Advancing Taxonomy with Machine Learning: A Hybrid Ensemble for Species and Genus Classification

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Main Authors: Nanni, Loris, De Gobbi, Matteo, De Almeida Matos Junior, Roger, Fusaro, Daniel
Format: Recurso digital
Published: Zenodo 2025
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author Nanni, Loris
De Gobbi, Matteo
De Almeida Matos Junior, Roger
Fusaro, Daniel
author_facet Nanni, Loris
De Gobbi, Matteo
De Almeida Matos Junior, Roger
Fusaro, Daniel
contents <p>ABSTRACT. Traditionally, classifying species has required taxonomic experts to carefully examine unique physical characteristics, a time-intensive and complex process. Machine learning offers a promising alternative by utilizing computational power to detect subtle distinctions more quickly and accurately. This technology can classify both known (described) and unknown (undescribed) species, assigning known samples to specific species and grouping unknown ones at the genus level—an improvement over the common practice of labeling unknown species as outliers. In this paper, we propose a novel ensemble approach that integrates neural networks with support vector machines (SVM). Each animal is represented by an image and its DNA barcode. Our research investigates the transformation of one-dimensional vector data into two-dimensional three-channel matrices using discrete wavelet transform (DWT), enabling the application of convolutional neural networks (CNNs) that have been pre-trained on large image datasets. Our method significantly outperforms existing approaches, as demonstrated on several datasets containing animal images and DNA barcodes. By enabling the classification of both described and undescribed species, this research represents a major step forward in global biodiversity monitoring.</p>
format Recurso digital
id zenodo_https___doi_org_10_5281_zenodo_15034519
institution Zenodo
language
publishDate 2025
publisher Zenodo
record_format zenodo
spellingShingle Advancing Taxonomy with Machine Learning: A Hybrid Ensemble for Species and Genus Classification
Nanni, Loris
De Gobbi, Matteo
De Almeida Matos Junior, Roger
Fusaro, Daniel
ensemble
convolutional neural networks
support vector machine
discrete wavelet
DNA barcode
<p>ABSTRACT. Traditionally, classifying species has required taxonomic experts to carefully examine unique physical characteristics, a time-intensive and complex process. Machine learning offers a promising alternative by utilizing computational power to detect subtle distinctions more quickly and accurately. This technology can classify both known (described) and unknown (undescribed) species, assigning known samples to specific species and grouping unknown ones at the genus level—an improvement over the common practice of labeling unknown species as outliers. In this paper, we propose a novel ensemble approach that integrates neural networks with support vector machines (SVM). Each animal is represented by an image and its DNA barcode. Our research investigates the transformation of one-dimensional vector data into two-dimensional three-channel matrices using discrete wavelet transform (DWT), enabling the application of convolutional neural networks (CNNs) that have been pre-trained on large image datasets. Our method significantly outperforms existing approaches, as demonstrated on several datasets containing animal images and DNA barcodes. By enabling the classification of both described and undescribed species, this research represents a major step forward in global biodiversity monitoring.</p>
title Advancing Taxonomy with Machine Learning: A Hybrid Ensemble for Species and Genus Classification
topic ensemble
convolutional neural networks
support vector machine
discrete wavelet
DNA barcode
url https://doi.org/10.5281/zenodo.15034519