Logo Lanfrica
  • Home
  • Atlas
  • Insights
  • Docs
  • Sign in

© 2026 Lanfrica. All rights reserved. All copyrights of the resources shown on the Lanfrica website belong to the original copyright holders, unless explicitly stated otherwise.

Biometric Recognition of African Clawed Frogs

Record type:

dataset
Creator:
PriTomKamAzz
Editor:
Azz
Publisher:
Dat
Host:avatar
The dataset of African Claw Frogs consists of 1,647 images for 160 classes, with an average of 10.3 images per class. The frogs are housed in the University of Groningen, following animal welfare laws and approved by the relevant authorities. The frogs are divided into groups of ten to twenty individuals in aquatic tanks. To capture the images, the frogs are placed individually in transparent containers filled with water on a white surface. The setup takes into account the frogs' pigment changes by housing them in transparent boxes on a yellow surface for approximately 24 hours before photography. The pictures are taken using at least four different smartphones per frog, ensuring consistency in angle and distance from the camera to the container. The dataset includes images taken at different times of day, on different days, and with cameras of different smartphones to enhance the model's robustness. The dataset also provides information on the distribution of samples per frog and the number of photos taken per phone. This dataset has been used to develop an automatic pattern recognition system that is able to determine the individual frogs based on the analysis of their patterns extracted form the iamges. The developed algorithms are very effective and achieve more than 99% recognition rate.

Visit

doi.orgdataverse.nl

Tasks

computer visionimage classification

Tags

Computer and Information ScienceMedicine, Health and Life SciencesBiometricsAfrican Claw FrogsPattern Recognition

Licenses

info:eu-repo/semantics/openAccessCreative Commons Zero v1.0 Universalhttps://creativecommons.org/publicdomain/zero/1.0/legalcode

Similar

Data from: Sequential turnovers of sex chromosomes in African clawed frogs (Xenopus) suggest some genomic regions are good at sex determinationPan‐African phylogeography of a model organism, the African clawed frog ‘<i>Xenopus laevis’</i>Design and development of biometric voting system using fingerprint and facial recognitionAfrican citizenships – A biometric turn?Naming South African frogs and reptiles in nine Indigenous languagesEnhancing Biometric Security Using Artificial Neural Network-Based Multimodal Fusion of Facial Recognition and Fingerprint Identification

Data from: Sequential turnovers of sex chromosomes in African clawed frogs (Xenopus) suggest some genomic regions are good at sex determination

Sexual differentiation is fundamentally important for reproduction, yet the genetic triggers of this

Pan‐African phylogeography of a model organism, the African clawed frog ‘<i>Xenopus laevis’</i>

Abstract The African clawed frog Xenopus laevis has a large native distribution over much of sub‐Sa

Design and development of biometric voting system using fingerprint and facial recognition

The election process adopted in Nigeria is mostly paper based or manual. This manually handled proce

African citizenships – A biometric turn?

This chapter examines the boom in new technologies for identifying people that Africa

Naming South African frogs and reptiles in nine Indigenous languages

Scientific taxonomy, as a standardised means of communicating about wildlife, might have limited

Enhancing Biometric Security Using Artificial Neural Network-Based Multimodal Fusion of Facial Recognition and Fingerprint Identification

International audience Biometric authentication systems based on a single modality re