DocumentCode :
601352
Title :
Counting animals using vocalizations; a case study in dolphins
Author :
Akamatsu, Takafumi ; Ura, Tamaki ; Sugimatsu, Harumi ; Bahl, Rajendar ; Behera, Sandeep ; Panda, Siddhartha ; Khan, Mahrukh ; Kar, S.K. ; Kar, C.S. ; Kimura, Shunji ; Sasaki-Yamamoto, Y.
Author_Institution :
Nat. Res. Inst. of Fisheries Eng., Fisheries Res. Agency, Kamisu, Japan
fYear :
2013
fDate :
5-8 March 2013
Firstpage :
1
Lastpage :
4
Abstract :
Abundance estimation of marine mammals requires matching of detection of an animal or a group of animals by two independent means. A multimodal detection model using visual and acoustic cues (surfacing and phonation) that enables abundance estimation of dolphins is proposed. The method does not require a specific time window to match the cues of both means for applying mark-recapture method. The proposed model was evaluated using data obtained in field observations of Ganges River dolphins and Irrawaddy dolphins, as examples of dispersed and condensed distributions of animals, respectively. The acoustic detection probability was approximately 80 %, 20 % higher than that of visual detection for both species, regardless of the distribution of the animals in the present study sites. The abundance estimates of Ganges River dolphins and Irrawaddy dolphins fairly agreed with the numbers reported in previous monitoring studies. The single animal detection probability was smaller than that of larger cluster size, as predicted by the model and confirmed by field data. However, dense groups of Irrawaddy dolphins showed difference in cluster sizes observed by visual and acoustic methods. Lower detection probability of single clusters of this species seemed to be caused by the clumped distribution of this species.
Keywords :
acoustic signal detection; bioacoustics; quantisation (signal); Ganges River dolphins; abundance estimation; acoustic detection probability; case study; clumped distribution; counting animals; independent means; marine mammals; mark-recapture method; multimodal detection model; visual detection; vocalizations; Acoustics; Dolphins; Educational institutions; Rivers; TV; Visualization;
fLanguage :
English
Publisher :
ieee
Conference_Titel :
Underwater Technology Symposium (UT), 2013 IEEE International
Conference_Location :
Tokyo
Print_ISBN :
978-1-4673-5948-1
Type :
conf
DOI :
10.1109/UT.2013.6519845
Filename :
6519845
Link To Document :
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