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1. Accelerating Progress Towards the 2030 Neglected Tropical Diseases Targets: How Can Quantitative Modeling Support Programmatic Decisions?

2. District-Level Forecast of Achieving Trachoma Elimination as a Public Health Problem By 2030: An Ensemble Modelling Approach.

3. Evaluating and mitigating the potential indirect effect of COVID-19 on control programmes for seven neglected tropical diseases: a modelling study.

4. Forecasting Trachoma Control and Identifying Transmission-Hotspots.

5. Predicted Impact of COVID-19 on Neglected Tropical Disease Programs and the Opportunity for Innovation

6. Implications of the COVID-19 pandemic in eliminating trachoma as a public health problem

7. Modelling trachoma post-2020: opportunities for mitigating the impact of COVID-19 and accelerating progress towards elimination

10. Evaluating and mitigating the potential indirect effect of COVID-19 on control programmes for seven neglected tropical diseases: a modelling study

11. Accelerating Progress Towards the 2030 Neglected Tropical Diseases Targets: How Can Quantitative Modeling Support Programmatic Decisions?

12. Accelerating Progress Towards the 2030 Neglected Tropical Diseases Targets:How Can Quantitative Modeling Support Programmatic Decisions?

13. Prevalence and distribution of schistosomiasis in human, livestock, and snail populations in northern Senegal: a One Health epidemiological study of a multi-host system

14. Multihost Transmission of Schistosoma mansoni in Senegal, 2015-2018

18. Sensitivity and specificity of human point-of-care circulating cathodic antigen (POC-CCA) test in African livestock for rapid diagnosis of schistosomiasis: A Bayesian latent class analysis

21. Contact tracing is an imperfect tool for controlling COVID-19 transmission and relies on population adherence

22. Sensitivity and specificity of human point-of-care circulating cathodic antigen (POC-CCA) test in African livestock for rapid diagnosis of schistosomiasis: a Bayesian latent class analysis

23. Evaluating and mitigating the potential indirect effect of COVID-19 on control programmes for seven neglected tropical diseases:a modelling study

25. Contact tracing is an imperfect tool for controlling COVID-19 transmission and relies on population adherence

26. Hybridized Zoonotic Schistosoma Infections Result in Hybridized Morbidity Profiles: A Clinical Morbidity Study amongst Co-Infected Human Populations of Senegal

27. Letter-accompanying-Phil-Trans-B-resubmission from Dynamics of SARS-CoV-2 with waning immunity in the UK population

28. Engagement and adherence trade-offs for SARS-CoV-2 contact tracing

29. Dynamics of SARS-CoV-2 with waning immunity in the UK population

32. Predicted Impact of COVID-19 on Neglected Tropical Disease Programs and the Opportunity for Innovation

33. Engagement and adherence trade-offs for SARS-CoV-2 contact tracing

34. Dynamics of SARS-CoV-2 with Waning Immunity in the UK Population

35. An imperfect tool: contact tracing could provide valuable reductions in COVID-19 transmission if good adherence can be achieved and maintained.

38. Opportunities and challenges for modelling epidemiological and evolutionary dynamics in a multihost, multiparasite system: Zoonotic hybrid schistosomiasis in West Africa.

39. Contact tracing is an imperfect tool for controlling COVID-19 transmission and relies on population adherence

40. Contact tracing is an imperfect tool for controlling COVID-19 transmission and relies on population adherence.

41. Implications of the COVID-19 pandemic on eliminating trachoma as a public health problem.

42. Who acquires infection from whom and how? Disentangling multi-host and multi-mode transmission dynamics in the 'elimination' era.

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