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1. Evaluating the method reproducibility of deep learning models in the biodiversity domain

3. PhenoDeep: A Deep Learning-Based Approach for Detecting Reproductive Organs from Digitized Herbarium Specimen Images

7. Envisaging a global infrastructure to exploit the potential of digitised collections

8. Figure 10 from: Abdelmageed N, Löffler F, Feddoul L, Algergawy A, Samuel S, Gaikwad J, Kazem A, König-Ries B (2022) BiodivNERE: Gold standard corpora for named entity recognition and relation extraction in the biodiversity domain. Biodiversity Data Journal 10: e89481. https://doi.org/10.3897/BDJ.10.e89481

9. Figure 5 from: Abdelmageed N, Löffler F, Feddoul L, Algergawy A, Samuel S, Gaikwad J, Kazem A, König-Ries B (2022) BiodivNERE: Gold standard corpora for named entity recognition and relation extraction in the biodiversity domain. Biodiversity Data Journal 10: e89481. https://doi.org/10.3897/BDJ.10.e89481

10. Figure 3 from: Abdelmageed N, Löffler F, Feddoul L, Algergawy A, Samuel S, Gaikwad J, Kazem A, König-Ries B (2022) BiodivNERE: Gold standard corpora for named entity recognition and relation extraction in the biodiversity domain. Biodiversity Data Journal 10: e89481. https://doi.org/10.3897/BDJ.10.e89481

11. Figure 2 from: Abdelmageed N, Löffler F, Feddoul L, Algergawy A, Samuel S, Gaikwad J, Kazem A, König-Ries B (2022) BiodivNERE: Gold standard corpora for named entity recognition and relation extraction in the biodiversity domain. Biodiversity Data Journal 10: e89481. https://doi.org/10.3897/BDJ.10.e89481

12. Figure 4 from: Abdelmageed N, Löffler F, Feddoul L, Algergawy A, Samuel S, Gaikwad J, Kazem A, König-Ries B (2022) BiodivNERE: Gold standard corpora for named entity recognition and relation extraction in the biodiversity domain. Biodiversity Data Journal 10: e89481. https://doi.org/10.3897/BDJ.10.e89481

13. Figure 9 from: Abdelmageed N, Löffler F, Feddoul L, Algergawy A, Samuel S, Gaikwad J, Kazem A, König-Ries B (2022) BiodivNERE: Gold standard corpora for named entity recognition and relation extraction in the biodiversity domain. Biodiversity Data Journal 10: e89481. https://doi.org/10.3897/BDJ.10.e89481

14. Figure 7 from: Abdelmageed N, Löffler F, Feddoul L, Algergawy A, Samuel S, Gaikwad J, Kazem A, König-Ries B (2022) BiodivNERE: Gold standard corpora for named entity recognition and relation extraction in the biodiversity domain. Biodiversity Data Journal 10: e89481. https://doi.org/10.3897/BDJ.10.e89481

15. Figure 8 from: Abdelmageed N, Löffler F, Feddoul L, Algergawy A, Samuel S, Gaikwad J, Kazem A, König-Ries B (2022) BiodivNERE: Gold standard corpora for named entity recognition and relation extraction in the biodiversity domain. Biodiversity Data Journal 10: e89481. https://doi.org/10.3897/BDJ.10.e89481

16. Figure 6 from: Abdelmageed N, Löffler F, Feddoul L, Algergawy A, Samuel S, Gaikwad J, Kazem A, König-Ries B (2022) BiodivNERE: Gold standard corpora for named entity recognition and relation extraction in the biodiversity domain. Biodiversity Data Journal 10: e89481. https://doi.org/10.3897/BDJ.10.e89481

18. BiodivNERE: Gold standard corpora for named entity recognition and relation extraction in the biodiversity domain

19. Digitisation and analysis of customary medicinal plant knowledge using biodiversity informatics

21. Towards Certification of GFBio Data Centers

24. Figure 5 from: Chamanara J, Gaikwad J, Gerlach R, Algergawy A, Ostrowski A, König-Ries B (2021) BEXIS2: A FAIR-aligned data management system for biodiversity, ecology and environmental data. Biodiversity Data Journal 9: e72901. https://doi.org/10.3897/BDJ.9.e72901

25. Figure 8 from: Chamanara J, Gaikwad J, Gerlach R, Algergawy A, Ostrowski A, König-Ries B (2021) BEXIS2: A FAIR-aligned data management system for biodiversity, ecology and environmental data. Biodiversity Data Journal 9: e72901. https://doi.org/10.3897/BDJ.9.e72901

26. Figure 1 from: Chamanara J, Gaikwad J, Gerlach R, Algergawy A, Ostrowski A, König-Ries B (2021) BEXIS2: A FAIR-aligned data management system for biodiversity, ecology and environmental data. Biodiversity Data Journal 9: e72901. https://doi.org/10.3897/BDJ.9.e72901

27. Figure 6 from: Chamanara J, Gaikwad J, Gerlach R, Algergawy A, Ostrowski A, König-Ries B (2021) BEXIS2: A FAIR-aligned data management system for biodiversity, ecology and environmental data. Biodiversity Data Journal 9: e72901. https://doi.org/10.3897/BDJ.9.e72901

28. Figure 4 from: Chamanara J, Gaikwad J, Gerlach R, Algergawy A, Ostrowski A, König-Ries B (2021) BEXIS2: A FAIR-aligned data management system for biodiversity, ecology and environmental data. Biodiversity Data Journal 9: e72901. https://doi.org/10.3897/BDJ.9.e72901

29. Figure 3 from: Chamanara J, Gaikwad J, Gerlach R, Algergawy A, Ostrowski A, König-Ries B (2021) BEXIS2: A FAIR-aligned data management system for biodiversity, ecology and environmental data. Biodiversity Data Journal 9: e72901. https://doi.org/10.3897/BDJ.9.e72901

30. Figure 2 from: Chamanara J, Gaikwad J, Gerlach R, Algergawy A, Ostrowski A, König-Ries B (2021) BEXIS2: A FAIR-aligned data management system for biodiversity, ecology and environmental data. Biodiversity Data Journal 9: e72901. https://doi.org/10.3897/BDJ.9.e72901

32. Figure 7 from: Chamanara J, Gaikwad J, Gerlach R, Algergawy A, Ostrowski A, König-Ries B (2021) BEXIS2: A FAIR-aligned data management system for biodiversity, ecology and environmental data. Biodiversity Data Journal 9: e72901. https://doi.org/10.3897/BDJ.9.e72901

33. Figure 9 from: Chamanara J, Gaikwad J, Gerlach R, Algergawy A, Ostrowski A, König-Ries B (2021) BEXIS2: A FAIR-aligned data management system for biodiversity, ecology and environmental data. Biodiversity Data Journal 9: e72901. https://doi.org/10.3897/BDJ.9.e72901

35. Figure 1 from: Kommineni VK, Tautenhahn S, Baddam P, Gaikwad J, Wieczorek B, Triki A, Kattge J (2021) Comprehensive leaf size traits dataset for seven plant species from digitised herbarium specimen images covering more than two centuries . Biodiversity Data Journal 9: e69806. https://doi.org/10.3897/BDJ.9.e69806

36. Figure 6a from: Kommineni VK, Tautenhahn S, Baddam P, Gaikwad J, Wieczorek B, Triki A, Kattge J (2021) Comprehensive leaf size traits dataset for seven plant species from digitised herbarium specimen images covering more than two centuries . Biodiversity Data Journal 9: e69806. https://doi.org/10.3897/BDJ.9.e69806

37. Figure 8 from: Kommineni VK, Tautenhahn S, Baddam P, Gaikwad J, Wieczorek B, Triki A, Kattge J (2021) Comprehensive leaf size traits dataset for seven plant species from digitised herbarium specimen images covering more than two centuries . Biodiversity Data Journal 9: e69806. https://doi.org/10.3897/BDJ.9.e69806

38. Figure 3 from: Kommineni VK, Tautenhahn S, Baddam P, Gaikwad J, Wieczorek B, Triki A, Kattge J (2021) Comprehensive leaf size traits dataset for seven plant species from digitised herbarium specimen images covering more than two centuries . Biodiversity Data Journal 9: e69806. https://doi.org/10.3897/BDJ.9.e69806

39. Supplementary material 2 from: Kommineni VK, Tautenhahn S, Baddam P, Gaikwad J, Wieczorek B, Triki A, Kattge J (2021) Comprehensive leaf size traits dataset for seven plant species from digitised herbarium specimen images covering more than two centuries . Biodiversity Data Journal 9: e69806. https://doi.org/10.3897/BDJ.9.e69806

41. Figure 7b from: Kommineni VK, Tautenhahn S, Baddam P, Gaikwad J, Wieczorek B, Triki A, Kattge J (2021) Comprehensive leaf size traits dataset for seven plant species from digitised herbarium specimen images covering more than two centuries . Biodiversity Data Journal 9: e69806. https://doi.org/10.3897/BDJ.9.e69806

42. Figure 5 from: Kommineni VK, Tautenhahn S, Baddam P, Gaikwad J, Wieczorek B, Triki A, Kattge J (2021) Comprehensive leaf size traits dataset for seven plant species from digitised herbarium specimen images covering more than two centuries . Biodiversity Data Journal 9: e69806. https://doi.org/10.3897/BDJ.9.e69806

43. Figure 9 from: Kommineni VK, Tautenhahn S, Baddam P, Gaikwad J, Wieczorek B, Triki A, Kattge J (2021) Comprehensive leaf size traits dataset for seven plant species from digitised herbarium specimen images covering more than two centuries . Biodiversity Data Journal 9: e69806. https://doi.org/10.3897/BDJ.9.e69806

44. Supplementary material 1 from: Kommineni VK, Tautenhahn S, Baddam P, Gaikwad J, Wieczorek B, Triki A, Kattge J (2021) Comprehensive leaf size traits dataset for seven plant species from digitised herbarium specimen images covering more than two centuries . Biodiversity Data Journal 9: e69806. https://doi.org/10.3897/BDJ.9.e69806

45. Figure 2 from: Kommineni VK, Tautenhahn S, Baddam P, Gaikwad J, Wieczorek B, Triki A, Kattge J (2021) Comprehensive leaf size traits dataset for seven plant species from digitised herbarium specimen images covering more than two centuries . Biodiversity Data Journal 9: e69806. https://doi.org/10.3897/BDJ.9.e69806

46. Figure 4 from: Kommineni VK, Tautenhahn S, Baddam P, Gaikwad J, Wieczorek B, Triki A, Kattge J (2021) Comprehensive leaf size traits dataset for seven plant species from digitised herbarium specimen images covering more than two centuries . Biodiversity Data Journal 9: e69806. https://doi.org/10.3897/BDJ.9.e69806

48. IOT based Automated Fish Feeder

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