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1. Multi-scale habitat modeling framework for predicting the potential distribution of sheep gastrointestinal nematodes across Iran's three distinct climatic zones: a MaxEnt machine-learning algorithm.

2. Risk Mapping and Spatial Modeling of Human Cystic Echinococcosis in Iran from 2009 to 2018: A GIS-Based Survey.

3. Spatial Distribution of Ticks (Arachniada: Argasidae and Ixodidae) and Their Infection Rate to Crimean-Congo Hemorrhagic Fever Virus in Iran.

4. An Inventory of the Sand Flies (Diptera: Psychodidae) of Rudbar County, a New Focus of Leishmaniasis in Northern Iran, with a Taxonomic Note on the Subgenus Larroussius.

5. Evolution of insecticide resistance and its mechanisms in Anopheles stephensi in the WHO Eastern Mediterranean Region.

6. Presence probability of Hemiscorpius lepturus Peters, 1861 using maximum entropy approach in the western areas of Zagros Mountains, Iran.

7. Prone Regions of Zoonotic Cutaneous Leishmaniasis in Southwest of Iran: Combination of Hierarchical Decision Model (AHP) and GIS.

8. The Potential of West Nile Virus Transmission Regarding the Environmental Factors Using Geographic Information System (GIS), West Azerbaijan Province, Iran.

9. Bioecology of Dominant Malaria Vector, Anopheles superpictus s.l. Grassi (Diptera: Culicidae) In Iran.

10. Tick Ectoparasites of Animals in Borderline of Iran-Iraq and Their Role on Disease Transmission.

11. Global epidemiology and spatial distribution of Toxoplasma gondii in goats: Protocol for a systematic review and Bayesian hierarchical meta-analysis.

12. Situational Analysis of Cutaneous Leishmaniasis in an Endemic Focus of the Disease, Southeastern Iran.

13. Situational Analysis of Visceral Leishmaniasis in the Most Important Endemic Area of the Disease in Iran.

14. Predicting the potential distribution of main malaria vectors Anopheles stephensi, An. culicifacies s.l. and An. fluviatilis s.l. in Iran based on maximum entropy model.

15. Laboratory Evaluation of Temephos against Anopheles stephensi and Culex pipiens Larvae in Iran.

16. Worldwide Status of Insecticide Resistance of Aedes aegypti and Ae. albopictus, Vectors of Arboviruses of Chikungunya, Dengue, Zika and Yellow Fever.

17. Spatial and temporal distributions of phlebotomine sand flies (Diptera: Psychodidae), vectors of leishmaniasis, in Iran.

18. A Comparative Study on the Biodiversity and Species Richness of Phlebotomine Sand Flies (Diptera: Psychodidae) in Kermanshah and Khuzestan Provinces of Iran.

19. Sindbis virus infection of mosquito species in the wetlands of northwestern Iran and modeling the probable ecological niches of SINV vectors in the country.

20. Scabies as a Neglected Tropical Disease in Iran: A Systematic Review with Meta-Analysis, during 2000–2022.

21. Ecology of sand flies (Diptera: Psychodidae, Phlebotominae) in a new focus of leishmaniasis in northern Iran.

22. Predicting environmentally suitable areas for <italic>Anopheles superpictus</italic> Grassi (<italic>s.l.</italic>), <italic>Anopheles maculipennis</italic> Meigen (<italic>s.l</italic>.) and <italic>Anopheles sacharovi</italic> Favre (Diptera: Culicidae) in Iran

23. Ace-1 Target Site Status and Metabolic Detoxification Associated with Bendiocarb Resistance in the Field Populations of Main Malaria Vector, Anopheles stephensi in Iran.

24. Predicting current and future high-risk areas for vectors and reservoirs of cutaneous leishmaniasis in Iran.

25. Modeling spatial risk of zoonotic cutaneous leishmaniasis in Central Iran.

26. High Resistance of Vector of West Nile Virus, Culex pipiens Linnaeus (Diptera: Culicidae) to Different Insecticides Recommended by WHO in Northern Iran.

27. Evaluation of Deltamethrin in Combination of Piperonyl Butoxide (PBO) against Pyrethroid Resistant, Malaria Vector, Anopheles stephensi in IRS Implementation: An Experimental Semi-Filed Trial in Iran.

28. Spatial Distribution of Medically Important Scorpions in North West of Iran.

29. Evaluation of the Time Course on the Effectiveness of WHO Standard Pyrethroid and Carbamate Impregnated Test Papers against Anopheles stephensi, the Main Malaria Vector in Iran.

30. Ecological Niche Modeling of main reservoir hosts of zoonotic cutaneous leishmaniasis in Iran.

31. War, displacement, and the best location for temporary sheltering: a qualitative study.

32. Climate change and its effect on the vulnerability to zoonotic cutaneous leishmaniasis in Iran.

33. Hard Ticks (Ixodidae) and Crimean-Congo Hemorrhagic Fever Virus in South West of Iran.

34. Temporal Monitoring and Predicting of the Abundance of Malaria Vectors Using Time Series Analysis of Remote Sensing Data through Google Earth Engine.

35. Conducting International Diploma Course on Malaria Program Planning and Management (1996-2012).

36. First Report of Pharyngostomy Wound Myiasis Caused by Chrysomya bezziana (Diptera: Calliphoridae) in Iran.

37. Predicting the Potential Distribution of Major Malaria Vectors Based on Climate Changes in Sistan and Baluchistan Province, Southeastern Iran.

38. A Feasibility Study on Using the Facilities of Health Centers for Developing a Laboratory Network on Vectors and Reservoir Hosts of Cutaneous Leishmaniasis in Iran.

39. Current Status of Insecticide Susceptibility in the Principal Malaria Vector, Anopheles gambiae in Three Northern States of Nigeria.

40. Molecular, Morphological, and Spatial Study of Galba schirazensis (Pulmonata, Lymnaeidae) from Southeastern Iran.

41. Employing Different Traps for Collection of Mosquitoes and Detection of Dengue, Chikungunya and Zika Vector, Aedes albopictus, in Borderline of Iran and Pakistan.

42. First Report of Target Site Insensitivity in Pyrethroid Resistant Anopheles gambiae from Southern Guinea Savanna, Northern-Nigeria.

43. Predicting environmental suitability and geographical distribution of Dicrocoelium dendriticum at littoral of Caspian Sea: An ecological niche-based modeling.

44. Ecological niche modeling for predicting the habitat suitability of fascioliasis based on maximum entropy model in southern Caspian Sea littoral, Iran.

45. Modelling and evaluating the risk of zoonotic cutaneous leishmaniasis in selected areas of Kerman Province, south of Iran.

46. Geographical Distribution Map and Epidemiological Pattern of Animal Bite in the North of Iran.

47. Status of Resistant and Knockdown of West Nile Vector, Culex pipiens Complex to Different Pesticides in Iran.

48. Conducting International Diploma Course on Leishmaniasis and Its Control in the Islamic Republic of Iran.

49. Detection of Diazinon Residue in Honey and Honey Bee (Apis mellifera) in Bandar-Abbas and Meshkinshahr, Iran.

50. Using Ecological Niche Modeling to Predict the Spatial Distribution of Anopheles maculipennis s.l. and Culex theileri (Diptera: Culicidae) in Central Iran.

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