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Cited 1 time in webofscience Cited 2 time in scopus
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Characterization of pelagic communities in the Pacific sector of the Arctic Ocean using a broadband acoustic system, net samplers, and optical instruments

Authors
Kang, MyoungheeAdrianus, AldwinCho, Kyoung-HoKim, Jee-HoonSon, WujuYoo, JaeillYang, Eun JinLa, Hyoung Sul
Issue Date
May-2024
Publisher
Elsevier BV
Keywords
Arctic Ocean; Bongo net; Broadband echosounder; Camera; Frequency spectra
Citation
Journal of Marine Systems, v.244
Indexed
SCIE
SCOPUS
Journal Title
Journal of Marine Systems
Volume
244
URI
https://scholarworks.gnu.ac.kr/handle/sw.gnu/70274
DOI
10.1016/j.jmarsys.2024.103976
ISSN
0924-7963
1879-1573
Abstract
Rising Arctic temperatures are causing substantial declines in sea ice, altering ice retreat and formation in the Pacific Arctic and impacting marine communities. Despite the significant challenges facing the Pacific Arctic, there are still gaps in our understanding of the environmental impacts on pelagic communities, particularly sound scattering layers (SSLs), and their distributions in the southern Chukchi Sea (SCS), northern Chukchi Sea (NCS), and East Siberian Sea (ESS). This study utilized a wideband autonomous transceiver, net samplers, and optical instruments to explore SSLs in the Pacific Arctic, detailing their relationships with hydrographic properties. The findings indicated a greater vertical distribution of pelagic communities in the SCS than in the NCS and ESS. Significant differences in frequency spectra patterns were observed between the SCS and both the NCS and the ESS, though not between the NCS and the ESS. The correlations between the broadband acoustic and hydrographic values were generally weak to moderate. Elevated acoustic values in the SCS were linked to higher water temperature, dissolved oxygen, and chlorophyll and lower salinity. This study also revealed the behavioral properties of individual pelagic animals and identified Ctenophores and Copepods as the most abundant classes based on camera images and net samples. This research offers crucial insights into the distribution and interactions of pelagic communities with environmental factors, laying the groundwork for understanding climate change impacts. Additionally, this paper presents the first findings of frequency spectra from a broadband system in the Arctic Ocean. © 2024
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해양과학대학 (해양경찰시스템학과)
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