1 |
Baeza-Yates, R. and Ribeiro-Neto, B. (2008). Modern Information Retrieval. Addison-Wesley Publishing Company, USA, 2nd edition.
|
|
2 |
Cheek, M., Nic Lughadha, E., Kirk, P., Lindon, H., Carretero, J., Looney, B., Douglas, B., Haelewaters, D., Gaya, E., Llewellyn, T., Ainsworth, A. M., Gafforov, Y., Hyde, K., Crous, P., Hughes, M., Walker, B. E., Campostrini Forzza, R., Wong, K. M., and Niskanen, T. (2020). New scientific discoveries: Plants and fungi. PLANTS, PEOPLE, PLANET, 2(5):371–388.
|
|
3 |
Glick, J. et al. (2020). Information-based similarity measures for botanical data. Journal of Data Science and Botanical Information, 8(2):101–119.
|
|
4 |
Gomaa, W. H. and Fahmy, A. A. (2013). A survey of text similarity approaches. International Journal of Computer Applications, 68(13):13–18.
|
|
5 |
Gyawali, B., Anastasiou, L., and Knoth, P. (2020). Deduplication of scholarly documents using locality sensitive hashing and word embeddings. In Proceedings of the 12th Conference on Language Resources and Evaluation (LREC 2020), pages 901–910, Marseille, France. European Language Resources Association (ELRA).
|
|
6 |
Manning, C. D. (2008). Introduction to information retrieval. Syngress Publishing.
|
|
7 |
Prakoso, D. et al. (2021). Short text similarity measurement methods: A review. Journal of Big Data and Analytics in Practice, 3(1):33–44.
|
|
8 |
Silva, C. et al. (2019). Measurement of text similarity: A survey. Information, 11(421):1–25.
|
|
9 |
Silva, J. et al. (2021). Tool for validation and import in herbarium database. In Proceedings of the Botanical Data Conference, pages 123–130. Botanical Society.
|
|