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73 results on '"Simon-Lledó, Erik"'

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1. Defining the target population to make marine image-based biological data FAIR

2. Defining the target population to make marine image-based biological data FAIR

3. Defining the target population to make marine image-based biological data FAIR

4. Defining the target population to make marine image-based biological data FAIR

5. Habitat heterogeneity enhances megafaunal biodiversity at bathymetric elevations in the Clarion Clipperton Fracture Zone

6. Carbonate compensation depth drives abyssal biogeography in the northeast Pacific

7. Carbonate compensation depth drives abyssal biogeography in the northeast Pacific

8. Habitat heterogeneity enhances megafaunal biodiversity at bathymetric elevations in the Clarion Clipperton Fracture Zone

9. Habitat heterogeneity enhances megafaunal biodiversity at bathymetric elevations in the Clarion Clipperton Fracture Zone

10. Habitat heterogeneity enhances megafaunal biodiversity at bathymetric elevations in the Clarion Clipperton Fracture Zone

11. Seamount mining test provides evidence of ecological impacts beyond deposition

12. How many metazoan species live in the world’s largest mineral exploration region?

13. Carbonate compensation depth drives abyssal biogeography in the northeast Pacific

14. Habitat heterogeneity enhances megafaunal biodiversity at bathymetric elevations in the Clarion Clipperton Fracture Zone

15. Major fine-scale spatial heterogeneity in accumulation of gelatinous carbon fluxes on the deep seabed

16. Rock outcrops enhance abyssal benthic biodiversity

17. Mass falls of crustacean carcasses link surface waters and the deep seafloor

18. Investigating the benthic megafauna in the eastern Clarion Clipperton Fracture Zone (north-east Pacific) based on distribution models predicted with random forest

19. Linkages between sediment thickness, geomorphology and Mn nodule occurrence: New evidence from AUV geophysical mapping in the Clarion-Clipperton Zone

20. Investigating the benthic megafauna in the eastern Clarion Clipperton Fracture Zone (north-east Pacific) based on distribution models predicted with random forest

21. Investigating the benthic megafauna in the eastern Clarion Clipperton Fracture Zone (north-east Pacific) based on distribution models predicted with random forest

22. Investigating the benthic megafauna in the eastern Clarion Clipperton Fracture Zone (north-east Pacific) based on distribution models predicted with random forest

23. Habitat types and megabenthos composition from three sponge-dominated high-Arctic seamounts

24. Linkages between sediment thickness, geomorphology and Mn nodule occurrence: New evidence from AUV geophysical mapping in the Clarion-Clipperton Zone

25. Linkages between sediment thickness, geomorphology and Mn nodule occurrence: New evidence from AUV geophysical mapping in the Clarion-Clipperton Zone

26. Environment, ecology, and potential effectiveness of an area protected from deep-sea mining (Clarion Clipperton Zone, abyssal Pacific)

27. Recommendations for the standardisation of open taxonomic nomenclature for image-based identifications

28. Environment, ecology, and potential effectiveness of an area protected from deep-sea mining (Clarion Clipperton Zone, abyssal Pacific)

29. Environment, ecology, and potential effectiveness of an area protected from deep-sea mining (Clarion Clipperton Zone, abyssal Pacific)

30. Linkages between sediment thickness, geomorphology and Mn nodule occurrence: New evidence from AUV geophysical mapping in the Clarion-Clipperton Zone

31. Environment, ecology, and potential effectiveness of an area protected from deep-sea mining (Clarion Clipperton Zone, abyssal Pacific)

32. Recommendations for the standardisation of open taxonomic nomenclature for image-based identifications

33. Environment, ecology, and potential effectiveness of an area protected from deep-sea mining (Clarion Clipperton Zone, abyssal Pacific)

34. Environment, ecology, and potential effectiveness of an area protected from deep-sea mining (Clarion Clipperton Zone, abyssal Pacific)

35. Abyssal food-web model indicates faunal carbon flow recovery and impaired microbial loop 26 years after a sediment disturbance experiment

36. Abyssal food-web model indicates faunal carbon flow recovery and impaired microbial loop 26 years after a sediment disturbance experiment

37. Megafauna community assessment with cameras: Platform, annotator and methodology comparison

38. Multi-scale variations in invertebrate and fish megafauna in the mid-eastern Clarion Clipperton Zone

39. Abyssal food-web model indicates faunal carbon flow recovery and impaired microbial loop 26 years after a sediment disturbance experiment

40. Megafauna community assessment of polymetallic-nodule fields with cameras: platform and methodology comparison

41. Abyssal food-web model indicates faunal carbon flow recovery and impaired microbial loop 26 years after a sediment disturbance experiment

42. Megafauna community assessment with cameras: Platform, annotator and methodology comparison

43. Abyssal food-web model indicates faunal carbon flow recovery and impaired microbial loop 26 years after a sediment disturbance experiment

44. Megafauna community assessment of polymetallic-nodule fields with cameras: platform and methodology comparison

45. Abyssal food-web model indicates faunal carbon flow recovery and impaired microbial loop 26 years after a sediment disturbance experiment

46. Megafauna community assessment of polymetallic nodule fields with cameras: Platform and methodology comparison

47. Megafauna community assessment of polymetallic nodule fields with cameras: Platform and methodology comparison

48. Abyssal food-web model indicates faunal carbon flow recovery and impaired microbial loop 26 years after a sediment disturbance experiment

49. Multi-scale variations in invertebrate and fish megafauna in the mid-eastern Clarion Clipperton Zone

50. Megafauna community assessment of polymetallic nodule fields with cameras: Platform and methodology comparison

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