1) are set in occlusion set (311) shape is consistent with upper denture tooth bottom surface, and dental articulation set (1) outside bottom surface (312) is effectively engaged with mandibular dentition;Each tooth Tooth occlusion set (1) connects with each other.
2. the 3D printing biteplate for the treatment of temporomandibular joint disorcler TMP according to claim 1, which is characterized in that tooth is stung Trap (1) includes a pair of of first molar occlusion set (11);A pair of of second molar occlusion set (12);A pair of of central incisor occlusion set (14);A pair of of lateral incisor occlusion set (15);A pair of of canine tooth occlusion set (16);A pair of of frist premolar occlusion set (17);A pair of the Two premolar teeths occlusion set (18);Each occlusion set connects with each other.
3. the 3D printing biteplate for the treatment of temporomandibular joint disorcler TMP according to claim 2, which is characterized in that tooth is stung Trap (1) further includes a pair of of third molar occlusion set (13);Wherein third molar occlusion set (13) is engaged set with second molar (12) it connects with each other.
4. the 3D printing biteplate for the treatment of temporomandibular joint disorcler TMP according to claim 1, which is characterized in that tooth is stung The external bottom surface of trap (1) is the bottom surface of passivation.
5. the 3D printing biteplate for the treatment of temporomandibular joint disorcler TMP according to claim 1, which is characterized in that tooth is stung The thickness range of trap (1) is 1.5-10mm.
6. the 3D printing biteplate for the treatment of temporomandibular joint disorcler TMP according to claim 1, which is characterized in that tooth is stung The bottom thickness of trap (1) is 2-5mm;Side and/or connecting plate with a thickness of 1.5-5mm.
7. the 3D printing biteplate for the treatment of temporomandibular joint disorcler TMP according to claim 1, which is characterized in that biteplate The side surface upper part (32) in interior outside all coincide to denture top.
8. the 3D printing biteplate for the treatment of temporomandibular joint disorcler TMP according to claim 1, which is characterized in that biteplate The side surface upper part (32) in outside extend 2-5mm on the upper jaw;The side surface upper part (33) of inside extends to upper jaw inside or upside 2-5mm。
9. the 3D printing biteplate for the treatment of temporomandibular joint disorcler TMP according to any one of claims 1 to 8, feature It is, increases the little particle of frictional force on the inside of biteplate close to tooth or the setting of upper jaw skin surface.
10. the 3D printing biteplate for the treatment of temporomandibular joint disorcler TMP according to any one of claims 1 to 8, feature It is, biteplate is made of transparent or semitransparent biocompatible materials.
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CN112168396A (en) * 2020-10-21 2021-01-05 成都登特牙科技术开发有限公司 Occluding plate, digital design method of occluding plate and 3D printing production method
CN112674895A (en) * 2020-12-25 2021-04-20 上海岸和医疗器械有限公司 CR plate and manufacturing method of repositioning bite plate thereof
KR20230032528A (en) * 2021-08-31 2023-03-07 연세대학교 산학협력단 Invisalign and manufacturing method thereof
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* Cited by examiner, † Cited by third party
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CN111973309A (en) * 2020-07-24 2020-11-24 上海交通大学医学院附属第九人民医院 Method for manufacturing blending guide plate
CN111973309B (en) * 2020-07-24 2022-05-17 上海交通大学医学院附属第九人民医院 Manufacturing method of blending guide plate
CN112168396A (en) * 2020-10-21 2021-01-05 成都登特牙科技术开发有限公司 Occluding plate, digital design method of occluding plate and 3D printing production method
CN112168396B (en) * 2020-10-21 2021-08-10 成都登特牙科技术开发有限公司 Occluding plate, digital design method of occluding plate and 3D printing production method
CN112674895A (en) * 2020-12-25 2021-04-20 上海岸和医疗器械有限公司 CR plate and manufacturing method of repositioning bite plate thereof
CN112674895B (en) * 2020-12-25 2022-04-08 上海岸和医疗器械有限公司 CR plate and manufacturing method of repositioning bite plate thereof
KR20230032528A (en) * 2021-08-31 2023-03-07 연세대학교 산학협력단 Invisalign and manufacturing method thereof
KR102639248B1 (en) 2021-08-31 2024-02-20 연세대학교 산학협력단 Invisalign and manufacturing method thereof
KR102659743B1 (en) 2024-02-16 2024-04-19 연세대학교 산학협력단 Invisalign

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