Orthodontic device
By integrating vibration and optical acceleration devices into invisible orthodontic appliances, the problems of large size and poor compliance in existing technologies have been solved, achieving a comfortable and accelerated orthodontic effect and improving the efficiency of orthodontic treatment.
Patent Information
- Application Number
- CN202110215942.1
- Authority / Receiving Office
- CN · China
- Patent Type
- Patents(China)
- Current Assignee / Owner
- Filing Date
- 2021-02-26
- Publication Date
- 2026-02-17
- Estimated Expiration
- 2041-02-26
AI Technical Summary
Existing invisible orthodontic appliances require additional and bulky devices when using light and vibration to accelerate orthodontic treatment, which increases patient discomfort, leads to poor compliance, and affects treatment results.
Design an orthodontic device that combines a shell-shaped orthodontic appliance, a vibration-accelerated orthodontic device, and an optical-accelerated orthodontic device. The vibration and optical-accelerated devices are carried by the load-bearing part on the shell-shaped orthodontic appliance, and their synergistic effect accelerates orthodontic treatment and shortens the treatment cycle.
It achieves comfortable wear while using vibration and optical energy to accelerate tooth movement, improve treatment efficiency, shorten the treatment cycle, and reduce the feeling of a foreign body in the mouth.
Smart Images

Figure CN114948292B_ABST
Abstract
Description
TECHNICAL FIELD
[0001] The present application belongs to the field of medical devices, and relates to an orthodontic device. BACKGROUND
[0002] Invisible tooth aligners are increasingly accepted and used by the majority of tooth orthodontic patients due to their aesthetic, hygienic, convenient to wear, and good orthodontic effect. The invisible tooth aligner is a shell-shaped structure made of transparent high polymer material that can wrap around the teeth. It can correct some targeted cases and has a good orthodontic effect. However, the application of the invisible tooth aligner is affected by its structure and material, or the force generated by the interaction with the teeth, which can cause orthodontic force decay after the patient wears it for a certain period of time. The current existing technology has methods for assisting and accelerating tooth orthodontic treatment, such as using infrared light alone or vibration acceleration alone. However, the effect of assisting and accelerating requires the use of an additional orthodontic acceleration device to achieve the acceleration effect, and the two are separate acceleration treatments. The orthodontic acceleration device is mostly an additional device that is worn in the mouth and has a large volume. The patient needs to wear the orthodontic device according to the requirements of the acceleration treatment and wear it in the mouth for a specified period of time to accelerate the treatment. This acceleration method requires the patient to wear the orthodontic device and then wear the orthodontic acceleration device to achieve the acceleration of the teeth. The patient is not convenient to operate, and when the orthodontic acceleration device is worn in the mouth, the patient not only needs to bear the discomfort caused by the effect (such as vibration) of the orthodontic acceleration device, but also needs to bear the discomfort caused by the large volume of the orthodontic acceleration device, which increases the discomfort during the overall orthodontic acceleration process. In addition, the existing technology of using infrared acceleration treatment devices or vibration acceleration treatment devices alone requires the patient to strictly follow the compliance and use the additional acceleration treatment device regularly, which can easily lead to the inability to maintain the treatment period, thereby not meeting the treatment plan and affecting the treatment effect.
[0003] Therefore, it is of great significance to research an orthodontic device that has both orthodontic and acceleration treatment effects, and has both light and vibration acceleration, and has a small volume and less foreign body sensation in the mouth when worn for a long time. SUMMARY
[0004] The technical problem to be solved by the present application is to overcome the defects in the prior art and provide an orthodontic device that can use light and vibration acceleration to accelerate the treatment effect while the teeth gradually change from the initial position to the target treatment position according to the treatment plan, shorten the treatment period, and make the patient more comfortable and less foreign body sensation in the mouth.
[0005] The present application solves the above technical problems by the following technical solutions:
[0006] An orthodontic device comprises a shell-shaped tooth aligner, a vibration acceleration aligning device and an optical acceleration aligning device, the shell-shaped tooth aligner comprises a plurality of cavities accommodating a plurality of teeth, the cavities have geometrical structures for gradually positioning the plurality of teeth from initial positions to target aligning positions; a bearing part is arranged on the shell-shaped tooth aligner, the vibration acceleration aligning device and the optical acceleration aligning device are borne on the bearing part; kinetic energy generated by vibration of the vibration acceleration aligning device is conducted to the plurality of teeth through the shell-shaped tooth aligner, and the optical acceleration aligning device generates light energy to emit effective light for accelerating alignment to oral tissues of a patient.
[0007] Further, the bearing part comprises at least one first bearing part and at least one second bearing part, the first bearing part bears the vibration acceleration aligning device and is arranged on an outer surface of the shell-shaped tooth aligner, the vibration acceleration aligning device is fixed on the first bearing part; the second bearing part bears the optical acceleration aligning device, and two ends of the second bearing part are respectively partially connected to gum margins or adjacent gum margins of lingual sides of posterior tooth regions on left and right sides of the shell-shaped tooth aligner.
[0008] Further, the first bearing part is arranged on an outer surface of a buccal side of a posterior tooth region of the shell-shaped tooth aligner.
[0009] Further, the first bearing part and the second bearing part are respectively arranged at positions of wrapping different teeth of the posterior tooth region of the shell-shaped tooth aligner.
[0010] Further, the first bearing part is arranged at positions of wrapping first molars, second molars or third molars of the buccal side / lingual side of the posterior tooth region of the shell-shaped tooth aligner; and two ends of the second bearing part are respectively partially connected to gum margins or adjacent gum margins of lingual sides of first premolars, second premolars, first molars, second molars or third molars of the posterior tooth region on left and right sides of the shell-shaped tooth aligner.
[0011] Further, the first bearing part is arranged at positions of wrapping first molars, second molars or third molars of the buccal side / lingual side of the posterior tooth region of the shell-shaped tooth aligner; and two ends of the second bearing part are respectively partially connected to gum margins or adjacent gum margins of lingual sides of first premolars, second premolars, first molars, second molars or third molars of the posterior tooth region on left and right sides of the shell-shaped tooth aligner.
[0012] Further, the first bearing part and the second bearing part are arranged at positions of wrapping the same teeth of the posterior tooth region of the shell-shaped tooth aligner.
[0013] Further, the first bearing part is arranged at positions of wrapping first molars, second molars or third molars of the buccal side / lingual side of the posterior tooth region of the shell-shaped tooth aligner; and two ends of the second bearing part are respectively partially connected to gum margins or adjacent gum margins of lingual sides of first premolars, second premolars, first molars, second molars or third molars of the posterior tooth region on left and right sides of the shell-shaped tooth aligner.
[0014] Further, the first bearing part is a bubble structure provided on the outer surface of the shell-shaped tooth appliance and integrally formed with the shell-shaped tooth appliance, and the vibration acceleration appliance is at least partially accommodated in the bubble structure.
[0015] Further, the second bearing part is a plate-shaped structure similar to the curved arc of the upper palate.
[0016] Further, the second bearing part is integrally formed with the shell-shaped tooth appliance.
[0017] Further, the second bearing part is further provided with at least one reinforcing ridge similar to the curved arc of the second bearing part.
[0018] Further, the optical acceleration appliance is fixed in the reinforcing ridge.
[0019] Further, the optical acceleration appliance is a point light source, a line light source or a surface light source.
[0020] Further, the point light source, the line light source or the surface light source is an effective light source for emitting acceleration treatment light.
[0021] Further, the wavelength of the effective light is 620-1000 nm.
[0022] Further, the point light source comprises a patch LED, a light source module and an optical module connected in communication.
[0023] Further, the optical module is a lens, and the lens adjusts the irradiation angle of the point light source.
[0024] Further, the irradiation angle of the point light source is 5-180°.
[0025] Further, the line light source comprises an LED light strip, a light source module and an optical module connected in communication.
[0026] Further, the vibration acceleration appliance comprises a vibrator and a vibration transmission part, the vibrator is arranged in the first bearing part, and the vibration transmission part is fixedly connected with the reinforcing ridge.
[0027] Further, one end of the vibration transmission part is connected with the vibrator, and the other end of the vibration transmission part extends to the vibration target position through the reinforcing ridge.
[0028] Further, the vibration transmission part is in a strip shape and is arranged on the reinforcing ridge along the curved direction of the reinforcing ridge.
[0029] Further, the vibration transmission part is fixedly connected to the reinforcing ridge through a plurality of fixed connection points, and the rest part is not in contact with the reinforcing ridge.
[0030] Further, the vibration transmission part is in a strip shape and is arranged along the dental arch direction of the shell-shaped dental appliance.
[0031] Further, the vibration frequency of the vibrator is 5-11 Hz.
[0032] Further, the bearing part comprises at least one third bearing part, the third bearing part bearing the vibration acceleration appliance and the optical acceleration appliance, and is arranged on the outer surface of the shell-shaped dental appliance, and the vibration acceleration appliance and the optical acceleration appliance are fixed on the third bearing part.
[0033] Further, the third bearing part is integrally formed with the shell-shaped dental appliance, and is a bubble structure formed on the outer surface of the shell-shaped dental appliance, and the vibration acceleration appliance and the optical acceleration appliance are at least partially accommodated in the bubble structure.
[0034] Further, the third bearing part is arranged along the labial / buccal arch and / or lingual arch of the shell-shaped dental appliance.
[0035] Further, the vibration acceleration appliance and the optical acceleration appliance are in an integrated structure.
[0036] Further, the vibration acceleration appliance and the optical acceleration appliance are fixedly connected to the third bearing part.
[0037] Further, the vibration acceleration appliance comprises a vibrator and a vibration transmission part, and the vibration transmission part is in a strip shape and is arranged on the third bearing part along the bending direction of the third bearing part.
[0038] Further, one end of the vibration transmission part is connected to the vibrator, and the other end is fixedly connected to the third bearing part through a plurality of fixed connection points, and the rest part is not in contact with the third bearing part.
[0039] Further, the vibrator is arranged adjacent to the gingival margin side of the shell-shaped dental appliance.
[0040] Further, the vibration frequency of the vibrator is 5-11 Hz.
[0041] Further, the vibration acceleration treatment device comprises a vibration module, a vibration communication module and a vibration control module, the vibration module, the vibration communication module and the vibration control module are electrically connected; the optical acceleration treatment device comprises an optical module, an optical communication module and an optical control module; the optical module, the optical communication module and the optical control module are electrically connected.
[0042] Further, the vibration communication module is wirelessly connected to an external processor for setting a vibration scheme of the vibration acceleration treatment device, the vibration scheme at least comprises a vibration frequency and a vibration time.
[0043] Further, the optical communication module is wirelessly connected to an external processor for setting an optical scheme of the optical acceleration device, the optical scheme at least comprises an optical wavelength and an optical time.
[0044] Further, the vibration module and the optical module are simultaneously or intermittently activated.
[0045] Further, the vibration control module and the optical control module are the same control module.
[0046] Compared with the prior art, the present application has at least the following beneficial effects:
[0047] The orthodontic device provided by the present application comprises a shell-shaped tooth treatment device, a vibration acceleration treatment device and an optical acceleration treatment device, wherein the shell-shaped tooth treatment device can align teeth, so that the teeth gradually move from an initial position to a target treatment position; the vibration acceleration treatment device and the optical acceleration treatment device can accelerate the treatment of the teeth based on the shell-shaped tooth treatment device, and can select an acceleration mode according to the treatment requirements, improve the activity of osteoblasts and osteoclasts, and enhance the metabolic capacity, so as to accelerate the movement of the teeth by using vibration energy and optical energy, improve the treatment efficiency and shorten the treatment period. BRIEF DESCRIPTION OF DRAWINGS
[0048] Figure 1 FIG. 1 is a structural schematic diagram of an orthodontic device 1 according to an embodiment of the present application.
[0049] Figure 2 FIG. 3 is a structural schematic diagram of a first bearing part and a second bearing part of the orthodontic device 1 according to an embodiment of the present application, which are arranged in a shell-shaped tooth treatment device for treating the same teeth.
[0050] Figure 3 FIG. 4 is an A-A' cross-sectional view of the orthodontic device 1 according to an embodiment of the present application. Figure 2
[0051] Figure 4 The first bearing part and the second bearing part of the orthodontic device 1 in the embodiment of the present application are arranged in the shell-shaped dental appliance structure wrapping different teeth.
[0052] Figure 5 The first bearing part of the orthodontic device 1 in the embodiment of the present application is symmetrically arranged in the buccal side structure of the left and right posterior tooth regions of the posterior tooth region of the shell-shaped dental appliance.
[0053] Figure 6 The first bearing part of the orthodontic device 1 in the embodiment of the present application is symmetrically arranged in the lingual side structure of the left and right posterior tooth regions of the posterior tooth region of the shell-shaped dental appliance.
[0054] Figure 7 The structure schematic diagram of the second bearing part of the orthodontic device 1 in the embodiment of the present application is provided with a reinforcing ridge.
[0055] Figure 8 The structure schematic diagram of the orthodontic device 1 in the embodiment of the present application is provided with a vibration conducting part.
[0056] Figure 9 The structure schematic diagram of the vibration acceleration treatment device of the orthodontic device 1 in the embodiment of the present application is shown.
[0057] Figure 10 The structure schematic diagram of the optical acceleration treatment device of the orthodontic device 1 in the embodiment of the present application is shown.
[0058] Figure 11 The structure schematic diagram of the orthodontic device 2 in the embodiment of the present application is shown.
[0059] Figure 12 The structure schematic diagram of the third bearing part of the orthodontic device 2 in the embodiment of the present application is arranged on the lingual side.
[0060] Figure 13 The structure schematic diagram of the vibration acceleration treatment device of the orthodontic device 2 in the embodiment of the present application is provided with a vibrator and a vibration conducting part.
[0061] Figure 14 The structure schematic diagram of the vibration acceleration treatment device of the orthodontic device 2 in the embodiment of the present application is shown.
[0062] Figure 15 The structure schematic diagram of the optical acceleration treatment device of the orthodontic device 2 in the embodiment of the present application is shown. EMBODIMENT
[0063] In order to make the objects, technical solutions and advantages of the present application clearer, the following will clearly and completely describe the technical solutions in the embodiments of the present application with reference to the drawings of the present application. Obviously, the described embodiments are only a part of the embodiments of the present application, rather than all the embodiments of the present application. Based on the embodiments in the present application, all other embodiments obtained by those of ordinary skill in the art without creative effort should fall into the scope of protection of the present application. Unless otherwise defined, the technical terms or scientific terms used herein should be understood as the common meanings of the technical terms or scientific terms for those of ordinary skill in the art. The similar words such as "comprise" used herein mean that the elements or objects before the words cover the elements or objects listed after the words and their equivalents, and do not exclude other elements or objects.
[0064] When the invisible tooth appliance is worn on the teeth, the invisible tooth appliance itself has a function of aligning the teeth by the design structure of the invisible tooth appliance and the elastic deformation of the invisible tooth appliance itself, so that the teeth are gradually positioned from the initial position to the target treatment position; however, the tooth treatment period is long, and the patient needs to wear the tooth appliance for a long time to achieve the continuous treatment effect. The orthodontic device with the vibration acceleration treatment device and the optical acceleration treatment adopted in the present application shortens the treatment period on the basis of ensuring the self-treatment performance of the shell-shaped tooth appliance.
[0065] Embodiments
[0066] An orthodontic device 1, as shown in Figure 1 , comprises a shell-shaped tooth appliance 11, a vibration acceleration treatment device 12 and an optical acceleration treatment device 13. The shell-shaped tooth appliance 11 comprises a plurality of cavities accommodating a plurality of teeth, and the cavities have a geometric structure for gradually positioning the plurality of teeth from an initial position to a target treatment position. A bearing part 111 is arranged on the shell-shaped tooth appliance 11, and the vibration acceleration treatment device 12 and the optical acceleration treatment device 13 are borne on the bearing part 111. The kinetic energy generated by the vibration of the vibration acceleration treatment device 12 is conducted to the plurality of teeth through the shell-shaped tooth appliance 11, and the optical acceleration treatment device 13 generates effective light for accelerating treatment and emits the effective light to the oral tissues of the patient, so as to achieve the effect of accelerating tooth treatment. In a specific embodiment, as shown in Figure 2As shown, the bearing part 111 includes at least one first bearing part 1111 and at least one second bearing part 1112, the first bearing part 1111 bears the vibration acceleration orthodontic device 12 and is arranged on the outer surface of the shell-shaped dental appliance 11, the vibration acceleration orthodontic device 12 is fixed on the first bearing part 1111; the second bearing part 1112 bears the optical acceleration orthodontic device 13, and the two ends of the second bearing part 1112 are respectively partially connected to the gum margin or adjacent to the gum margin of the lingual side of the posterior dental area on the left and right sides of the shell-shaped dental appliance 11. In this way, the optical acceleration orthodontic device 13 is arranged on the second bearing part 1112 connecting the left and right sides of the shell-shaped dental appliance 11, and a more specific structure is a plate-shaped structure similar to the curvature of the palate. The plate-shaped structure of this arrangement can perform arch expansion treatment on the midpalatal suture of the maxillary palate, or can not perform arch expansion, but only provide a structure for the left and right teeth as a whole support; when the plate-shaped structure has the arch expansion effect, this arrangement makes the second bearing part 1112 and the optical acceleration orthodontic device 13 more adjacent to the palate, and can irradiate upward and / or downward during optical acceleration, and when irradiating upward, it can accelerate the growth of the maxilla and stimulate bone regeneration to accelerate the expansion effect, and when irradiating downward, it can also apply optical energy to other teeth to accelerate the orthodontic treatment of the teeth. When the plate-shaped structure does not perform arch expansion, the plate-shaped structure is connected to the gum margin or adjacent to the gum margin of the lingual side of the posterior dental area on the left and right sides, so that the teeth in the left and right posterior dental areas form a whole support, and when the anterior teeth are retracted, it provides a stronger support effect, and the second bearing part 1112 and the optical acceleration orthodontic device 13 are arranged on the plate-shaped structure, which can emit effective light for accelerating the orthodontic treatment of the patient's oral tissues. When the patient wears it, the optical acceleration orthodontic device 13 can set the acceleration scheme according to the treatment needs, irradiate downward to apply optical energy to the teeth, so as to accelerate the orthodontic treatment of the teeth.
[0067] In one embodiment, as shown in Figure 2 The first bearing part 1111 is arranged on the outer surface of the buccal side of the posterior dental area of the shell-shaped dental appliance 11. In this way, the vibration acceleration orthodontic device carried in the first bearing part 1111 is arranged at the posterior dental area, which is not easy to be perceived when the patient opens his mouth and speaks, and does not affect the aesthetics. Of course, the vibrator 12 can also be arranged on the labial side corresponding to the anterior dental area, and can be used to accelerate the orthodontic treatment of the teeth in the anterior dental area. The above-mentioned various forms of arrangement can be selected according to the actual treatment needs of the patient. In addition, the vibrator 12 is arranged on each tooth corresponding to the shell-shaped dental appliance 11, and can also be selectively arranged on the teeth that need to be accelerated.
[0068] In one embodiment, as shown in Figure 4As shown, the first bearing part 1111 and the second bearing part 1112 are respectively arranged at the tooth wrapping parts of the posterior dental area of the shell-shaped dental appliance 11. In a more preferred embodiment, the first bearing part 1111 is arranged at the buccal side / lingual side of the first molar, the second molar or the third molar of the posterior dental area of the shell-shaped dental appliance 11; the two ends of the second bearing part 1112 are respectively partially connected to the gum line or the adjacent gum line of the lingual side of the first premolar, the second premolar, the first molar, the second molar or the third molar of the posterior dental area of the shell-shaped dental appliance 11. More specifically, for example, when the first bearing part 1111 is arranged at the buccal side / lingual side of the first molar of the posterior dental area of the shell-shaped dental appliance 11, the two ends of the second bearing part 1112 are arranged at the gum line or the adjacent gum line of the lingual side of the first premolar, or the second premolar, or the second molar, or the third molar of the posterior dental area of the shell-shaped dental appliance 11. Of course, when the first bearing part 1111 is arranged at other teeth of the posterior dental area of the shell-shaped dental appliance 11 as described above, the teeth of the posterior dental area of the shell-shaped dental appliance 11 connected by the two ends of the second bearing part 1112 can be different from the teeth wrapped by the first bearing part 1111, which will not be listed one by one here. This arrangement allows the vibration acceleration treatment device and the optical acceleration treatment device to be arranged on different teeth, avoiding mutual interference when both devices perform acceleration treatment at the same time.
[0069] In a more preferred embodiment, as shown in Figure 5 and Figure 6 The first bearing part 1111 is arranged at the buccal side / lingual side of the corresponding teeth of the posterior dental area of the shell-shaped dental appliance 11. This arrangement allows the vibration acceleration treatment device carried by the first bearing part 1111 to have more uniform treatment effect when performing vibration acceleration treatment, avoiding the reduction of acceleration treatment effect caused by vibration attenuation. It should be noted that the first bearing part 1111 and the second bearing part 1112 can be arranged on the lingual side at the same time, or the first bearing part 1111 can be arranged on the buccal side and the second bearing part 1112 can be arranged on the lingual side, which can be arranged according to the treatment needs. Both of the above arrangements are invisible and can be easily detected when worn in the mouth, and at the same time have the effects of treatment and acceleration treatment.
[0070] In a more preferred embodiment, as shown in Figure 2As shown, the first bearing part 1111 and the second bearing part 1112 are arranged at the same tooth wrapped by the shell-shaped tooth appliance 11 in the posterior region. In a more preferred embodiment, the first bearing part 1111 is arranged on the labial / tongue side of the first premolar, the second premolar, the first molar, the second molar or the third molar wrapped by the shell-shaped tooth appliance 11 in the posterior region; the two ends of the second bearing part 1112 are respectively partially connected to the gum margin or adjacent to the gum margin of the tongue side of the first premolar, the second premolar, the first molar, the second molar or the third molar wrapped by the shell-shaped tooth appliance 11 in the posterior region on the left and right sides. More specifically, for example, when the first bearing part 1111 is arranged on the buccal / tongue side of the first molar wrapped by the shell-shaped tooth appliance 11 in the posterior region, the two ends of the second bearing part 1112 are arranged at the gum margin or adjacent to the gum margin of the tongue side of the first molar wrapped by the shell-shaped tooth appliance 11 in the posterior region on the left and right sides. Of course, when the first bearing part 1111 is arranged on other teeth wrapped by the shell-shaped tooth appliance 11 in the posterior region as described above, the teeth in the posterior region of the shell-shaped tooth appliance 11 on the left and right sides connected by the two ends of the second bearing part 1112 are the same teeth as those wrapped by the first bearing part 1111, which will not be listed one by one here. This arrangement allows the vibration acceleration appliance and the optical acceleration appliance to be arranged on the same tooth, and when targeted tooth correction is performed, the vibration acceleration and the optical acceleration are performed at the same time, and the two are coordinated to accelerate the targeted tooth correction, thereby improving the correction efficiency. It should be noted that the first bearing part 1111 and the second bearing part 1112 can be arranged on the tongue side at the same time, or the first bearing part 1111 can be arranged on the buccal side and the second bearing part 1112 can be arranged on the tongue side. The specific arrangement can be targeted according to the correction requirements. The above two arrangements are both invisible arrangements, which are not easy to be detected when worn in the mouth by the patient, and at the same time have the effects of correction and acceleration correction.
[0071] In an embodiment, as shown in FIG. 1, the shell-shaped tooth appliance 11 is provided with a first bearing part 1111 and a second bearing part 1112. The first bearing part 1111 and the second bearing part 1112 are arranged at the same tooth wrapped by the shell-shaped tooth appliance 11 in the posterior region. In a more preferred embodiment, the first bearing part 1111 is arranged on the labial / tongue side of the first premolar, the second premolar, the first molar, the second molar or the third molar wrapped by the shell-shaped tooth appliance 11 in the posterior region; the two ends of the second bearing part 1112 are respectively partially connected to the gum margin or adjacent to the gum margin of the tongue side of the first premolar, the second premolar, the first molar, the second molar or the third molar wrapped by the shell-shaped tooth appliance 11 in the posterior region on the left and right sides. More specifically, for example, when the first bearing part 1111 is arranged on the buccal / tongue side of the first molar wrapped by the shell-shaped tooth appliance 11 in the posterior region, the two ends of the second bearing part 1112 are arranged at the gum margin or adjacent to the gum margin of the tongue side of the first molar wrapped by the shell-shaped tooth appliance 11 in the posterior region on the left and right sides. Of course, when the first bearing part 1111 is arranged on other teeth wrapped by the shell-shaped tooth appliance 11 in the posterior region as described above, the teeth in the posterior region of the shell-shaped tooth appliance 11 on the left and right sides connected by the two ends of the second bearing part 1112 are the same teeth as those wrapped by the first bearing part 1111, which will not be listed one by one here. This arrangement allows the vibration acceleration appliance and the optical acceleration appliance to be arranged on the same tooth, and when targeted tooth correction is performed, the vibration acceleration and the optical acceleration are performed at the same time, and the two are coordinated to accelerate the targeted tooth correction, thereby improving the correction efficiency. It should be noted that the first bearing part 1111 and the second bearing part 1112 can be arranged on the tongue side at the same time, or the first bearing part 1111 can be arranged on the buccal side and the second bearing part 1112 can be arranged on the tongue side. The specific arrangement can be targeted according to the correction requirements. The above two arrangements are both invisible arrangements, which are not easy to be detected when worn in the mouth by the patient, and at the same time have the effects of correction and acceleration correction. Figure 3As shown, the first bearing part 1111 is a cavity structure provided on the outer surface of the shell-shaped tooth appliance 11, and the vibration acceleration appliance is at least partially accommodated in the cavity structure. More specifically, the cavity structure protrudes from the outer surface of the shell-shaped tooth appliance 11, that is, the shell-shaped tooth appliance 11 can be prepared by a hot-pressing film method or a direct 3D printing method, so that the first bearing part 1111 is integrally formed with the shell-shaped tooth appliance 11, which is convenient for preparation. When the vibration acceleration appliance 12 is installed, the vibration acceleration appliance 12 can be directly fixed and installed in the first bearing part 1111 of the cavity structure. This arrangement can stabilize the relative position of the vibration acceleration appliance 12 and the shell-shaped tooth appliance 11, and the relative position will not change due to the removal and wearing of the appliance. During the acceleration of the teeth, the relative position between the vibrator and the teeth to be accelerated is relatively stable, and the acceleration of the teeth is balanced during the tooth acceleration and acceleration treatment. The reconstruction of bone cells maintains a constant vibration effect, avoids deviation of the acceleration treatment from the treatment plan, and causes unpredictable treatment effects.
[0072] In one embodiment, as shown in Figures 1-5 The second bearing part 1112 is a plate-shaped structure similar to the curved arc of the palate. More specifically, the second bearing part 1112 is a plate-shaped structure curved upward to the palate, and the curved arc is the same as or substantially the same as the curved arc of the palate. The specific curved arc needs to be set according to the treatment needs. For example, when expansion treatment is needed, the curved arc of the second bearing part 1112 is substantially the same as the curved arc of the palate. When worn in the patient's mouth, the second bearing part 1112 needs to be curved to complete the wearing and achieve the effect of expansion. When the second bearing part 1112 does not perform the expansion function, the plate-shaped structure is connected to the gum line or adjacent gum line of the left and right posterior teeth, so that the left and right posterior teeth form a whole support. For example, when the anterior teeth are retracted, a stronger support effect is provided. The second bearing part 1112 and the optical acceleration device 13 are arranged on the plate-shaped structure, which can emit effective light for the acceleration treatment of the patient's oral tissue. When the patient wears the optical acceleration device 13, the device can set the acceleration scheme according to the treatment needs, and irradiate the teeth from below to apply optical energy to the teeth, so that the teeth are accelerated.
[0073] In one embodiment, the second bearing part 1112 and the shell-shaped tooth appliance 11 are integrally formed. During the preparation of the orthodontic device 1, a hot-pressing film forming or direct 3D printing method can be used. This structure makes the second bearing part 1112 and the shell-shaped tooth appliance 11 stable and easy to prepare.
[0074] In a more preferred embodiment, as shown in Figure 7 The second carrier 1112 is also provided with at least one reinforcing ridge 11121 similar to the curvature of the second carrier 1112. More specifically, the reinforcing ridge 11121 is a convex ridge protruding upward or toward the tongue side based on the cross-section of the second carrier 1112 along the sagittal plane. This reinforcing ridge 11121 can provide sufficient force to achieve the effect of expanding the arch or improving overall anchorage. In one embodiment, the second carrier 1112 and the reinforcing ridge 11121 are integrally formed to facilitate manufacturing, which can be prepared by hot pressing or direct 3D printing. When hot pressing is used, the corresponding model can be directly 3D printed, then the film is pressed to prepare, and then cut to obtain the desired orthodontic device. In a more preferred embodiment, the optical acceleration treatment device 13 is fixed in the reinforcing ridge 11121. Since the reinforcing ridge 11121 is a convex ridge structure, the space formed by the convex ridge inside can accommodate the optical acceleration treatment 13, making full use of the space in the mouth, reducing the foreign body sensation in the mouth, and making the patient wear more comfortable. In a more specific embodiment, as shown in Figures 1-7 The optical acceleration treatment device 13 is a point light source, a line light source, or a surface light source. The point light source, the line light source, or the surface light source is an effective light source that can emit infrared light to accelerate treatment. The effective light has a wavelength of 620nm-1000nm. This wavelength range of effective light can effectively improve the activity of osteoblasts and osteoclasts when subjected to treatment force, and cooperate with the treatment plan to achieve the effect of accelerating tooth treatment.
[0075] In a specific embodiment, as shown in Figures 1-4 , Figure 7 and Figure 8 The point light source includes a patch LED, a light source module, and an optical module connected in communication. The patch LED is powered by the light source module and the illumination angle is adjusted by the optical module. In a more preferred embodiment, the optical module is a lens that adjusts the illumination angle of the point light source, and the illumination angle of the point light source is 5-180°. When the point light source is arranged adjacent to the center of the second carrier 1112 or the reinforcing ridge 11121 and closest to the palate, it is located at the highest position of the maxilla when worn in the mouth, and the divergence angle of its illumination can cover the teeth in the oral cavity. When performing light acceleration treatment, it can achieve the effect of simultaneously accelerating the treatment of teeth. Of course, the angle of the point light source can also be adjusted according to the actual treatment needs to perform individualized treatment on the teeth that need targeted light acceleration treatment, so as to achieve a treatment effect consistent with the treatment plan.
[0076] In another embodiment, as shown in Figure 5 andFigure 6 As shown, the linear light source comprises a communication-connected LED light strip, a light source module and an optical module. The LED light strip is powered through the light source module and the irradiation angle is adjusted through the optical module. The LED light strip can be an optical fiber.
[0077] In one embodiment, as shown, Figure 8 As shown, the vibration acceleration orthodontic device 12 comprises a vibrator 121 and a vibration transmission part 122, the vibrator 121 is arranged in the first bearing part 1111, and the vibration transmission part 122 is fixedly connected with the reinforcing ridge 11121. The kinetic energy generated by the vibration of the vibrator 121 is transmitted to the plurality of teeth through the shell-shaped tooth aligner 11. The vibration transmission part 122 is fixed on the shell-shaped tooth aligner 11, one end of the vibration transmission part 122 is connected with the vibrator 121, and the other end extends to the vibration target position. In another more preferred embodiment, the vibration transmission part 122 is in a strip shape and is arranged along the dental arch direction of the shell-shaped tooth aligner 11. Specifically, the vibrator 121 is arranged on the shell-shaped tooth aligner 11 corresponding to the single tooth, and the vibrator 121 transmits kinetic energy to the plurality of teeth through the vibration transmission part 122. This arrangement can reduce the number of vibrators 121 arranged on the shell-shaped tooth aligner 11, reduce costs, and simultaneously achieve acceleration orthodontic treatment of multiple teeth. In addition, the vibration transmission part 121 can set the vibration target position according to the actual orthodontic requirements. For example, if the left posterior teeth need to be simultaneously subjected to tooth acceleration orthodontic treatment, the vibrator 121 is arranged on the lingual side of the first molar, one end of the vibration transmission part 122 is connected to the mesial end of the vibrator 121, and the other end extends to the first premolar in the mesial direction. The vibration transmission part 122 is connected to the distal end of the vibrator 121 and extends to the second molar or the third molar in the distal direction, thereby achieving the effect of simultaneously accelerating the vibration of the posterior teeth. In another embodiment, the vibration transmission part 122 can be arranged on the reinforcing ridge 11121 along the bending direction of the reinforcing ridge 11121. This arrangement can set one vibrator 121, and the kinetic energy generated by the vibration of the vibrator 121 is transmitted from the left posterior teeth to the right posterior teeth for acceleration orthodontic treatment. This not only reduces the number of vibrators 121, but also uses kinetic energy transmission to accelerate the orthodontic treatment of the teeth on both sides, thereby improving the efficiency of the orthodontic treatment of the whole jaw.
[0078] In another embodiment, the vibration conduction part 122 is fixedly connected to the reinforcing ridge 11121 through several fixed connection points, and the rest of the vibration conduction part 122 is not in contact with the reinforcing ridge 11121. This arrangement increases the fixed position of the vibration conduction part 122 and the reinforcing ridge 11121, and increases the integrity of the two, so that the vibration effect of the end of the vibration conduction part 122 is not attenuated due to the extension of the vibration conduction part 122, and the effect of accelerating orthodontic treatment is affected. In another more preferred embodiment, the vibration conduction part 122 is fixedly connected to the reinforcing ridge 11121 by any one of bonding, welding or riveting, and the above fixing form can be selected according to actual needs.
[0079] In one embodiment, the vibration frequency of the vibrator is 5-11 Hz. The vibration frequency in this range can make the osteoblasts and osteoclasts most active when subjected to the correction force, and the patient wearing the orthodontic device with the vibrator has less discomfort in the mouth, and the discomfort in the mouth is not enhanced due to the too large vibration frequency, and the effect of accelerating the treatment is not achieved due to the too small vibration frequency.
[0080] In one embodiment, as shown in Figure 9 The vibration-accelerating treatment device 12 includes a vibration module 1201, a vibration communication module 1202 and a vibration control module 1203, and the vibration module 1201, the vibration communication module 1202 and the vibration control module 1203 are electrically connected; more specifically, the vibration control module 1203 controls the vibration of the vibration module 1201, and can also control the communication connection of the vibration communication module 1202 with the external processor. As shown in Figure 10 The optical-accelerating treatment device 13 includes an optical module 1301, an optical communication module 1302 and an optical control module 1303; the optical module 1301, the optical communication module 1302 and the optical control module 1303 are electrically connected; more specifically, the optical control module 1303 controls the light of the optical module 1301, and can also control the communication connection of the optical communication module 1302 with the external processor.
[0081] In one embodiment, the vibration communication module 1202 is wirelessly connected to an external processor for setting the vibration scheme of the vibration acceleration orthodontic device 12, which at least includes vibration frequency and vibration time. The vibration frequency and vibration time can be set according to the acceleration orthodontic requirements. The external processor can be an APP processing end on a mobile phone, which sets parameters such as when to start the vibration acceleration orthodontic treatment, vibration time, vibration mode, vibration frequency, etc. The patient can adjust and set the parameters according to the actual orthodontic requirements and the vibration bearing degree. In addition, the vibration communication module 1202 can also collect the vibration time and the effect of the tooth acceleration under the vibration, and feed back the acceleration orthodontic information to the external processor. The acceleration orthodontic information is collected and summarized to obtain the data accumulation of the acceleration orthodontic parameters under different case types. After classification according to the case types, the data can be provided to subsequent patients for acceleration orthodontic treatment, providing a guidance basis.
[0082] In one embodiment, the optical communication module 1302 is wirelessly connected to an external processor for setting the light scheme of the optical acceleration orthodontic device 13, which at least includes light wavelength and light time. The light frequency and light time can be set according to the acceleration orthodontic requirements. The external processor can be an APP processing end on a mobile phone, which sets parameters such as when to start the light acceleration orthodontic treatment, light time, light mode, light frequency, etc. The patient can adjust and set the parameters according to the actual orthodontic requirements and the light bearing degree. In addition, the optical communication module 1202 can also collect the light time and the effect of the tooth acceleration under the light, and feed back the acceleration orthodontic information to the external processor. The acceleration orthodontic information is collected and summarized to obtain the data accumulation of the acceleration orthodontic parameters under different case types. After classification according to the case types, the data can be provided to subsequent patients for acceleration orthodontic treatment, providing a guidance basis.
[0083] In one embodiment, the vibration module 1201 and the optical module 1301 are simultaneously or intermittently set to start. Specifically, the vibration module 1201 and the optical module 1301 can simultaneously perform vibration and light acceleration orthodontic treatment, or first perform vibration acceleration orthodontic treatment and then perform light acceleration orthodontic treatment, or first perform light acceleration orthodontic treatment and then perform vibration acceleration orthodontic treatment, or alternately perform vibration acceleration orthodontic treatment and light acceleration orthodontic treatment. The specific mode can be set according to the actual orthodontic requirements of the patient, such as the orthodontic period, the orthodontic expression rate, etc.
[0084] In one embodiment, the vibration control module 1203 and the optical control module 1303 are the same control module. The same control module can control both vibration and light, and achieve common and / or separate control of the vibration and light on / off state, intensity, frequency, pulse and / or other parameters of the light. In orthodontic treatment or acceleration of orthodontic treatment, the vibration acceleration appliance and the optical acceleration appliance can be used simultaneously according to the treatment needs, or one of the acceleration appliances can be selectively used. When the patient's oral environment is sensitive, the vibration acceleration appliance can accelerate the sensitivity. At this time, the frequency, period and other parameters of the light acceleration appliance can be increased, and the frequency, period and other parameters of the vibration acceleration appliance can be reduced to reduce the patient's oral sensitivity and improve the patient's comfort while accelerating the treatment. When the patient's oral environment is good, the vibration acceleration appliance and the optical acceleration appliance can be used simultaneously to cooperate with each other. On the basis of the shell-shaped tooth appliance for gradually changing the patient's teeth from the initial position to the target treatment position, the overall treatment period is shortened.
[0085] In another embodiment, an orthodontic device 2, as shown in Figure 11 and Figure 12 , includes a shell-shaped tooth appliance 21, a vibration acceleration appliance 22 and an optical acceleration appliance 23. The shell-shaped tooth appliance 21 includes a plurality of cavities accommodating a plurality of teeth, and the cavities have a geometric structure for gradually positioning the plurality of teeth from an initial position to a target treatment position. The shell-shaped tooth appliance 21 is provided with a bearing part 211, and the vibration acceleration appliance 22 and the optical acceleration appliance 23 are carried on the bearing part 211. The kinetic energy generated by the vibration of the vibration acceleration appliance 22 is conducted to the plurality of teeth through the shell-shaped tooth appliance 21, and the optical acceleration appliance 23 generates effective light for accelerating the treatment of the patient's oral tissue to achieve the effect of accelerating the treatment of the teeth. The bearing part 211 includes at least one third bearing part 2111, the third bearing part 2111 carries the vibration acceleration appliance 22 and the optical acceleration appliance 23, and is arranged on the outer surface of the shell-shaped tooth appliance 21. The vibration acceleration appliance 22 and the optical acceleration appliance 23 are fixed on the third bearing part 2111. In one embodiment, the third bearing part 2111 is integrally formed with the shell-shaped tooth appliance 21, and is a bubble structure formed on the outer surface of the shell-shaped tooth appliance 21. The vibration acceleration appliance 22 and the optical acceleration appliance 23 are at least partially accommodated in the bubble structure. More specifically, the vibration acceleration appliance 22 and the optical acceleration appliance 23 can be completely carried in the bubble structure, or one of the vibration acceleration appliance 22 and the optical acceleration appliance 23 can be carried in the bubble structure.
[0086] In one embodiment, as shown in Figure 11 andFigure 12 As shown, the third bearing part 2111 is arranged along the labial / buccal arch and / or the lingual arch of the shell-shaped tooth aligner 21. More specifically, the third bearing part 2111 can be arranged on the lingual side of the shell-shaped tooth aligner 21, which is more invisible and aesthetic, and can improve the aesthetics of wearing in the oral cavity of the patient while ensuring the treatment effect and accelerating the treatment effect. In another embodiment, the third bearing part 2111 can also be arranged on the labial / buccal side. When arranged on the buccal side, the corresponding teeth are the teeth in the posterior tooth region, which is not easy to detect when the patient opens his mouth to speak and affects the aesthetics. Of course, the third bearing part 2111 can also be arranged on the labial side corresponding to the anterior tooth region, and can be used to accelerate the treatment of the teeth in the anterior tooth region. The above-mentioned various forms of arrangement can be selected according to the actual treatment needs of the patient. In addition, the third bearing part 2111 is arranged on each tooth corresponding to the shell-shaped tooth aligner 21, and can also be selectively arranged on the teeth that need to be accelerated.
[0087] In one embodiment, the vibration acceleration treatment device 22 and the optical acceleration treatment device 23 are integrated. In one embodiment, the vibration acceleration treatment device 22 and the optical acceleration treatment device 23 are optical fibers with vibration function, which are long and linear structures arranged in the third bearing part 2111. In a more preferred embodiment, the vibration acceleration treatment device 22 and the optical acceleration treatment device 23 are fixedly connected with the third bearing part 2111. This arrangement makes the relative position of the vibration acceleration treatment device 22 and the optical acceleration treatment device 23 with the third bearing part 2111 basically unchanged in different treatment steps of the whole treatment plan, and the acceleration treatment position is basically constant in the acceleration treatment process. In the process of tooth treatment and acceleration treatment, the acceleration treatment effect is balanced, the reconstruction of bone cells maintains a constant vibration effect, avoids deviation of the acceleration treatment from the treatment plan, and causes unpredictable treatment effect.
[0088] In one embodiment, as shown in FIG. 6, the vibration acceleration treatment device 22 and the optical acceleration treatment device 23 are arranged in the third bearing part 2111. Figure 13As shown, the vibration acceleration treatment device 22 comprises a vibrator 221 and a vibration transmission part 222, which is in the shape of a long strip and is arranged on the third bearing part 2111 along the bending direction of the third bearing part 2111. In one specific embodiment, one end of the vibration transmission part 222 is connected with the vibrator 221, and the other end is fixedly connected with the third bearing part 2111 through a plurality of fixed connection points, and the remaining part is not in contact with the third bearing part 2111. Specifically, the vibrator 221 is arranged on the third bearing part 2111 of the shell-shaped tooth aligner 21 corresponding to the wrapped single tooth, and the vibrator 221 transmits kinetic energy to the plurality of teeth through the vibration transmission part 222. This arrangement can reduce the number of vibrators 221 and reduce costs, while achieving simultaneous acceleration treatment of multiple teeth. In addition, the vibration transmission part 222 can set the vibration target position according to the actual treatment needs. For example, if the left posterior teeth need to be simultaneously treated for tooth acceleration, the vibrator 221 is arranged on the lingual side of the first molar, one end of the vibration transmission part 222 is connected to the mesial end of the vibrator 221, and the other end extends to the first premolar in the mesial direction. The vibration transmission part 222 is connected to the distal end of the vibrator 221 and extends to the second molar or the third molar in the distal direction, finally achieving the effect of simultaneous vibration acceleration treatment of the posterior teeth.
[0089] In one embodiment, the vibrator 221 is arranged adjacent to the gingival side of the shell-shaped tooth aligner. This arrangement makes the vibrator 121 / 221 more adjacent to the tooth root, which increases the activity of the cells around the alveolar bone. When the tooth crown receives vibration, it is transmitted to the tooth root, thereby causing osteoblasts and osteoclasts to reconstruct and accelerate the movement of the tooth root in the alveolar bone, thereby achieving the purpose of accelerated treatment.
[0090] In one embodiment, the vibration frequency of the vibrator 221 is 5-11 Hz. Within this range, the activity of osteoblasts and osteoclasts is highest when they are subjected to treatment forces, and patients wearing orthodontic devices with vibrators have less discomfort in the mouth. The vibration frequency is not too large to cause increased discomfort in the mouth, nor is it too small to achieve the effect of accelerated treatment.
[0091] In one embodiment, as shown in Figure 14 The vibration acceleration treatment device 22 comprises a vibration module 2201, a vibration communication module 2202, and a vibration control module 2203, and the vibration module 2201, the vibration communication module 2202, and the vibration control module 2203 are electrically connected. More specifically, the vibration control module 2203 controls the vibration of the vibration module 2201 and can also control the communication connection between the vibration communication module 2202 and the external processor. As shown in Figure 15As shown, the optical acceleration orthodontic device 23 comprises an optical module 2301, an optical communication module 2302 and an optical control module 2303; the optical module 2301, the optical communication module 2302 and the optical control module 2303 are electrically connected; more specifically, the optical control module 2303 controls the optical module 2301 to irradiate light, and can also control the optical communication module 2302 to be connected in communication with an external processor.
[0092] In one embodiment, the vibration communication module 2202 is wirelessly connected to an external processor for setting a vibration scheme of the vibration acceleration orthodontic device 22, and the vibration scheme at least includes a vibration frequency and a vibration time. The vibration frequency and the vibration time can be set according to the acceleration orthodontic requirements. The external processor can be an APP processing end on a mobile phone, for setting parameters such as when to start the vibration acceleration orthodontic treatment, the vibration time, the vibration mode, the vibration frequency, etc. The patient can adjust and set the parameters according to the actual orthodontic requirements and the vibration bearing degree. In addition, the vibration communication module 2202 can also collect the vibration time and the effect of the tooth acceleration movement under the vibration, and feed back the acceleration orthodontic information to the external processor. The acceleration orthodontic information is collected and summarized to obtain data accumulation of the acceleration orthodontic parameters under different case types. After classification according to the case types, the data can be provided to subsequent patients for providing guidance basis when the acceleration orthodontic treatment is performed.
[0093] In one embodiment, the optical communication module 2302 is wirelessly connected to an external processor for setting an irradiation scheme of the optical acceleration orthodontic device 23, and the irradiation scheme at least includes an irradiation wavelength and an irradiation time. The irradiation frequency and the irradiation time can be set according to the acceleration orthodontic requirements. The external processor can be an APP processing end on a mobile phone, for setting parameters such as when to start the irradiation acceleration orthodontic treatment, the irradiation time, the irradiation mode, the irradiation frequency, etc. The patient can adjust and set the parameters according to the actual orthodontic requirements and the irradiation bearing degree. In addition, the optical communication module 2202 can also collect the irradiation time and the effect of the tooth acceleration movement under the irradiation, and feed back the acceleration orthodontic information to the external processor. The acceleration orthodontic information is collected and summarized to obtain data accumulation of the acceleration orthodontic parameters under different case types. After classification according to the case types, the data can be provided to subsequent patients for providing guidance basis when the acceleration orthodontic treatment is performed.
[0094] In one embodiment, the vibration module 2201 and the optical module 2301 are activated simultaneously or at intervals. Specifically, the vibration module 2201 and the optical module 2301 can be activated simultaneously for vibration and light acceleration treatment, or the vibration acceleration treatment can be performed first and then the light acceleration treatment, or the light acceleration treatment can be performed first and then the vibration acceleration treatment, or the vibration acceleration treatment and the light acceleration treatment can be performed alternately, and the specific mode can be set according to the actual treatment needs of the patient, such as the treatment period, the treatment expression rate, etc.
[0095] In one embodiment, the vibration control module 2203 and the optical control module 2303 are the same control module. The same control module can control vibration and light, and achieve common and / or separate control of the on / off state, intensity, frequency, pulse, and / or other parameters of light. When performing orthodontic treatment or accelerating orthodontic treatment, the vibration acceleration treatment device and the optical acceleration treatment device can be used simultaneously according to the treatment needs, or one of the acceleration treatment modes can be selectively used. When the patient's oral environment is sensitive, the vibration acceleration treatment may
[0096] Although the specific embodiments of the present application are described above, those skilled in the art should understand that this is only an example, and the protection scope of the present application is defined by the appended claims. Those skilled in the art can make various changes or modifications to these embodiments without departing from the principles and essence of the present application, and such changes and modifications fall within the protection scope of the present application.
Claims
1. An orthodontic device, characterized by The application relates to a shell-shaped tooth appliance, a vibration acceleration appliance and an optical acceleration appliance, wherein the shell-shaped tooth appliance comprises a plurality of cavities accommodating a plurality of teeth, and the cavities have geometrical structures for gradually positioning the plurality of teeth from initial positions to target positions; a bearing part is arranged on the shell-shaped tooth appliance, and the vibration acceleration appliance and the optical acceleration appliance are borne on the bearing part; kinetic energy generated by vibration of the vibration acceleration appliance is conducted to the plurality of teeth through the shell-shaped tooth appliance, and the optical acceleration appliance generates light energy for emitting effective light for accelerating treatment to oral tissues of a patient. The bearing part comprises at least one first bearing part and at least one second bearing part, the first bearing part bears the vibration acceleration appliance, and is arranged on an outer surface of the shell-shaped tooth appliance, the vibration acceleration appliance is fixed on the first bearing part; the second bearing part bears the optical acceleration appliance, and two ends of the second bearing part are respectively partially connected to gum edges or adjacent gum edges of lingual sides of posterior tooth regions on left and right sides of the shell-shaped tooth appliance, the second bearing part is a plate-shaped structure similar to a curved arc of a palate, and the second bearing part is integrally formed with the shell-shaped tooth appliance; or The bearing part comprises at least one third bearing part, the third bearing part bears the vibration acceleration appliance and the optical acceleration appliance, and is arranged on an outer surface of the shell-shaped tooth appliance, the vibration acceleration appliance and the optical acceleration appliance are fixed on the third bearing part; the vibration acceleration appliance comprises a first vibrator and a first vibration conducting part, the first vibration conducting part is in a strip shape, and is arranged on the third bearing part in a curved direction of the third bearing part, and the third bearing part is integrally formed with the shell-shaped tooth appliance.
2. The orthodontic device of claim 1, wherein, The first bearing part is arranged on an outer surface of a buccal side of a posterior tooth region of the shell-shaped tooth appliance.
3. The orthodontic device of claim 2, wherein, The first bearing part and the second bearing part are respectively arranged on different teeth of the posterior tooth region of the shell-shaped tooth appliance.
4. The orthodontic device of claim 3, wherein, The first bearing part is arranged on a buccal side / lingual side of a first molar, a second molar or a third molar of the posterior tooth region of the shell-shaped tooth appliance, and two ends of the second bearing part are respectively partially connected to gum edges or adjacent gum edges of lingual sides of first premolars, second premolars, first molars, second molars or third molars of the posterior tooth regions on left and right sides of the shell-shaped tooth appliance.
5. The orthodontic device of claim 1, wherein, The first bearing part is arranged in two and symmetrically arranged on buccal sides / lingual sides of corresponding teeth of the posterior tooth regions on left and right sides of the shell-shaped tooth appliance.
6. The orthodontic device of claim 2, wherein, The first bearing part and the second bearing part are arranged on the same teeth of the posterior tooth region of the shell-shaped tooth appliance.
7. The orthodontic device of claim 6, wherein, The first bearing part is arranged at the labial / tongue side of the first premolar, the second premolar, the first molar, the second molar or the third molar in the posterior tooth area of the shell-shaped dental appliance; and the two ends of the second bearing part are respectively partially connected to the gum margin or the vicinity of the gum margin of the tongue side of the first premolar, the second premolar, the first molar, the second molar or the third molar in the left and right posterior tooth areas of the shell-shaped dental appliance.
8. The orthodontic device of claim 1, wherein, The first bearing part is a bubble structure formed on the outer surface of the shell-shaped dental appliance, and the vibration acceleration treatment device is at least partially accommodated in the bubble structure.
9. The orthodontic device of claim 1, wherein, The second bearing part is further provided with at least one reinforcing ridge similar to the curved arc of the second bearing part.
10. The orthodontic device of claim 9, wherein, The optical acceleration treatment device is fixed in the reinforcing ridge.
11. The orthodontic device of claim 10, wherein, The optical acceleration treatment device is a point light source, a line light source or a surface light source.
12. The orthodontic device of claim 11, wherein, The point light source, the line light source or the surface light source is an effective light source capable of emitting infrared light for accelerating treatment.
13. The orthodontic device of claim 12, wherein, The wavelength of the effective light is 620-1000 nm.
14. The orthodontic device of claim 11, wherein, The point light source comprises a patch LED, a light source module and an optical module connected in communication.
15. The orthodontic device of claim 14, wherein, The optical module is a lens, which adjusts the irradiation angle of the point light source.
16. The orthodontic device of claim 15, wherein, The irradiation angle of the point light source is 5-180°.
17. The orthodontic device of claim 11, wherein, The line light source comprises an LED light strip, a light source module and an optical module connected in communication.
18. The orthodontic device of claim 9, wherein, When the bearing part comprises at least one first bearing part and at least one second bearing part, the vibration acceleration treatment device comprises a second vibrator and a second vibration transmission part, the second vibrator is arranged in the first bearing part, and the second vibration transmission part is fixedly connected with the reinforcing ridge.
19. The orthodontic device of claim 18, wherein, One end of the second vibration transmission part is connected with the second vibrator, and the other end extends to the vibration target position through the reinforcing ridge.
20. The orthodontic device of claim 19, wherein, The second vibration transmission part is in the shape of a long strip and is arranged on the reinforcing ridge along the curved direction of the reinforcing ridge.
21. The orthodontic device of claim 20, wherein, The second vibration transmission part is fixedly connected with the reinforcing ridge through a plurality of fixed connection points, and the remaining part is not in contact with the reinforcing ridge.
22. The orthodontic device of claim 19, wherein, The second vibration transmission part is in the shape of a long strip and is arranged on the shell-shaped dental appliance along the dental arch direction of the shell-shaped dental appliance.
23. The orthodontic device of claim 18, wherein, The vibration frequency of the second vibrator is 5-11 Hz.
24. The orthodontic device of claim 1, wherein, The third bearing part is a bubble structure formed on the outer surface of the shell-shaped dental appliance, and the vibration acceleration treatment device and the optical acceleration treatment device are at least partially accommodated in the bubble structure.
25. The orthodontic device of claim 24, wherein, The third bearing part is arranged along the labial / buccal side dental arch and / or the lingual side dental arch of the shell-shaped dental appliance.
26. The orthodontic device of claim 1, wherein, The vibration acceleration treatment device and the optical acceleration treatment device are in an integrated structure.
27. The orthodontic device of claim 1, wherein, The vibration acceleration treatment device and the optical acceleration treatment device are fixedly connected with the third bearing part.
28. The orthodontic device of claim 1, wherein, One end of the first vibration transmission part is connected with the first vibrator, and the other end is fixedly connected with the third bearing part through a plurality of fixed connection points, and the remaining part is not in contact with the third bearing part.
29. The orthodontic device of claim 1, wherein, The first vibrator is arranged adjacent to one side of the gum margin of the shell-shaped dental appliance.
30. The orthodontic device of claim 1, wherein, The vibration frequency of the first vibrator is 5-11 Hz.
31. The orthodontic device of any one of claims 1-30, wherein, The vibration acceleration treatment device comprises a vibration module, a vibration communication module and a vibration control module, the vibration module, the vibration communication module and the vibration control module are electrically connected; the optical acceleration treatment device comprises an optical module, an optical communication module and an optical control module; the optical module, the optical communication module and the optical control module are electrically connected.
32. The orthodontic device of claim 31, wherein, The vibration communication module is wirelessly connected to an external processor for setting a vibration scheme of the vibration acceleration treatment device, and the vibration scheme at least comprises a vibration frequency and a vibration time.
33. The orthodontic device of claim 31, wherein, The optical communication module is wirelessly connected to an external processor for setting an optical illumination scheme of the optical acceleration treatment device, and the optical illumination scheme at least comprises an optical wavelength and an optical illumination time.
34. The orthodontic device of claim 31, wherein, The vibration module and the optical module are simultaneously or intermittently started.
35. The orthodontic device of claim 31, wherein, The vibration control module and the optical control module are the same control module.
Citation Information
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