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Analysis of Mouse Vocal Communication (AMVOC): a deep, unsupervised method for rapid detection, analysis and classification of ultrasonic vocalisations

Publication ,  Journal Article
Stoumpou, V; Vargas, CDM; Schade, PF; Boyd, JL; Giannakopoulos, T; Jarvis, ED
Published in: Bioacoustics
January 1, 2023

Some aspects of the neural mechanisms underlying mouse ultrasonic vocalisations (USVs) are a useful model for the neurobiology of human speech and speech-related disorders. Much of the research on vocalisations and USVs is limited to offline methods and supervised classification of USVs, hindering the discovery of new types of vocalisations and the study of real-time free behaviour. To address these issues, we developed AMVOC (Analysis of Mouse VOcal Communication) as a free, open-source software to detect and analyse USVs. When compared to hand-annotated ground-truth USV data, AMVOC’s detection functionality (both offline and online) has high accuracy and outperforms leading methods in noisy conditions. AMVOC also includes an unsupervised deep learning approach that facilitates discovery and analysis of USV data by training a model and clustering USVs based on latent features extracted by a convolutional autoencoder. The clustering is visualised in a graphical user interface (GUI) which allows users to evaluate clustering performance. These results can be used to explore the vocal repertoire space of individual animals. In this way, AMVOC will facilitate vocal analyses in a broader range of experimental conditions and allow users to develop previously inaccessible experimental designs for the study of mouse vocal behaviour.

Duke Scholars

Published In

Bioacoustics

DOI

EISSN

2165-0586

ISSN

0952-4622

Publication Date

January 1, 2023

Volume

32

Issue

2

Start / End Page

199 / 229

Related Subject Headings

  • Behavioral Science & Comparative Psychology
  • 3109 Zoology
  • 0608 Zoology
 

Citation

APA
Chicago
ICMJE
MLA
NLM
Stoumpou, V., Vargas, C. D. M., Schade, P. F., Boyd, J. L., Giannakopoulos, T., & Jarvis, E. D. (2023). Analysis of Mouse Vocal Communication (AMVOC): a deep, unsupervised method for rapid detection, analysis and classification of ultrasonic vocalisations. Bioacoustics, 32(2), 199–229. https://doi.org/10.1080/09524622.2022.2099973
Stoumpou, V., C. D. M. Vargas, P. F. Schade, J. L. Boyd, T. Giannakopoulos, and E. D. Jarvis. “Analysis of Mouse Vocal Communication (AMVOC): a deep, unsupervised method for rapid detection, analysis and classification of ultrasonic vocalisations.” Bioacoustics 32, no. 2 (January 1, 2023): 199–229. https://doi.org/10.1080/09524622.2022.2099973.
Stoumpou V, Vargas CDM, Schade PF, Boyd JL, Giannakopoulos T, Jarvis ED. Analysis of Mouse Vocal Communication (AMVOC): a deep, unsupervised method for rapid detection, analysis and classification of ultrasonic vocalisations. Bioacoustics. 2023 Jan 1;32(2):199–229.
Stoumpou, V., et al. “Analysis of Mouse Vocal Communication (AMVOC): a deep, unsupervised method for rapid detection, analysis and classification of ultrasonic vocalisations.” Bioacoustics, vol. 32, no. 2, Jan. 2023, pp. 199–229. Scopus, doi:10.1080/09524622.2022.2099973.
Stoumpou V, Vargas CDM, Schade PF, Boyd JL, Giannakopoulos T, Jarvis ED. Analysis of Mouse Vocal Communication (AMVOC): a deep, unsupervised method for rapid detection, analysis and classification of ultrasonic vocalisations. Bioacoustics. 2023 Jan 1;32(2):199–229.

Published In

Bioacoustics

DOI

EISSN

2165-0586

ISSN

0952-4622

Publication Date

January 1, 2023

Volume

32

Issue

2

Start / End Page

199 / 229

Related Subject Headings

  • Behavioral Science & Comparative Psychology
  • 3109 Zoology
  • 0608 Zoology