Passive acoustic monitoring of Japanese spiny lobster stridulating sounds
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  • 作者:Mumi Kikuchi (1) (3) (5)
    Tomonari Akamatsu (2) (3)
    Tomohiro Takase (4)

    1. The Laboratory of Fisheries Biology
    ; The University of Tokyo ; Yayoi 1-1-1 ; Bunkyoku ; Tokyo ; 113-8657 ; Japan
    3. Japan Science and Technology Agency
    ; CREST ; Gobancho ; Chiyoda-ku ; Tokyo ; 102-0075 ; Japan
    5. Wildlife Research Center of Kyoto University
    ; 2-24 Tanaka Sekiden-cho ; Sakyo-ku ; Kyoto ; 606-8203 ; Japan
    2. National Research Institute of Fisheries Engineering
    ; Fisheries Research Agency ; Hasaki 7620-7 ; Kamisu ; Ibaraki ; 314-0408 ; Japan
    4. Tokyo Metropolitan Islands Area Research and Development Center for Agriculture
    ; Forestry and Fisheries ; Kaigan ; Minatoku ; Tokyo ; 105-0022 ; Japan
  • 关键词:Panulirus japonicus ; Japanese spiny lobster ; Behavior ; Stridulate ; Passive acoustic
  • 刊名:Fisheries Science
  • 出版年:2015
  • 出版时间:March 2015
  • 年:2015
  • 卷:81
  • 期:2
  • 页码:229-234
  • 全文大小:495 KB
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  • 刊物主题:Fish & Wildlife Biology & Management; Freshwater & Marine Ecology; Food Science;
  • 出版者:Springer Japan
  • ISSN:1444-2906
文摘
The Japanese spiny lobster Panulirus japonicus is an important marine resource in Japan. In order to manage its stock, an effective methodology for population assessments is needed. In this study, we focused on the stridulating sounds produced by spiny lobsters. The stridulating sounds are widely accepted to function as an anti-predator signaling, for potential use in monitoring lobster stocks remotely. An underwater sound recorder was attached on gill nets or lobster pots around Izu Oshima and Niijima islands, within the Izu archipelago, Tokyo, Japan, where lobster fishing is common. Stridulating sounds were manually extracted from each data file. The frequency of stridulating sounds tended to increase on nights with a large tidal change. There was a positive correlation between the frequency of stridulating sounds and the number of lobsters caught in the net or lobster pot. Even in trials where no lobsters were caught, several stridulating sounds could be detected and increased at night. In this study, we describe the sound characteristics of the stridulation, and the trend of nocturnal call productions of this species. This study is the first step towards passive acoustic resource monitoring of Japanese spiny lobsters, which were quite difficult to estimate the density of remotely.

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