Force decay of orthodontic elastomeric chains: A systematic review

Abrar Younus A, Vaishnavi S Kayarkar, Swapnil B Wankhade, Amol A. Verulkar, A. Padmanaban, Sara R. Bhurani
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Abstract

In orthodontic therapy elastics and elastomeric chains are commonly used as an active component. These synthetic elastic materials are not supposed to be ideal, as they are sensitive to prolonged exposure to saliva, water, enzymes, temperature variations and external factors. The main disadvantage of elastomeric auxiliaries is their inability to sustain the delivered force for an extended period of time. The objective of this review is to determine the time taken by the elastomeric chains force to degrade after stretching and to assess oral environment and external factors affect the decay force of elastomeric chains. Databases such as PubMed, Medline, and the Cochrane Library are searched electronically. Additional sources (Google Scholar, clinicaltrails.gov) were manually searched for additional trials or protocols until December 2021 Studies involving in vitro and in vivo exposure of elastomeric chains in various factors like, temperature, saliva, beverages, food, paste, mouthwash, etc were included. 18 studies included primarily focused on the force decay in E-chains and also the associated external factors. The force decay of the Elastomeric chains was affected by time, temperature and environment. The force decay of the elastomeric chains was affected by time, temperature, and environment. The greatest effect on the elastomeric chain is shown by temperature. Force loss increased with increasing temperature, as expected of a viscoelastic material. 
正畸弹性链的力衰减:系统回顾
在正畸治疗中,弹性材料和弹性体链通常被用作活性成分。这些合成弹性材料不应该是理想的,因为它们对长时间暴露于唾液、水、酶、温度变化和外部因素很敏感。弹性体助剂的主要缺点是它们不能长时间维持交付的力。本综述的目的是确定拉伸后弹性链力降解所需的时间,并评估口腔环境和外部因素对弹性链衰变力的影响。PubMed、Medline和Cochrane图书馆等数据库都是通过电子方式检索的。其他来源(Google Scholar, clinicaltrails.gov)手动搜索到2021年12月之前的其他试验或方案,包括涉及弹性体链在体外和体内暴露的各种因素的研究,如温度、唾液、饮料、食品、膏剂、漱口水等。包括18项研究,主要关注e链中的力衰减以及相关的外部因素。弹性链的力衰减受时间、温度和环境的影响。弹性链的力衰减受时间、温度和环境的影响。温度对弹性体链的影响最大。力损失随着温度的升高而增加,正如粘弹性材料所预期的那样。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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