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4. Sex peptide receptor is not required for refractoriness to remating or induction of egg laying in Aedes aegypti

9. Cuticular profiling of insecticide resistantAedes aegypti

10. A semi-field system for quantifyingAnopheles gambiaeattraction to human scent

16. List of Contributors

22. An expanded neurogenetic toolkit to decode olfaction in the African malaria mosquito Anopheles gambiae

23. Quantifying Mosquito Host Preference

24. Quantification of Anopheles gambiaeOlfactory Preferences under Semi-Field Conditions

25. A Behavioral Assay to Quantify Odor-Guided Thermotaxis with Anopheles gambiaeunder Semi-Field Conditions

27. Host adaptation of a Wolbachia strain after long-term serial passage in mosquito cell lines

31. Genomic Evolution of the Pathogenic Wolbachia Strain, wMelPop

32. Draft genome sequence of the male-killing Wolbachia strain wBol1 reveals recent horizontal gene transfers from diverse sources

33. Overview of Aedes aegyptiand Use in Laboratory Studies

34. Single-Pair and Small-Group Crosses of Aedes aegypti

35. Batch Rearing Aedes aegypti

39. Increased Igcomotor activity and metabolism of Aedes aegypti infected with a life-shortening strain of Wolbachia pipientis.

40. Identification of Essential Oils with Strong Activity against Stationary Phase Borrelia burgdorferi.

41. Increased locomotor activity and metabolism of Aedes aegypti infected with a life-shortening strain of Wolbachia pipientis

42. A Behavioral Assay to Quantify Odor-Guided Thermotaxis with Anopheles gambiae under Semi-Field Conditions.

43. Quantification of Anopheles gambiae Olfactory Preferences under Semi-Field Conditions.

44. Overview of Aedes aegypti and Use in Laboratory Studies.

45. Cuticular profiling of insecticide resistant Aedes aegypti .

46. CRISPR-Mediated Genome Engineering in Aedes aegypti.

47. Increased locomotor activity and metabolism of Aedes aegypti infected with a life-shortening strain of Wolbachia pipientis.

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