托架、表位和闪存卡:临床正畸的未来观。

Q Medicine
Australian Orthodontic Journal Pub Date : 2017-02-01
Milton R Sims
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引用次数: 0

摘要

正畸仍然是一个专业锚定在传统技术使用器具,引起炎症牙周韧带(PDL)反应。现有的基于组织观察和物理原理应用的生物牙齿运动概念需要重新评估。在下一个千年,基因组革命和蛋白质生产和控制的知识可能导致牙面畸形的基因矫正和无痛的,错颌矫正和长期稳定的生物分子方法。一个根本性的变化可能是支架系统的废除,取而代之的是由计算机驱动的预编程微芯片,以及通过药物靶向控制血管和细胞。这个行业未来的生存将取决于一个完全不同的专家,他们将接受基于分子生物学和计算机工程的研究生课程的教育。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Brackets, epitopes and flash memory cards: a futuristic view of clinical orthodontics.

Orthodontics continues to be a profession anchored in traditional technology using appliances that cause inflammatory periodontal ligament (PDL) responses. Existing concepts of biological tooth movement based largely on histological tissue observations and the application of physical principles require major reassessment. In the next millennium, the genome revolution and knowledge of protein production and control could lead to the genetic correction of dentofacial anomalies and pain-free, biomolecular methods of malocclusion correction and long-term stability. A fundamental change is likely to be the abolition of bracket systems and their replacement with preprogrammed microchips driven by computers, and the control of PD[ blood vessels and cells by pharmacological targeting. Future survival of the profession will depend on a radically different specialist who will be educated with a postgraduate curriculum based on molecular biology and computer engineering.

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来源期刊
Australian Orthodontic Journal
Australian Orthodontic Journal DENTISTRY, ORAL SURGERY & MEDICINE-
CiteScore
0.48
自引率
0.00%
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0
审稿时长
>12 weeks
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