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Acoustic camera system for measuring ultrasound communication in mice.


ABSTRACT: To investigate biological mechanisms underlying social behaviors and their deficits, social communication via ultrasonic vocalizations (USVs) in mice has received considerable attention as a powerful experimental model. The advances in sound localization technology have facilitated the analysis of vocal interactions between multiple mice. However, existing sound localization systems are built around distributed-microphone arrays, which require a special recording arena and long processing time. Here, we report a novel acoustic camera system, USVCAM, which enables simpler and faster USV localization and assignment. The system comprises recently developed USV segmentation algorithms with a modification for overlapping vocalizations that results in high accuracy. Using USVCAM, we analyzed USV communications in a conventional home cage, and demonstrated novel vocal interactions in female ICR mice under a resident-intruder paradigm. The extended applicability and usability of USVCAM may facilitate future studies investigating typical and atypical vocal communication and social behaviors, as well as the underlying mechanisms.

SUBMITTER: Matsumoto J 

PROVIDER: S-EPMC9379670 | biostudies-literature | 2022 Aug

REPOSITORIES: biostudies-literature

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Acoustic camera system for measuring ultrasound communication in mice.

Matsumoto Jumpei J   Kanno Kouta K   Kato Masahiro M   Nishimaru Hiroshi H   Setogawa Tsuyoshi T   Chinzorig Choijiljav C   Shibata Tomohiro T   Nishijo Hisao H  

iScience 20220721 8


To investigate biological mechanisms underlying social behaviors and their deficits, social communication via ultrasonic vocalizations (USVs) in mice has received considerable attention as a powerful experimental model. The advances in sound localization technology have facilitated the analysis of vocal interactions between multiple mice. However, existing sound localization systems are built around distributed-microphone arrays, which require a special recording arena and long processing time.  ...[more]

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