Frontiers in Conservation Science (Jun 2024)

The crossroads of tradition and modern technology: integrative approaches to studying carnivores in low density ecosystems

  • Genevieve E. Finerty,
  • Genevieve E. Finerty,
  • Genevieve E. Finerty,
  • Genevieve E. Finerty,
  • Natalia Borrego,
  • Natalia Borrego,
  • Natalia Borrego,
  • Sky K. Alibhai,
  • Sky K. Alibhai,
  • Zoe C. Jewell,
  • Zoe C. Jewell,
  • Philippe Tschanz,
  • Philippe Tschanz,
  • Philippe Tschanz,
  • Trevor Balone,
  • Tebelelo Gabaikanye,
  • Moisapodi Gana,
  • Supula Monnaanoka,
  • Mosepele Mamou,
  • Sokwa Pudidaroma,
  • Meno Tshiama,
  • Mpho Tshiama,
  • Alessandro Araldi,
  • Margaret C. Crofoot,
  • Margaret C. Crofoot,
  • Steve Henley,
  • Pogiso ‘Africa’ Ithuteng,
  • Monika Schiess-Meier

DOI
https://doi.org/10.3389/fcosc.2024.1402500
Journal volume & issue
Vol. 5

Abstract

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The study of large carnivores in semi-arid ecosystems presents inherent challenges due to their low densities, extensive home ranges, and elusive nature. We explore the potential for the synthesis of traditional knowledge (i.e. art of tracking) and modern technology to address challenges in conservation and wildlife research in these challenging environments. Our research focuses on the African lion (Panthera leo) in the Central Kalahari region of Botswana as a model system to demonstrate the potential of this integrative approach. Combining GPS tracking and traditional San trackers’ expertise, we present two case studies: (1) the individual identification of lions via a combination of tracking and footprint analysis and (2) the monitoring of territorial behavior through a combination of GPS technology (i.e. GPS collars and handheld GPS devices) and non-invasive tracking. These approaches enhance our understanding of carnivore ecology as well as support conservation efforts by offering a non-invasive, cost-effective, and highly accurate means of monitoring populations. Our findings underscore the value of merging traditional tracking skills with contemporary analytical and technological developments to offer new insights into the ecology of carnivores in challenging environments. This approach not only improves data collection accuracy and efficiency but also fosters a deeper understanding of wildlife, ensuring the conservation and sustainable management of these species. Our work advocates for the inclusion of indigenous knowledge in conservation science, highlighting its relevance and applicability across various disciplines, thereby broadening the methodologies used to study wildlife, monitor populations, and inform conservation strategies.

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