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Orthodontic arch wire variable radius circular domain division method based on bending point density

An orthodontic arch wire and point density technology, which is applied in the fields of arch wire, orthodontics, medical science, etc. consider, etc.

Active Publication Date: 2020-08-28
HARBIN UNIV OF SCI & TECH
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  • Summary
  • Abstract
  • Description
  • Claims
  • Application Information

AI Technical Summary

Problems solved by technology

[0003] In the process of bending the personalized orthodontic archwire by the robot, there may be interference between the personalized orthodontic archwire and the robot's bending claw. Afterwards, it will greatly affect the bending accuracy of the personalized orthodontic arch wire, and then affect the correction effect, so that the bent personalized orthodontic arch wire cannot be applied to clinical treatment; In the process of wire bending, the forward bending means that the unbent orthodontic arch wire is bent into a complex shaped arch wire. The interference is often caused by the unreasonable bending sequence of the forming control points, while the reasonable forward bending The bending sequence of forming control points can effectively avoid the occurrence of interference, and obtaining a reasonable bending sequence of forming control points in forward bending is a necessary prerequisite for realizing digital bending of orthodontic archwires. However, the current orthodontic archwire bending technology The field lacks a method for planning the bending sequence of the control points of the forward bending, and it is difficult to realize the digital bending of orthodontic archwires
[0004] For the research on the division method of orthodontic arch wire bending planning, it is proposed in the invention patent "A Method of Circular Domain Division for Orthodontic Arch Wire Bending Planning" authorized by the inventor with the authorization announcement number CN107647925B A method of equal-radius circle domain division, which divides the area on the orthodontic archwire curve, and finally sorts each area, so as to obtain the bending order of the final bending point, although this method has no effect on the orthodontic archwire curve. However, because this method only divides the orthodontic archwire curve with an unfounded uniform standard, there are usually too many or too small bending points in the divided circular area. In some cases, the divided interval does not fully consider the individual characteristics of the distribution information of the bending points on the orthodontic archwire curve. For example, the bending points on the patient's personalized orthodontic archwire often have difficulty in bending each bending point. are relatively small, and the angle-to-angle ratio of each bending point is less than the specified upper limit, that is, the bending point distribution of the arch wire has special properties. When dividing, the existing orthodontic archwire forming control point bending sequence planning method is not reasonable, and it is impossible to realize efficient digital bending for this kind of personalized orthodontic archwire, so that it cannot effectively avoid the failure caused by unreasonable bending sequence planning. The bending robot produces void motions, mutual interference during the bending process, and complex bending movements, which is not conducive to maximizing the advantages of the bending robot and cannot significantly improve the bending efficiency.

Method used

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  • Orthodontic arch wire variable radius circular domain division method based on bending point density
  • Orthodontic arch wire variable radius circular domain division method based on bending point density
  • Orthodontic arch wire variable radius circular domain division method based on bending point density

Examples

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Effect test

Embodiment 1

[0045] Example 1: as figure 1 , figure 2 , image 3 As shown, this specific embodiment adopts the following technical solutions: a method for dividing a variable radius circle domain of an orthodontic archwire based on the density of bending points, and the specific implementation process of the method is as follows:

[0046] Step 1. Data import of variable radius circle domain division and orthodontic archwire curve conversion:

[0047] Calculate and input the orthodontic archwire curve bending point information set T={t according to the orthodontic archwire curve of the patient with i bending points 1 , t 2 , t 3 , ..., t i}, t i =(x i , y i ,z i )' is the coordinate of the bending point of each orthodontic archwire curve, at each bending point t i The upper robot performs different bending movements, and each orthodontic archwire curve bending point t i Both correspond to a bending point robot bending information unit r i , the robot bending information set of ...

Embodiment 2

[0073] Example 2: as figure 2 , image 3 As shown, in a personalized orthodontic archwire curve containing i=22 bending points, in the process of planning the orthodontic archwire bending sequence based on the bending point density of the orthodontic archwire variable radius circle domain division, it is assumed that The final number of bending circles with reasonable density is n=9, and the number of bending points in each circle is Calculate each reasonable density bending circle in step 6 (a 1 , a 2 , ..., a n ) circle bending point density Obtain the information set of bending point density in circular domain Comparing the bending point densities of the bending circles of various reasonable densities, there is Bend point density with circular domain Arrange the n circular domains in descending order for the index, so as to obtain the information set of curved circular domains with reasonable density in descending order as A 1 ={a 3 , a 1 , a 9 , a 7 , a...

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Abstract

The invention discloses an orthodontic arch wire variable radius circular domain division method based on bending point density, relates to the technical field of orthodontic arch wire bending. Aimingat an orthodontic arch wire curve with relatively small bending point angular distance ratio, based on an orthodontic arch wire curve bending point information set and a robot bending information setof bending points, and in combination of the motion characteristics of a robot bending orthodontic arch wire, the orthodontic arch wire variable radius circular domain division method based on the bending point density is established. The method is technically characterized by comprising the following steps of converting an orthodontic arch wire curve T into a plane curve T'; performing setting and simplifying on circular domain limiting parameters; determining the radius and the circle center of the divided circular domain; defining a bending circular domain with a reasonable density; judging whether circular domain division is continued or not; and by taking the density of the bending points of the circular domain as an index, arranging the circular domains in a descending order, specifying the bending point sequence of the circular domains, and outputting the final bending point bending sequence T1 and R1. According to the method, the variable radius circular domain is used for dividing, the density of the bending points is used as a judgment condition, the orthodontic arch wire bending planning efficiency can be improved, and the problem of interference in the orthodontic archwire bending process of a robot is avoided.

Description

technical field [0001] The patent of the present invention relates to a method for dividing circles with variable radius of an orthodontic archwire based on bending point density, and belongs to the technical field of orthodontic archwire bending. Background technique [0002] Malocclusion is the third largest oral disease that endangers human health, showing a high incidence rate. In modern stomatology, fixed orthodontics is a commonly used and effective orthodontic treatment, and the bending of orthodontic archwires is a fixed In recent years, the key to orthodontic technology has been deeply influenced by digital manufacturing technology. The traditional oral manufacturing process is undergoing revolutionary changes. The field of orthodontics is also benefiting from digital technology. The processing of arch wires in orthodontic appliances is becoming digital. develop. [0003] In the process of bending the personalized orthodontic archwire by the robot, there may be int...

Claims

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Application Information

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IPC IPC(8): A61C7/20A61C7/02
CPCA61C7/002A61C7/026A61C7/20
Inventor 姜金刚吴殿昊曾阳闵兆伟郭亚峰张永德
Owner HARBIN UNIV OF SCI & TECH
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