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生物医学干预措施预防性传播 HIV 的采用。

Uptake of biomedical interventions for prevention of sexually transmitted HIV.

机构信息

Department of Infectious Diseases, Cleveland Clinic Foundation, Cleveland, Ohio, USA.

出版信息

Curr Opin HIV AIDS. 2011 Mar;6(2):114-8. doi: 10.1097/COH.0b013e328343ad7e.

Abstract

PURPOSE OF THE REVIEW

To examine the population-level effects of introducing and/or expanding biomedical interventions for prevention of human immunodeficiency virus (HIV) sexually transmitted infections through mathematical modeling.

RECENT FINDINGS

Successes of several ground-breaking clinical trials have invigorated the field of HIV prevention with new enthusiasm and opportunities for research into and application of biomedical HIV prevention. Mathematical modeling has advanced in tandem with valuable contributions to both investigative science and public health. New models provide qualitative and quantitative insights regarding the epidemiological impact of the uptake of biomedical interventions, singly and/or in combination including treatment of sexually transmitted infections, condom use, male circumcision, antiretroviral treatment and pre-exposure prophylaxis and vaccine for HIV prevention.

SUMMARY

Biomedical interventions are critical for reversing the HIV pandemic. Mathematical modeling is invaluable for informed biomedical HIV prevention research, policy and practice.

摘要

研究目的

通过数学建模,研究引入和/或扩大预防人类免疫缺陷病毒(HIV)性传播感染的生物医学干预措施对人群的影响。

最近的发现

几项开创性临床试验的成功为 HIV 预防领域注入了新的活力,为生物医学 HIV 预防的研究和应用提供了新的机会。随着对调查科学和公共卫生的宝贵贡献,数学建模也取得了进展。新模型提供了关于生物医学干预措施的采用对流行病学影响的定性和定量见解,包括治疗性传播感染、使用避孕套、男性包皮环切术、抗逆转录病毒治疗以及预防 HIV 的暴露前预防和疫苗。

总结

生物医学干预措施对于扭转 HIV 大流行至关重要。数学建模对于知情的生物医学 HIV 预防研究、政策和实践是非常宝贵的。

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