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表面处理对正畸弹性直丝弓的物理性能和生物相容性的影响。

Surface Treatment on Physical Properties and Biocompatibility of Orthodontic Power Chains.

机构信息

School of Dentistry, College of Oral Medicine, Taipei Medical University, Taipei, Taiwan.

Department of Dentistry, Taipei Medical University Hospital, Taipei, Taiwan.

出版信息

Biomed Res Int. 2017;2017:6343724. doi: 10.1155/2017/6343724. Epub 2017 Apr 30.

Abstract

The conventional orthodontic power chain, often composed of polymer materials, has drawbacks such as a reduction of elasticity owing to water absorption as well as surface discoloration and staining resulting from food or beverages consumed by the patient. The goal of this study was to develop a surface treatment (nanoimprinting) for orthodontic power chains and to alleviate their shortcomings. A concave template (anodic alumina) was manufactured by anodization process using pure aluminum substrate by employing the nanoimprinting process. Convex nanopillars were fabricated on the surface of orthodontic power chains, resulting in surface treatment. Distinct parameters of the nanoimprinting process (e.g., imprinting temperature, imprinting pressure, imprinting time, and demolding temperature) were used to fabricate nanopillars on the surface of orthodontic power chains. The results of this study showed that the contact angle of the power chains became larger after surface treatment. In addition, the power chains changed from hydrophilic to hydrophobic. The power chain before surface treatment without water absorption had a water absorption rate of approximately 4%, whereas a modified chain had a water absorption rate of approximately 2%-4%. Furthermore, the color adhesion of the orthodontic power chains after surface modification was less than that before surface modification.

摘要

传统的正畸弹力线通常由聚合物材料组成,存在一些缺点,例如由于吸水而导致弹性降低,以及由于患者食用的食物或饮料而导致表面变色和染色。本研究的目的是开发一种正畸弹力线的表面处理(压印)方法,以减轻其缺点。通过使用纯铝基底的阳极氧化工艺制造凹模板(氧化铝),采用纳米压印工艺制造。在正畸弹力线表面制造出凸纳米柱,从而进行表面处理。使用纳米压印工艺的不同参数(例如,压印温度、压印压力、压印时间和脱模温度)在正畸弹力线表面制造纳米柱。研究结果表明,表面处理后,弹力线的接触角变大。此外,弹力线由亲水变为疏水。未经表面处理的弹力线在吸水前的吸水率约为 4%,而改性后的弹力线的吸水率约为 2%-4%。此外,表面改性后的正畸弹力线的颜色附着力小于表面改性前的颜色附着力。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/4788/5429950/33eb1bae0862/BMRI2017-6343724.001.jpg

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