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1. Molecular markers of artemisinin resistance during falciparum malaria elimination in Eastern Myanmar.

2. Molecular markers of artemisinin resistance during falciparum malaria elimination in Eastern Myanmar

3. Chloroquine resistance evolution in Plasmodium falciparum is mediated by the putative amino acid transporter AAT1

4. Ditching Windows

5. Protein Interaction Mapping Identifies RBBP6 as a Negative Regulator of Ebola Virus Replication

6. Molecular markers of artemisinin resistance during falciparum malaria elimination in Eastern Myanmar

7. APlasmodium falciparumgenetic cross reveals the contributions ofpfcrtandplasmepsin II/IIIto piperaquine drug resistance

9. A Malaria Parasite Cross Reveals Genetic Determinants of Plasmodium falciparum Growth in Different Culture Media

10. An amino acid transporter AAT1 plays a pivotal role in chloroquine resistance evolution in malaria parasites

11. Optimizing bulk segregant analysis of drug resistance using Plasmodium falciparum genetic crosses conducted in humanized mice

12. Optimizing bulk segregant analysis of drug resistance using Plasmodium falciparum genetic crosses conducted in humanized mice

13. Bulk Segregant Approaches to Nutritional Genomics in Plasmodium falciparum

14. Optimizing Bulk Segregant Analysis of Drug Resistance Using Plasmodium Falciparum Genetic Crosses Conducted in Humanized Mice

15. Bulk segregant analysis reveals environment × genotype interactions determining malaria parasite growth

18. Correction: Corrigendum: Facile Discovery of a Diverse Panel of Anti-Ebola Virus Antibodies by Immune Repertoire Mining

19. Facile Discovery of a Diverse Panel of Anti-Ebola Virus Antibodies by Immune Repertoire Mining

20. Contracting with Outpatient Hemodialysis Patients to Improve Adherence to Treatment

22. Spermine and Spermidine Alter Gene Expression and Antigenic Profile of Borrelia burgdorferi

23. A Plasmodium falciparum genetic cross reveals the contributions of pfcrt and plasmepsin II/III to piperaquine drug resistance.

24. A Plasmodium falciparum genetic cross reveals the contributions of pfcrt and plasmepsin II/III to piperaquine drug resistance.

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