Logo Lanfrica
  • Accueil
  • Atlas
  • Analyses
  • Documentation
  • Sign in

© 2026 Lanfrica. Tous droits réservés. Tous les droits d'auteur des ressources affichées sur le site Web Lanfrica appartiennent aux détenteurs de droits d'auteur d'origine, sauf indication contraire explicite.

An acoustic spatially explicit capture-recapture method for estimating vocalising amphibian density

Domaine:

environment and energy

Type de record:

paper
Créateur:
G.
Éditeur:
DavResBenRen
Éditeur:
Sou
Hôte:avatar
Current methods for the assessment of amphibian population abundance and density are either invasive and time-consuming, or qualitative and subject to unquantifiable observer biases. 2. We propose an acoustic spatially explicit capture-recapture (SECR) method to estimate population abundance and density for calling frog species, which avoids the problems above. It produces an estimate of call density which can be converted to frog density by using call rate data. Time-of-arrival and signal strength data are used to achieve better accuracy than is possible using a standard SECR approach. Lack of independence of detections is a problem when individuals can't be identified from their call, and we suggest a bootstrap-like approach to calculate standard errors and interval estimates. 3. We estimate frog density and associated uncertainty from an acoustic survey of the Cape Peninsula moss frog Arthroleptella lightfooti. Through simulation studies, we show that our method leads to unbiased density estimates and standard errors. 4. This acoustic SECR approach is cheaper, faster, and more statistically rigorous than other approaches of monitoring calling anuran populations. Our method has wider applications, and can be used for many species that can be detected on a microphone array.

Visit

doi.orgapi.odp.saeon.ac.za

Tags

AmphibianDensity EstimateVocalisationCape PeninsulaSouth AfricaCape Peninsula Moss FrogAnuran PopulationsArthroleptella lightfootiSAEON

Similaires

Camera trapping and spatially explicit capture–recapture for the monitoring and conservation management of lions: Insights from a globally important population in TanzaniaAn open-source method for spatially and temporally explicit herbivory monitoring in semi-arid savannasCounting the spots: The use of a spatially explicit capture–recapture technique and <scp>GPS</scp> data to estimate leopard (<i>Panthera pardus</i>) density in the Eastern and Western Cape, South AfricaData and code from: Estimating large carnivore populations in an arid fenced reserve using spatial capture-recapture modellingEstimating Leopard population sizes in western Mozambique using SNP-based capture–mark–recapture modelsA spatial capture–recapture model for group‐living species

Camera trapping and spatially explicit capture–recapture for the monitoring and conservation management of lions: Insights from a globally important population in Tanzania

Abstract

An open-source method for spatially and temporally explicit herbivory monitoring in semi-arid savannas

Effective management of protected areas is crucial for addressing the global biodiversity crisis. In

Counting the spots: The use of a spatially explicit capture–recapture technique and <scp>GPS</scp> data to estimate leopard (<i>Panthera pardus</i>) density in the Eastern and Western Cape, South Africa

Abstract Estimating species population density directly contributes to the conservation of species.

Data and code from: Estimating large carnivore populations in an arid fenced reserve using spatial capture-recapture modelling

Large carnivore populations in fenced protected areas require robust density estimates to inform ma

Estimating Leopard population sizes in western Mozambique using SNP-based capture–mark–recapture models

Abstract Reliable population size estimates are imperative for effective conservati

A spatial capture–recapture model for group‐living species

Abstract Group living in species can have complex consequences for individuals, populations, and ec