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评价不同壳层厚度的 3D 打印模型制取的热成型修复体的尺寸精度:一项体外研究。

Evaluation of the dimensional accuracy of thermoformed appliances taken from 3D printed models with varied shell thicknesses: An in vitro study.

机构信息

The University of Texas Health Science Center at Houston School of Dentistry, Department of Orthodontics, 7500 Cambridge Street, Suite 5130, Houston, Texas 77054, USA.

The University of Texas Health Science Center at Houston School of Dentistry, Department of Restorative Dentistry and Prosthodontics, 7500 Cambridge Street, Suite 5350, Houston, Texas 77054, USA.

出版信息

Int Orthod. 2021 Mar;19(1):137-146. doi: 10.1016/j.ortho.2021.01.005. Epub 2021 Feb 4.

Abstract

OBJECTIVE

Clinicians make numerous decisions when 3D printing models for fabrication of thermoformed appliances, including printing solid or hollow models. While hollow models can reduce resin use, models intended for thermoformed appliance fabrication must be printed with sufficient thickness to withstand thermoforming. The aim of the study was to determine for hollow 3D printed orthodontic models if there is an effect of shell thickness on the dimensional accuracy of retainers thermoformed upon them as compared with solid models and, if so, to identify the minimum shell thickness that ensures dimensional accuracy of the thermoformed retainer under the conditions investigated.

MATERIAL AND METHODS

Thermoformed appliances were fabricated on 3D printed models of six shell thicknesses: 1.0mm, 1.5mm, 2.0mm, 2.5mm, 3.0mm, and solid (n=10/group). The models were scanned before and after thermoforming. Thermoformed appliances were captured by two methods: scanning a polyvinylsiloxane casting of the appliance and scanning the appliance interior surface (intaglio surface). Each model-appliance pair was compared using superimposition software. A generalized linear model and post-hoc Tukey contrasts (α=0.05) were applied to compare each thickness.

RESULTS

Model thickness has a statistically significant effect on dimensional accuracy of thermoformed appliances. Appliances fabricated on 1.0mm and 1.5mm models displayed poor accuracy, with a statistically significantly lower percentage of data points within tolerance (±0.250mm) than appliances fabricated on models printed at 2.0mm thickness and greater.

CONCLUSIONS

3D printed model thickness affects the dimensional accuracy of a thermoformed retainer. To ensure minimal deformation and promote clinical utility of the thermoformed appliance, models should be printed with a minimum shell thickness of 2.0mm for the materials investigated.

摘要

目的

当为热成型器械制作 3D 打印模型时,临床医生会做出许多决策,包括打印实心或空心模型。虽然空心模型可以减少树脂的使用,但用于热成型器械制作的模型必须打印足够的厚度以承受热成型。本研究的目的是确定空心 3D 打印正畸模型的壳层厚度对热成型后保持器的尺寸精度是否有影响,与实心模型相比,如果有影响,那么确定在研究条件下确保热成型保持器尺寸精度的最小壳层厚度。

材料和方法

在六种壳层厚度的 3D 打印模型上制作热成型器械:1.0mm、1.5mm、2.0mm、2.5mm、3.0mm 和实心(每组 n=10)。模型在热成型前后进行扫描。通过两种方法捕获热成型器械:扫描器械的聚硅氧烷铸造物和扫描器械的内表面(凹面)。使用叠加软件对每个模型-器械对进行比较。应用广义线性模型和事后 Tukey 对比(α=0.05)来比较每个厚度。

结果

模型厚度对热成型器械的尺寸精度有统计学显著影响。在 1.0mm 和 1.5mm 模型上制作的器械准确性较差,与在 2.0mm 及以上厚度模型上制作的器械相比,在公差范围内(±0.250mm)的数据点比例统计学显著较低。

结论

3D 打印模型厚度会影响热成型保持器的尺寸精度。为了确保最小变形并促进热成型器械的临床应用,对于所研究的材料,模型应至少打印 2.0mm 的最小壳层厚度。

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