Open Access
Issue
BIO Web Conf.
Volume 94, 2024
The 8th International Conference on Biological Sciences “Leveraging Biodiversity to Support Green Economy and Climate Resilience” (ICBS 2023)
Article Number 07002
Number of page(s) 15
Section System & Synthetic Biology, and Bioengineering
DOI https://doi.org/10.1051/bioconf/20249407002
Published online 25 March 2024
  • Y. Ma, S. Gopal, X. Ma, K. Gallagher, M. Koch, L. Kaufman, Sustainability. 15, 19 (2023). [Google Scholar]
  • L Nilsson, Malmo Universitet. 109 (2019). [Google Scholar]
  • M Namkhan, N Sukumal, T Savini, Glo. Eco. and Conser. 39 (2022). [Google Scholar]
  • S. Dhyani. Dhyani, Shalini, Biodiv. and Conser. 32, 3731 (2023). [CrossRef] [Google Scholar]
  • O.I. Ogidi, U.M Akpan, Biodiversity in Africa. 29 (2022). [Google Scholar]
  • A. Hussein, Soil Sci. 2023 (2023). [Google Scholar]
  • R.G Kerry, F.J.P Montalbo, R. Das, S Patra, G.P Mahapatra, G.K Maurya, V. Nayak, A.B Envi, Sci. and Pol. Research. 29, 53 (2022). [Google Scholar]
  • M Chen, C Claramunt, A Çöltekin, X Liu, P Peng, Earth.Sci. 241 (2023) [Google Scholar]
  • B. Janga, G.P Asamani, Z. Sun, N. Cristea, Remote Sensing, 15, 16 (2023) [Google Scholar]
  • K. Ennouri, S. Smaoui, Y. Gharbi, M. Cheffi, O. Ben Braiek, M. Ennouri, M.A Triki, Jour. of Food Qlty. 17 (2021). [Google Scholar]
  • M.H.M Roslim, A.S Juraimi, N.N Che'Ya, N. Sulaiman, M.N.H.A Manaf, Z. Ramli, M. Motmainna, Agro. 11, 9 (2021), [Google Scholar]
  • M Verma, WS Symes, JEM Watson, KR Jones, JR Allan, O Venter, FE Rheindt, DP Edwards, L.R. Carrasco, Cons. Sci. and Pract. 2, 3 (2020) [Google Scholar]
  • S. Katona, D. Paulikas, S. Ali, M. Clarke, E. Ilves, T.E. Lovejoy, L.P. Madin, G.S. Stone. Katona, Steven, Daina Paulikas, S. Ali, M. Clarke, E. Ilves, T. E. Lovejoy, L.P. Madin, and G.S. Stone, Biodiv and Conser. 32 (2023). [Google Scholar]
  • M Ahmad, IGI Global. (2023). [Google Scholar]
  • M.N. Akhtar, E. Ansari, S.S.N. Alhady, E. Abu Bakar, Agri. 13, 2 (2023). [Google Scholar]
  • M.M. Quamar, B. Al-Ramadan, K. Khan, M. Shafiullah, S. El Ferik, Remote Sensing. 15, 20 (2023). [Google Scholar]
  • L.C. Kulimushi, P. Choudhari, L.K. Mubalama, G.T. Banswe, Geomatics, Natural Hazards and Risk. 12, 1 (2021). [CrossRef] [Google Scholar]
  • A Ishtiaque, A Masrur, YW Rabby, T Jerin, A Dewan, Remote sensing. 12, 4 (2020). [Google Scholar]
  • K.N Shivaprakash, N. Swami, S. Mysorekar, R. Arora, A. Gangadharan, K. Vohra et.al, Sustain. 14, 12 (2022) [Google Scholar]
  • Y. Himeur, B. Rimal, A. Tiwary, A. Amira, Fusion 86, 44 (2022). [CrossRef] [Google Scholar]
  • M. Verma, W.S. Symes, J.E.M. Watson, K.R. Jones, J.R. Allan, O. Venter, F.E. Rheindt, D.P. Edwards, Conserv.Sci. and Practice 2, 3 (2020). [CrossRef] [Google Scholar]
  • N. Myers, R.A. Mittermeier, C.G. Mittermeier, G.A.B. Da Fonseca, J. Kent, Nature. 403 (2000). [Google Scholar]
  • M Camacho-Sanchez, JA Leonard, Y. Fitriana, M. Tilak, F. Pierre-Henri, Journal of Mammalogy. 98, 5 (2017). [Google Scholar]
  • S. E Rees, N. L Foster, O. Langmead, S. Pittman, Marine Policy. 93 (2018). [Google Scholar]
  • E, Bacon, P, Gannon, S, Stephen, J. for Nat. Conser. 51 (2019). [Google Scholar]
  • D. Laffoley, N. Dudley, H. Jonas, D. MacKinnon, K. MacKinnon, M. Hockings, S. Woodley, Marine ecology. 27 (2017). [Google Scholar]
  • H.C. Bingham, D. Juffe Bignoli, E. Lewis, B. MacSharry, N.D. Burgess, P. Visconti, M. Deguignet, Nat. eco. 3, 5 (2019). [Google Scholar]
  • S. Hoffmann, Biodiv. and Conser, 31, 2 (2022). [Google Scholar]
  • R. Milton, C.M. Finlayson, N.C. Davidson - Ramsar Wetlands, The distribution of the world’s internationally important wetlands and their contribution to global protected area goals and Aichi Biodiversity Target 11. In Ramsar Wetlands. (2023) [Google Scholar]
  • P.R. Elsen, W.B. Monahan, A.M. Merenlender, Academy of Sci. 115, 39 (2018). [Google Scholar]
  • P.M. Maina, Analysis of Household Socio-Economic Drivers of Cattle Grazing and Grass Harvesting in Mount Kenya West Protected Forest, Kenya, PhD diss., St. Paul's University (2021). [Google Scholar]
  • P. Kumar, N.A. Ingole, P.A. Ganie, R. Posti, A.K. Saxena, Z. Ahmad, Jour. of Experi. Zoo. 23, 2 (2020). [Google Scholar]
  • S. Czapiewski, D. Szumińska, Land. 11, 24. (2021). [CrossRef] [Google Scholar]
  • L. Yu, Y. Cao, Y. Cheng, Q. Zhao, Y. Xu, K. Kanniah, H. Lu, R. Yang, P. Gong, Remote Sensing Letters. 14, 6 (2023). [Google Scholar]
  • Di Brita, Aldo, Management of locally abundant wild mammals in a landscape context through Geographic Information System (GIS): experimental approaches to wild boars, Iris. (2022). [Google Scholar]
  • I.F. Kurniawan, A. Aneiba, A. Hussain, M. Idrissi, I. Dunggio, A.T. Asyhari. "Large-scale Tree Detection through UAV-based Remote Sensing in Indonesia: Wallacea Case Study. in International Conference on Information Management, ICIM, 25-27 march 2022, Cambridge, United Kingdom (2022). [Google Scholar]
  • S Singh, Forest landscape characterization for biodiversity conservation planning and management gaps in Northwestern himalaya using geospatial technology, Remote Sensing of Northwest Himalayan Ecosyst (2019). [Google Scholar]
  • R.M. David, N.J. Rosser, D.N.M. Donoghue, Envir. Research Communi. 4, 4 (2022). [Google Scholar]
  • S. Pandey, N. Kumari, S.K. Dash, S, Wiley & Sons Ltd. Published. 289 (2022). [Google Scholar]
  • N. Labrière, S.J. Davies, M.I. Disney, L.I. Duncanson, M. Herold, S.L. Lewis, O.L. Phillips, S. Quegan, Global Chan. Bio. 29, 3 (2023). [Google Scholar]
  • E Chilende, Mapping of plant and non-plant based forest food resources in Mafinga district using participatory geographic information systems (GPIS). PhD diss., The University of Zambia, (2022). [Google Scholar]
  • R.D.D. Altarez, A. Apan, T. Maraseni, Geocarto Internat. 37, 26 (2022). [Google Scholar]
  • D. Schüßler, J. Mantilla-Contreras, R. Stadtmann, J.H. Ratsimbazafy, U. Radespiel, Biodiversity and Conservation. 29 (2020). [Google Scholar]
  • B.M. Takem‐Mbi, J.M. Mbuh, A.S. Lepatio‐Tchieg, The Use of GI Science in Detecting Anthropogenic Interaction in Protected Areas: A Case of the Takamanda National Park, South West Region, Cameroon GIS for Land Resource Manag. (2021) [Google Scholar]
  • J.C. Habel, L. Rasche, U.A. Schneider, J.O. Engler, E. Schmid, D. Rödder, S.T. Meyer, N, Conservation Letters. 12, 6 (2019). [Google Scholar]
  • X. Kong, Z. Zhou, L. Jiao, Resources, Conservation and Recycling. 174 (2021). [Google Scholar]
  • G Polgar, Z Jaafar. Endangered Forested Wetlands of Sundaland. Springer Berlin Heidelberg, (2018) [Google Scholar]
  • E.M. Nkonya, E. Kato, Rethinking agro-food sector to combat land degradation and desertification. Enun.Sdgs. (2020). [Google Scholar]
  • X. Hu, B. Huang, F. Verones, O. Cavalett, F. Cherubini. Frontiers in Eco. and the Envir. 19, 2 (2021). [Google Scholar]
  • K.W.J. Chua, H.H. Tan, D.C.J. Yeo, Biological Conser. 234 (2019). [Google Scholar]
  • H.H. Teow, S. Tang, P.K. Ahmed, M.S. Nair, S. Vaithilingam, Terrestrial Biodiversity and Protected Areas in Southeast Asia, IGSC WP (2022). [Google Scholar]
  • L. Chiaverini, D.W. Macdonald, H.M. Bothwell, A.J. Hearn, S.M. Cheyne, I. Haidir, L.T.B. Hunter, Animal Conserv. 25, 5 (2022). [Google Scholar]
  • M. Namkhan, G.A. Gale, T. Savini, N. Tantipisanuh, Conserv. Bio. 35, 1 (2021). [Google Scholar]
  • J.C. Habel, L. Rasche, U.A. Schneider, J.O. Engler, E. Schmid, D. Rödder, S.T. Meyer, N. Trapp, Conservation Letters, 12, 6 (2019). [CrossRef] [Google Scholar]
  • A. Chandra, P.K. Verma, P. Lepcha. Biodiversity of India-With Special Emphasis on of Hot Spots. ecological environment: A New Perspective. 3 (2022). [Google Scholar]
  • L. Husson, F.C. Boucher, A.C. Sarr et al, J. Biogeography 47, 4 (2020). [Google Scholar]
  • N. Gupta, V. Tiwari, M. Everard, M. Savage, Marine and Freshwater Ecosystems. 30, 3 (2020). [Google Scholar]
  • H. Vincent, D. Hole, N. Maxted, Biological Conservation. 265 (2022). [Google Scholar]
  • C. Leclerc, C. Magneville, C. Bellard, Div. and Distributions. 28, 12 (2022). [Google Scholar]
  • S. Manes, M.J. Costello, H. Beckett, A. Debnath, Biological Conservation. 257, 109070 (2021). [CrossRef] [Google Scholar]
  • Y.L. Tan, J.E. Chen, T.H. Yiew, M.S. Habibullah, Enviro.Scie.Pollution Research. 29 (2022). [Google Scholar]
  • J. M. Flury, A. Haas, R.M. Brown, I. Das, Y.M. Pui, Molecular phylogenetics and evolution. 163, 107210 (2021). [CrossRef] [Google Scholar]
  • S. Fattorini, The 13 t Identification of Biodiversity Hotspots Using the Species–Area Relationship, in Published online by Cambridge University Press. 321 (2021). [Google Scholar]
  • K Chandra, D Gupta. Biodiversity issues and challenges: non-agricultural insects. In Biodiversity in india: status, issues and challenges, Singapore: Springer Nature Singapore. (2022). [Google Scholar]
  • A. Sholihah, E. Delrieu-Trottin, F.L. Condamine, Systematic biology. 70, 5 (2021). [Google Scholar]
  • T.R. Sobha, C.P. Vibija, P. Fahima, Coral Reef: A Hot Spot of Marine Biodiversity. In Conservation and Sustainable Utilization of Bioresources, Singapore: Springer Nature Singapore (2023) [Google Scholar]
  • L.J. Hughes, M.R. Massam, O. Morton, F.A. Edwards, B.R. Scheffers, D.P. Edwards, Nature. 620, 7973 (2023). [Google Scholar]
  • C. Cunningham, K.F. Beazley, Biodiversity and Protected Areas. 13 (2019). [Google Scholar]
  • L Kapoor, S Usha, Socio-economic and Eco-biological Dimensions in Resource use and Conser.: Strategies for Sustainability, ESSE (2020). [Google Scholar]
  • N.M. Abdullah, A.H. Omar, O. Yaakob, Marine Policy. 73 (2016). [Google Scholar]
  • F. Kraus, Biodiv. and Conserv. 30, 11 (2021). [Google Scholar]
  • K.W.J. Chua, “Mechanisms and Impacts of Land-Use Change on Freshwater Fishes in Sundaland.” PhD diss., National University of Singapore (Singapore), 2020. [Google Scholar]
  • S. Tiwari, S. Moghe, W.B. Gurnule, D.S. Bhagat, Habitat-specific microbial community associated with the biodiversity hotspot. In Microbial Diversity in Hotspots, Academic Press (2022). [Google Scholar]
  • M. Heydari, R. Omidipour, J. Greenlee, J. of Wildlife and Biodiversity. 4, 4 (2020). [Google Scholar]
  • V Graham, J Geldmann, VM Adams, A Grech, G, Alana, D. Stefanie, and C. Hsing-Chung, Biological Conservation. 253, 108875 (2021). [CrossRef] [Google Scholar]
  • M.H.M Yatim, A.H Omar, N.M Abdullah, A Sarip, Earth and Environmental Sci. 169, 1 (2018). [Google Scholar]
  • C. Cowan, IGSC. 002 (2002) [Google Scholar]
  • P.A. López‐Bedoya, M. Bohada‐Murillo, M.C. Ángel‐Vallejo, L.D. Audino, A.L.V. Davis, G. Gurr, and J.A. Noriega, Jour. of Appl. Eco. 59, 6 (2022). [Google Scholar]
  • A.C. de Souza, J.A. Prevedello, Biological Conser. 243, 108482 (2020). [CrossRef] [Google Scholar]
  • A. Banerjee, P. Chakraborty, R. Bandopadhyay, Biodiversity. 20 (2019). [Google Scholar]
  • M. Jia, M. Liu, Z. Wang, D. Mao, C. Ren, H. Cui, Remote Sensing. 8 (2016). [Google Scholar]
  • R. Saxena, V. Srivastava, D. Bharti, R. Singh, A. Kumar, A. Sharma, Artificial Intelligence for Water Resource Planning and Management, In Innovations in Machine Learning and IoT for Water Management, IGI Global (2024). [Google Scholar]
  • D.K. Pandey, A.I. Hunjra, R. Bhaskar, M.A.S. Al-Faryan, Resources Policy. 86, 104250 (2023). [CrossRef] [Google Scholar]
  • K.F.A. Darras, M. Balle, W. Xu, Y. Yan, V.G. Zakka, M. Toledo-Hernandez, D. Sheng, W. Lin, bioRxiv. 7 (2023). [Google Scholar]
  • H. Doi, T. Osawa, N. Tsutsumida., E. Cole, M. Hrúz. Nature scientific.13, 4007 (2023). [Google Scholar]
  • Joly, A., Goëau, H., Kahl, S., Picek, L., Lorieul, T., Cole, E., & Hrúz, M. 257-285. Cham: Springer International Publishing. (2022, August). [Google Scholar]
  • E. A. McKinnon, O.P. Love, The Auk: Ornithological Advances. 135, 4 (2018). [Google Scholar]
  • D. Ventura, A. Bonifazi, M.F. Gravina, A. Belluscio, G. Ardizzone, Remote Sensing. 10, 9 (2018). [Google Scholar]
  • J. Gong, Y. Xie, E. Cao, Q. Huang, H. Li, Journal of Geographical Sci. 29 (2019) [Google Scholar]
  • H. Purnomo, B. Okarda, D. Puspitaloka, N. Ristiana, Land use policy. 134, 106818 (2023). [CrossRef] [Google Scholar]
  • R. Kraus. Journal of marine sci. and engine. 11 (2023). [Google Scholar]
  • K. Gunasekaran, S. Boopathi, IGI Global (2023). [Google Scholar]
  • K Nova, Eigenpub. 7, 1 (2023). [Google Scholar]
  • S. Lim, Y. Do, Entomological Research. 53, 8 (2023). [Google Scholar]
  • N. Revilla-Martín, D. Giralt, A. Sanz-Pérez, G. Bota, and F. Sardà-Palomera, Agriculture, Ecosystems & Envir, 357, 108657 (2023). [CrossRef] [Google Scholar]
  • Ş.M.K Mühling, Journal of Geoscience and Environment Protection. 11, 9 (2023). [Google Scholar]
  • J.B.A Bari, S.P Tiwari, B. Mitra, A.I. Elhaj, A. Siddiqui, O.R. Reshi, SM Rahman. GIS-Based Modelling for Estimation of Water Quality Parameters: A Review. Geospatial Analytics for Environmental Pollution Modeling: Analysis, Control and Management. (2023). [Google Scholar]
  • S.E. Bibri, J. Krogstie, A. Kaboli, A. Alahi, Environmental Science and Ecotechnology. 19, 100330 (2024): [CrossRef] [Google Scholar]
  • E. Ebrahimi, M.B. Araújo, B. Naimi, Ecological Indicators. 157, 111250 (2023). [CrossRef] [Google Scholar]
  • D.Y. Lee, D.S. Lee, Y.K. Cha, J.H. Min, Y.S. Park, Ecological Informatics. 102163 (2023). [Google Scholar]

Current usage metrics show cumulative count of Article Views (full-text article views including HTML views, PDF and ePub downloads, according to the available data) and Abstracts Views on Vision4Press platform.

Data correspond to usage on the plateform after 2015. The current usage metrics is available 48-96 hours after online publication and is updated daily on week days.

Initial download of the metrics may take a while.