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PROGRAM PENDAMPINGAN PENELITIAN: MENINGKATKAN KUALITAS PENELITIAN DAN PUBLIKASI DI JURNAL SCOPUS MELALUI KOLABORASI ANTARA MAHASISWA DAN DOSEN Rachmat Susanto; Ahmad Muktamar; Khoironi Fanana Akbar; Anita Ninasari; Suwarno Suwarno; Agung Widarman
Community Development Journal : Jurnal Pengabdian Masyarakat Vol. 5 No. 6 (2024): Vol. 5 No. 6 Tahun 2024
Publisher : Universitas Pahlawan Tuanku Tambusai

Show Abstract | Download Original | Original Source | Check in Google Scholar | DOI: 10.31004/cdj.v5i6.40180

Abstract

Program pendampingan penelitian ini bertujuan untuk meningkatkan kualitas penelitian dan publikasi ilmiah melalui kolaborasi antara mahasiswa dan dosen. Masalah utama yang dihadapi oleh akademisi Indonesia adalah kurangnya pemahaman teknis dalam menulis artikel ilmiah yang memenuhi standar jurnal internasional serta minimnya pendampingan sistematis. Kegiatan ini dilaksanakan secara daring melalui platform Zoom, melibatkan 42 peserta dari berbagai latar belakang. Metode kegiatan mencakup perencanaan berbasis survei kebutuhan, pelaksanaan pelatihan interaktif, dan evaluasi hasil melalui umpan balik serta penilaian draf artikel peserta. Hasil menunjukkan peningkatan signifikan dalam pemahaman peserta mengenai penelitian dan publikasi ilmiah. Peserta berhasil menyelesaikan draf artikel ilmiah yang siap diajukan ke jurnal bereputasi. Kolaborasi antara mahasiswa dan dosen terbukti efektif dalam menciptakan sinergi yang mendukung peningkatan kualitas penelitian. Kegiatan ini memberikan kontribusi positif terhadap budaya penelitian di Indonesia dan membuka peluang untuk pelaksanaan program serupa di masa depan.
ASSESSING THE IMPACT OF MICROPLASTIC ACCUMULATION ON MARINE BIODIVERSITY AND HUMAN FOOD SECURITY IN COASTAL URBAN REGOINS Khoironi Fanana Akbar; Syafiq Amir; Thabo Mokoena
Research of Scientia Naturalis Vol. 3 No. 2 (2026)
Publisher : Yayasan Adra Karima Hubbi

Show Abstract | Download Original | Original Source | Check in Google Scholar | DOI: 10.70177/scientia.v3i2.4177

Abstract

Accelerating urbanization and increasing plastic consumption have intensified microplastic contamination in coastal environments, raising serious concerns about marine ecosystem degradation and human food security. Persistent microplastic accumulation threatens marine biodiversity through bioaccumulation, trophic transfer, habitat deterioration, and physiological stress while contaminating commercially important seafood species. This study evaluated the ecological impacts of microplastic accumulation on marine biodiversity and food security across coastal urban regions by examining interactions among environmental contamination, ecosystem resilience, fisheries productivity, seafood safety, and environmental governance. A mixed-methods sequential explanatory design was employed using environmental monitoring data from 72 coastal monitoring stations across twelve urban coastal regions. Quantitative analyses included biodiversity assessment, laboratory characterization of microplastics, multivariate statistics, structural equation modeling, hierarchical regression, mediation, and moderation analyses, while qualitative evidence was analyzed through thematic analysis. Findings revealed that increasing microplastic accumulation significantly reduced marine biodiversity, weakened ecosystem resilience, decreased fisheries productivity, and increased seafood contamination. Biodiversity integrity partially mediated environmental contamination and fisheries productivity, whereas environmental governance enhanced ecological resilience through improved waste management and integrated coastal management, supporting long-term ecosystem sustainability and food security in rapidly urbanizing coastal regions.
Mathematical Biology: Modeling the Dynamics of Ecosystems and Biodiversity Khoironi Fanana Akbar; Daiki Nishida; Joni Wilson Sitopu
Research of Scientia Naturalis Vol. 1 No. 6 (2024)
Publisher : Yayasan Adra Karima Hubbi

Show Abstract | Download Original | Original Source | Check in Google Scholar | DOI: 10.70177/scientia.v1i6.1586

Abstract

Background: Mathematical biology plays a crucial role in understanding the dynamics of ecosystems and biodiversity. By employing mathematical models, researchers can analyze complex biological interactions and predict changes within ecosystems over time. This approach is vital for addressing environmental challenges and informing conservation strategies. Objective: This study aims to develop mathematical models that accurately represent the dynamics of ecosystems and the factors influencing biodiversity. The focus is on identifying key interactions between species and their environment, as well as the implications of these interactions for ecosystem stability. Methodology: A combination of differential equations and computational simulations was employed to model various ecological scenarios. Data from field studies and ecological surveys were utilized to parameterize the models, allowing for realistic representations of species interactions and environmental influences. Results: Findings indicate that specific species interactions, such as predation and competition, significantly affect biodiversity and ecosystem dynamics. The models revealed thresholds beyond which ecosystems could shift to alternative stable states, emphasizing the importance of maintaining biodiversity for ecosystem resilience. Conclusion: This research highlights the value of mathematical modeling in the study of ecosystems and biodiversity. By providing insights into the intricate relationships between species and their environment, the study contributes to a better understanding of ecological dynamics and informs effective conservation strategies.