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1. Airborne DNA reveals predictable spatial and seasonal dynamics of fungi.

2. Global Spore Sampling Project: A global, standardized dataset of airborne fungal DNA.

3. Expert elicitation of state shifts and divergent sensitivities to climate warming across northern ecosystems

4. Herbivore diversity effects on Arctic tundra ecosystems: a systematic review

8. Computing H-Partitions in ASP and Datalog

9. Factors influencing mercury exposure in Arctic-breeding shorebirds

13. Ordered and deterministic cancer genome evolution after p53 loss

15. Harnessing large language models for coding, teaching and inclusion to empower research in ecology and evolution.

16. Organoid Profiling Identifies Common Responders to Chemotherapy in Pancreatic Cancer.

17. BRCA mutational status shapes the stromal microenvironment of pancreatic cancer linking clusterin expression in cancer associated fibroblasts with HSF1 signaling

18. A circumpolar study unveils a positive non‐linear effect of temperature on arctic arthropod availability that may reduce the risk of warming‐induced trophic mismatch for breeding shorebirds

20. Documenting lemming population change in the Arctic : Can we detect trends?

23. Behavioural responses of breeding arctic sandpipers to ground-surface temperature and primary productivity

24. A circumpolar study unveils a positive non-linear effect of temperature on arctic arthropod availability that may reduce the risk of warming-induced trophic mismatch for breeding shorebirds

25. Properties of vertebrate predator–prey networks in the high Arctic

26. Global Spore Sampling Project:A global, standardized dataset of airborne fungal DNA

29. Altered RNA Splicing by Mutant p53 Activates Oncogenic RAS Signaling in Pancreatic Cancer

33. The collective application of shorebird tracking data to conservation

34. Figure 7 from: Villeneuve C-A, Snyman LP, Jenkins EJ, Lecomte N, Dusfour I, Leighton PA (2024) Variable performance of DNA barcoding and morpholo­gical characteristics for the identification of Arctic black-legged Aedes (Diptera: Culicidae), with a focus on the Punctor subgroup. Arthropod Systematics & Phylogeny 82: 17-34. https://doi.org/10.3897/asp.82.e111985

35. Supplementary Material 1 from: Villeneuve C-A, Snyman LP, Jenkins EJ, Lecomte N, Dusfour I, Leighton PA (2024) Variable performance of DNA barcoding and morpholo­gical characteristics for the identification of Arctic black-legged Aedes (Diptera: Culicidae), with a focus on the Punctor subgroup. Arthropod Systematics & Phylogeny 82: 17-34. https://doi.org/10.3897/asp.82.e111985

36. Figure 3 from: Villeneuve C-A, Snyman LP, Jenkins EJ, Lecomte N, Dusfour I, Leighton PA (2024) Variable performance of DNA barcoding and morpholo­gical characteristics for the identification of Arctic black-legged Aedes (Diptera: Culicidae), with a focus on the Punctor subgroup. Arthropod Systematics & Phylogeny 82: 17-34. https://doi.org/10.3897/asp.82.e111985

37. Figure 6 from: Villeneuve C-A, Snyman LP, Jenkins EJ, Lecomte N, Dusfour I, Leighton PA (2024) Variable performance of DNA barcoding and morpholo­gical characteristics for the identification of Arctic black-legged Aedes (Diptera: Culicidae), with a focus on the Punctor subgroup. Arthropod Systematics & Phylogeny 82: 17-34. https://doi.org/10.3897/asp.82.e111985

38. Figure 2 from: Villeneuve C-A, Snyman LP, Jenkins EJ, Lecomte N, Dusfour I, Leighton PA (2024) Variable performance of DNA barcoding and morpholo­gical characteristics for the identification of Arctic black-legged Aedes (Diptera: Culicidae), with a focus on the Punctor subgroup. Arthropod Systematics & Phylogeny 82: 17-34. https://doi.org/10.3897/asp.82.e111985

39. Figure 9 from: Villeneuve C-A, Snyman LP, Jenkins EJ, Lecomte N, Dusfour I, Leighton PA (2024) Variable performance of DNA barcoding and morpholo­gical characteristics for the identification of Arctic black-legged Aedes (Diptera: Culicidae), with a focus on the Punctor subgroup. Arthropod Systematics & Phylogeny 82: 17-34. https://doi.org/10.3897/asp.82.e111985

41. Supplementary Material 2 from: Villeneuve C-A, Snyman LP, Jenkins EJ, Lecomte N, Dusfour I, Leighton PA (2024) Variable performance of DNA barcoding and morpholo­gical characteristics for the identification of Arctic black-legged Aedes (Diptera: Culicidae), with a focus on the Punctor subgroup. Arthropod Systematics & Phylogeny 82: 17-34. https://doi.org/10.3897/asp.82.e111985

42. Figure 5 from: Villeneuve C-A, Snyman LP, Jenkins EJ, Lecomte N, Dusfour I, Leighton PA (2024) Variable performance of DNA barcoding and morpholo­gical characteristics for the identification of Arctic black-legged Aedes (Diptera: Culicidae), with a focus on the Punctor subgroup. Arthropod Systematics & Phylogeny 82: 17-34. https://doi.org/10.3897/asp.82.e111985

43. Figure 4 from: Villeneuve C-A, Snyman LP, Jenkins EJ, Lecomte N, Dusfour I, Leighton PA (2024) Variable performance of DNA barcoding and morpholo­gical characteristics for the identification of Arctic black-legged Aedes (Diptera: Culicidae), with a focus on the Punctor subgroup. Arthropod Systematics & Phylogeny 82: 17-34. https://doi.org/10.3897/asp.82.e111985

44. Figure 1 from: Villeneuve C-A, Snyman LP, Jenkins EJ, Lecomte N, Dusfour I, Leighton PA (2024) Variable performance of DNA barcoding and morpholo­gical characteristics for the identification of Arctic black-legged Aedes (Diptera: Culicidae), with a focus on the Punctor subgroup. Arthropod Systematics & Phylogeny 82: 17-34. https://doi.org/10.3897/asp.82.e111985

45. Figure 8 from: Villeneuve C-A, Snyman LP, Jenkins EJ, Lecomte N, Dusfour I, Leighton PA (2024) Variable performance of DNA barcoding and morpholo­gical characteristics for the identification of Arctic black-legged Aedes (Diptera: Culicidae), with a focus on the Punctor subgroup. Arthropod Systematics & Phylogeny 82: 17-34. https://doi.org/10.3897/asp.82.e111985

46. Patient-derived biliary tract cancer organoid biobank: Is personalized medicine utilizing organoids feasible for patients with cholangiocarcinoma?

47. Abstract C115: Genomic evolution of pancreatic cancer at single-cell resolution

48. Garbage consumption by Arctic terrestrial predators in one of the most pristine land areas on Earth

49. Population cycles and outbreaks of small rodents: ten essential questions we still need to solve

50. First Confirmed Report of Jamestown Canyon Virus in Greenland.

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