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ISSN 1844-8143 (print) · ISSN 1844-9166 (online)
AACL Bioflux / Article

Global research trends and innovation pathways in trap fisheries from 2000 to 20...

Research Article
Global research trends and innovation pathways in trap fisheries from 2000 to 2025: a bibliometric analysis
Fijwal Patangngari, Musbir Musbir
Doctoral Program in Fisheries Science, Faculty of Marine Science and Fisheries, Hasanuddin University, Tamalanrea, Makassar, South Sulawesi, Indonesia. Corresponding author: M. Musbir, musbir_unhas@yahoo.co.id; musbir@unhas.ac.id
Published2026
JournalAACL Bioflux
Volume / Issue19(4)/2026
Pagespp. 1931-1948
AccessOpen Access

Abstract

This study examined global research trends and innovation pathways in trap fisheries using bibliometric indicators from Scopus-indexed publications between 2000 and 2025. A PRISMA-style selection workflow was applied through Scopus TITLE-ABS-KEY searching, duplicate removal, and Python-assisted screening of titles, abstracts, and keywords. From 1,798 initial records, 605 strongly relevant journal articles were retained for bibliometric analysis using Biblioshiny and VOSviewer. The results show that trap fisheries research has expanded steadily, with an annual growth rate of 4.93%, involving 2,090 authors across 205 publication sources. The field was predominantly collaborative, with an average of 4.2 co-authors per document and international co-authorship representing 21.98% of the corpus. Thematic analysis indicated that trap fisheries research was mainly concentrated on species composition and biodiversity, trap design and fishing technology, habitat and ecosystem impacts, monitoring and data analytics, and fisheries management. In contrast, more specific themes such as bycatch mitigation, gear selectivity, ghost fishing, and fyke-net or set-net fisheries were less represented, although they are increasingly relevant in recent studies. Overall, this study provides a structured overview of the intellectual development of trap fisheries research and highlights the need for stronger integration between passive fishing gear technology, ecological sustainability, and data-driven fisheries management.

Keywords

bibliometric analysis Biblioshiny passive fishing gear Scopus trap fisheries VOSviewer
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