A Comparison of Two Mathematical Modeling Frameworks for Evaluating Sexually Transmitted Infection Epidemiology

被引:36
作者
Johnson, Leigh F. [1 ]
Geffen, Nathan [2 ]
机构
[1] Univ Cape Town, Ctr Infect Dis Epidemiol & Res, Anzio Rd, ZA-7925 Cape Town, South Africa
[2] Univ Cape Town, Ctr Social Sci Res, ZA-7925 Cape Town, South Africa
关键词
HIV-INFECTION; SOUTH-AFRICA; TRANSMISSION DYNAMICS; DISEASE TRANSMISSION; MOMENT CLOSURE; SPREAD; NETWORKS; CONCURRENCY; PREVALENCE; PREGNANCY;
D O I
10.1097/OLQ.0000000000000412
中图分类号
R51 [传染病];
学科分类号
100401 ;
摘要
Background Different models of sexually transmitted infections (STIs) can yield substantially different conclusions about STI epidemiology, and it is important to understand how and why models differ. Frequency-dependent models make the simplifying assumption that STI incidence is proportional to STI prevalence in the population, whereas network models calculate STI incidence more realistically by classifying individuals according to their partners' STI status. Methods We assessed a deterministic frequency-dependent model approximation to a microsimulation network model of STIs in South Africa. Sexual behavior and demographic parameters were identical in the 2 models. Six STIs were simulated using each model: HIV, herpes, syphilis, gonorrhea, chlamydia, and trichomoniasis. Results For all 6 STIs, the frequency-dependent model estimated a higher STI prevalence than the network model, with the difference between the 2 models being relatively large for the curable STIs. When the 2 models were fitted to the same STI prevalence data, the best-fitting parameters differed substantially between models, with the frequency-dependent model suggesting more immunity and lower transmission probabilities. The fitted frequency-dependent model estimated that the effects of a hypothetical elimination of concurrent partnerships and a reduction in commercial sex were both smaller than estimated by the fitted network model, whereas the latter model estimated a smaller impact of a reduction in unprotected sex in spousal relationships. Conclusions The frequency-dependent assumption is problematic when modeling short-term STIs. Frequency-dependent models tend to underestimate the importance of high-risk groups in sustaining STI epidemics, while overestimating the importance of long-term partnerships and low-risk groups.
引用
收藏
页码:139 / 146
页数:8
相关论文
共 40 条
[1]   Transmission of Chlamydia trachomatis through sexual partnerships: a comparison between three individual-based models and empirical data [J].
Althaus, Christian L. ;
Turner, Katherine M. E. ;
Schmid, Boris V. ;
Heijne, Janneke C. M. ;
Kretzschmar, Mirjam ;
Low, Nicola .
JOURNAL OF THE ROYAL SOCIETY INTERFACE, 2012, 9 (66) :136-146
[2]   A moment closure model for sexually transmitted disease transmission through a concurrent partnership network [J].
Bauch, C ;
Rand, DA .
PROCEEDINGS OF THE ROYAL SOCIETY B-BIOLOGICAL SCIENCES, 2000, 267 (1456) :2019-2027
[3]   A versatile ODE approximation to a network model for the spread of sexually transmitted diseases [J].
Bauch, CT .
JOURNAL OF MATHEMATICAL BIOLOGY, 2002, 45 (05) :375-395
[4]   Comparative Effectiveness of HIV Testing and Treatment in Highly Endemic Regions [J].
Bendavid, Eran ;
Brandeau, Margaret L. ;
Wood, Robin ;
Owens, Douglas K. .
ARCHIVES OF INTERNAL MEDICINE, 2010, 170 (15) :1347-1354
[5]   Model-Based Estimation of Viral Transmissibility and Infection-Induced Resistance From the Age-Dependent Prevalence of Infection for 14 High-Risk Types of Human Papillomavirus [J].
Bogaards, Johannes A. ;
Xiridou, Maria ;
Coupe, Veerle M. H. ;
Meijer, Chris J. L. M. ;
Wallinga, Jacco ;
Berkhof, Johannes .
AMERICAN JOURNAL OF EPIDEMIOLOGY, 2010, 171 (07) :817-825
[6]   Understanding the modes of transmission model of new HIV infection and its use in prevention planning [J].
Case, Kelsey K. ;
Ghys, Peter D. ;
Gouws, Eleanor ;
Eaton, Jeffrey W. ;
Borquez, Annick ;
Stover, John ;
Cuchi, Paloma ;
Abu-Raddad, Laith J. ;
Garnett, Geoffrey P. ;
Hallett, Timothy B. .
BULLETIN OF THE WORLD HEALTH ORGANIZATION, 2012, 90 (11) :831-838
[7]   Mind the gap: The role of time between sex with two consecutive partners on the transmission dynamics of gonorrhea [J].
Chen, Mark I. ;
Ghani, Azra C. ;
Edmunds, John .
SEXUALLY TRANSMITTED DISEASES, 2008, 35 (05) :435-444
[8]   Analysis and simulation of a stochastic, discrete-individual model of STD transmission with partnership concurrency [J].
Chick, SE ;
Adams, AL ;
Koopman, JS .
MATHEMATICAL BIOSCIENCES, 2000, 166 (01) :45-68
[9]   EPIDEMIOLOGICAL MODELS FOR SEXUALLY-TRANSMITTED DISEASES [J].
DIETZ, K ;
HADELER, KP .
JOURNAL OF MATHEMATICAL BIOLOGY, 1988, 26 (01) :1-25
[10]   Modeling dynamic and network heterogeneities in the spread of sexually transmitted diseases [J].
Eames, KTD ;
Keeling, MJ .
PROCEEDINGS OF THE NATIONAL ACADEMY OF SCIENCES OF THE UNITED STATES OF AMERICA, 2002, 99 (20) :13330-13335