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原位龋模型。

In situ caries models.

作者信息

Zero D T

机构信息

Eastman Dental Center, Rochester, NY 14620, USA.

出版信息

Adv Dent Res. 1995 Nov;9(3):214-30; discussion 231-4. doi: 10.1177/08959374950090030501.

Abstract

By using in situ models, we have the potential to study both fundamental aspects of the caries process as well as more applied research problems such as the effect of food on dental caries and the role of fluoride in caries prevention in human subjects without actually causing caries in the natural dentition. The key experimental parameters that need to be considered in the development of an in situ model are the characteristics of the subject panel, the physical design of the model, the type of hard tissue substrate and the method of assessing mineral status, and the study design and clinical protocol. Each parameter must be carefully considered in relation to the objectives of the research, study design requirements, ethical considerations, impact on clinical relevance, and impact on the control of variation. The major source of variation associated with in situ models should be of biological and not experimental origin. The design and conduct of proper in situ model studies require a clear understanding of the caries process, sound analytical support, and a knowledge of how to work with research subjects to achieve a high level of compliance. Given the complex nature of caries, a combination of hard tissue substrates--including sound, surface-softened lesions and subsurface lesions--may be necessary to model all aspects of caries progression and prevention successfully. Internal validation of in situ models using fluoride dose-response controls is considered to be necessary for studies evaluating the efficacy of new fluoride dentifrice formulations.

摘要

通过使用原位模型,我们有潜力研究龋病过程的基本方面,以及更多应用研究问题,如食物对龋齿的影响和氟化物在人类受试者预防龋齿中的作用,而无需在天然牙列中实际引发龋齿。在开发原位模型时需要考虑的关键实验参数包括受试者小组的特征、模型的物理设计、硬组织基质的类型和评估矿物质状态的方法,以及研究设计和临床方案。必须根据研究目标、研究设计要求、伦理考量、对临床相关性的影响以及对变异控制的影响,仔细考虑每个参数。与原位模型相关的主要变异来源应是生物学的而非实验性的。进行适当的原位模型研究的设计和实施需要对龋病过程有清晰的理解、可靠的分析支持,以及了解如何与研究对象合作以实现高度的依从性。鉴于龋病的复杂性,可能需要结合硬组织基质——包括完好的、表面软化病变和表层下病变——来成功模拟龋齿进展和预防的各个方面。对于评估新型含氟牙膏配方功效的研究,使用氟化物剂量反应对照对原位模型进行内部验证被认为是必要的。

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