Epidemiology of soil transmitted helminths and risk analysis of hookworm infections in the community: Results from the DeWorm3 Trial in southern India
暂无分享,去创建一个
G. Kang | R. Anderson | R. Pullan | J. Muliyil | J. Walson | R. Sarkar | W. Oswald | S. Ajjampur | D. Abraham | K. Ásbjörnsdóttir | K. Halliday | S. Galagan | K. Aruldas | Anuradha Rose | S. Kaliappan | D. Kennedy | M. Manuel | J. Farzana | S. Laxmanan | Gokila Palanisamy | Sean R. Galagan | Rajiv Sarkar
[1] DeWorm Trials Team. Baseline patterns of infection in regions of Benin, Malawi and India seeking to interrupt transmission of soil transmitted helminths (STH) in the DeWorm3 trial , 2020, PLoS neglected tropical diseases.
[2] William E Oswald,et al. Development and application of an electronic treatment register: a system for enumerating populations and monitoring treatment during mass drug administration , 2020, Global health action.
[3] I. Ray,et al. Understanding Open Defecation in the Age of Swachh Bharat Abhiyan: Agency, Accountability, and Anger in Rural Bihar , 2020, International journal of environmental research and public health.
[4] G. Kang,et al. Prediction of hookworm prevalence in southern India using environmental parameters derived from Landsat 8 remotely sensed data. , 2019, International journal for parasitology.
[5] D. Taylor-Robinson,et al. Public health deworming programmes for soil‐transmitted helminths in children living in endemic areas , 2019, The Cochrane database of systematic reviews.
[6] William E. Oswald,et al. Community-level epidemiology of soil-transmitted helminths in the context of school-based deworming: Baseline results of a cluster randomised trial on the coast of Kenya , 2019, PLoS neglected tropical diseases.
[7] J. Utzinger,et al. Risk profiling of soil-transmitted helminth infection and estimated number of infected people in South Asia: A systematic review and Bayesian geostatistical Analysis , 2019, PLoS neglected tropical diseases.
[8] Howard H. Chang,et al. Assessing longer-term effectiveness of a combined household-level piped water and sanitation intervention on child diarrhoea, acute respiratory infection, soil-transmitted helminth infection and nutritional status: a matched cohort study in rural Odisha, India , 2019, International journal of epidemiology.
[9] S. Brooker,et al. Effects, equity, and cost of school-based and community-wide treatment strategies for soil-transmitted helminths in Kenya: a cluster-randomised controlled trial , 2019, The Lancet.
[10] Gail M. Williams,et al. WASH for WORMS: A Cluster-Randomized Controlled Trial of the Impact of a Community Integrated Water, Sanitation, and Hygiene and Deworming Intervention on Soil-Transmitted Helminth Infections. , 2019, The American journal of tropical medicine and hygiene.
[11] L. Coffeng,et al. Predicted short and long-term impact of deworming and water, hygiene, and sanitation on transmission of soil-transmitted helminths , 2018, PLoS neglected tropical diseases.
[12] Tadele Girum,et al. The Effect of Deworming School Children on Anemia Prevalence: A Systematic Review and Meta-Analysis , 2018, The open nursing journal.
[13] J. Walson,et al. Intervention strategies to reduce the burden of soil-transmitted helminths in India , 2018, The Indian journal of medical research.
[14] Christine M Pfeiffer,et al. Biomarkers of Nutrition for Development (BOND)-Iron Review. , 2018, The Journal of nutrition.
[15] J. Andrews,et al. Deworming in pre-school age children: A global empirical analysis of health outcomes , 2018, PLoS neglected tropical diseases.
[16] P. Suntaravitun,et al. Prevalence of Intestinal Parasites and Associated Risk Factors for Infection among Rural Communities of Chachoengsao Province, Thailand , 2018, The Korean journal of parasitology.
[17] G. Kang,et al. Assessing the feasibility of interrupting the transmission of soil-transmitted helminths through mass drug administration: The DeWorm3 cluster randomized trial protocol , 2018, PLoS neglected tropical diseases.
[18] Bryan J Weiner,et al. Evaluating the sustainability, scalability, and replicability of an STH transmission interruption intervention: The DeWorm3 implementation science protocol , 2018, PLoS neglected tropical diseases.
[19] G. Kang,et al. Geographical distribution of soil transmitted helminths and the effects of community type in South Asia and South East Asia – A systematic review , 2018, PLoS neglected tropical diseases.
[20] Eskindir Loha,et al. Prevalence of anemia and associated factors among pregnant women in Southern Ethiopia: A community based cross-sectional study , 2017, PloS one.
[21] S. Dutta,et al. High prevalence of soil-transmitted helminth infections among primary school children, Uttar Pradesh, India, 2015 , 2017, Infectious Diseases of Poverty.
[22] J. Utzinger,et al. Estimating sensitivity of the Kato-Katz technique for the diagnosis of Schistosoma mansoni and hookworm in relation to infection intensity , 2017, PLoS neglected tropical diseases.
[23] L. Moja,et al. Preventive chemotherapy to control soil-transmitted helminth infections in at-risk population groups : guideline , 2017 .
[24] Jennifer R. Herricks,et al. The global burden of disease study 2013: What does it mean for the NTDs? , 2017, PLoS neglected tropical diseases.
[25] Marvin N. Wright,et al. SoilGrids250m: Global gridded soil information based on machine learning , 2017, PloS one.
[26] S. Doi,et al. Differential effect of mass deworming and targeted deworming for soil-transmitted helminth control in children: a systematic review and meta-analysis , 2017, The Lancet.
[27] G. Kang,et al. Study design and baseline results of an open-label cluster randomized community-intervention trial to assess the effectiveness of a modified mass deworming program in reducing hookworm infection in a tribal population in southern India , 2016, Contemporary clinical trials communications.
[28] John E. O. Williams,et al. Impact of combined intermittent preventive treatment of malaria and helminths on anaemia, sustained attention, and recall in Northern Ghanaian schoolchildren , 2016, Global health action.
[29] J. McCarthy,et al. Improved PCR-Based Detection of Soil Transmitted Helminth Infections Using a Next-Generation Sequencing Approach to Assay Design , 2016, PLoS neglected tropical diseases.
[30] Nobhojit Roy,et al. Global, regional, and national disability-adjusted life years (DALYs) for 306 diseases and injuries and healthy life expectancy (HALE) for 188 countries, 1990–2013: quantifying the epidemiological transition , 2015, The Lancet.
[31] S. Brooker,et al. Should the Goal for the Treatment of Soil Transmitted Helminth (STH) Infections Be Changed from Morbidity Control in Children to Community-Wide Transmission Elimination? , 2015, PLoS neglected tropical diseases.
[32] M. Boivin,et al. Prenatal Hemoglobin Levels and Early Cognitive and Motor Functions of One-Year-Old Children , 2015, Pediatrics.
[33] Sarman Singh,et al. The Epidemiology of Soil-Transmitted Helminths in Bihar State, India , 2015, PLoS neglected tropical diseases.
[34] J. Utzinger,et al. Risk Profiling of Hookworm Infection and Intensity in Southern Lao People’s Democratic Republic Using Bayesian Models , 2015, PLoS neglected tropical diseases.
[35] B. Babu,et al. Coverage of, and compliance with, mass drug administration under the programme to eliminate lymphatic filariasis in India: a systematic review. , 2014, Transactions of the Royal Society of Tropical Medicine and Hygiene.
[36] Matthew C. Freeman,et al. Water, Sanitation, Hygiene, and Soil-Transmitted Helminth Infection: A Systematic Review and Meta-Analysis , 2014, PLoS medicine.
[37] G. Kang,et al. Prevalence & risk factors for soil transmitted helminth infection among school children in south India , 2014, The Indian journal of medical research.
[38] G. Kang,et al. Prevalence and clustering of soil‐transmitted helminth infections in a tribal area in southern India , 2013, Tropical medicine & international health : TM & IH.
[39] U. Mansmann,et al. Hookworm Infection and Environmental Factors in Mbeya Region, Tanzania: A Cross-Sectional, Population-Based Study , 2013, PLoS neglected tropical diseases.
[40] J. Utzinger,et al. Soil-Transmitted Helminth Reinfection after Drug Treatment: A Systematic Review and Meta-Analysis , 2012, PLoS neglected tropical diseases.
[41] B. Brabin,et al. Real-time PCR Demonstrates Ancylostoma duodenale Is a Key Factor in the Etiology of Severe Anemia and Iron Deficiency in Malawian Pre-school Children , 2012, PLoS neglected tropical diseases.
[42] S. Brooker,et al. Spatial and Genetic Epidemiology of Hookworm in a Rural Community in Uganda , 2010, PLoS neglected tropical diseases.
[43] Simon Brooker,et al. Human Helminth Co-Infection: Analysis of Spatial Patterns and Risk Factors in a Brazilian Community , 2008, PLoS neglected tropical diseases.
[44] J. Utzinger,et al. Diagnosis of Soil-Transmitted Helminths in the Era of Preventive Chemotherapy: Effect of Multiple Stool Sampling and Use of Different Diagnostic Techniques , 2008, PLoS neglected tropical diseases.
[45] S. Pocock,et al. The Strengthening the Reporting of Observational Studies in Epidemiology (STROBE) statement: guidelines for reporting observational studies , 2007, The Lancet.
[46] A. Dash,et al. Community‐based study to assess the efficacy of DEC plus ALB against DEC alone on bancroftian filarial infection in endemic areas in Tamil Nadu, south India , 2006, Tropical medicine & international health : TM & IH.
[47] T. Gyorkos,et al. Helminth Control in School-age Children: A Guide for Managers of Control Programmes , 2002 .
[48] L. Pritchett,et al. Estimating Wealth Effects Without Expenditure Data—Or Tears: An Application To Educational Enrollments In States Of India* , 2001, Demography.
[49] C. Dolea,et al. World Health Organization , 1949, International Organization.
[50] S. Elango. Success Story and Challenges Faced to Achieve ‘Elimination of Lymphatic Filariasis’ Status in Tamil Nadu , 2018 .
[51] R. Anderson,et al. Soil-Transmitted Helminths: Mathematical Models of Transmission, the Impact of Mass Drug Administration and Transmission Elimination Criteria. , 2016, Advances in parasitology.
[52] S. Brooker,et al. Global epidemiology, ecology and control of soil-transmitted helminth infections. , 2006, Advances in parasitology.
[53] Mridula. Educational statistics at a glance , 1987 .