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Meta Analysis ? AI-assigned paper type based on the abstract. Classification may not be perfect — flag errors using the feedback button. Tier 1 ? Systematic review or meta-analysis. Synthesizes findings across many studies. Strongest evidence. Marine & Wildlife Sign in to save

Meta-Analysis of the Causality of Deformations in Marine Fish Larvae Culture

Research Square (Research Square) 2023 1 citation ? Citation count from OpenAlex, updated daily. May differ slightly from the publisher's own count. Score: 40 ? 0–100 AI score estimating relevance to the microplastics field. Papers below 30 are filtered from public browse.
Hatice Tekoğul, Hülya Sayğı, Hülya Sayğı, Kürşat Fırat, Müge Aliye Heki̇moğlu, Kürşat Fırat, Şahin Saka, Müge Aliye Heki̇moğlu, Şahin Saka, Cüneyt Suzer, Osman Özden, Cüneyt Suzer, Osman Özden, Hatice Tekoğul, Fatih Güleç, Fatih Güleç, Deniz Çoban Deniz Çoban

Summary

This meta-analysis found that 46% of skeletal deformities in farmed marine fish larvae occur in the spine and 37% in the head, with negative effects on fish welfare and production regardless of region, developmental stage, or detection method. While focused on aquaculture rather than microplastics directly, larval deformities in fish have been linked to microplastic and nanoplastic exposure in recent experimental studies.

Body Systems
Study Type Review

Abstract The development of deformities in farmed fish is largely the result of abiotic, biotic, and xenobiotic factors, information deficiencies in optimizing nutrition, and the genetic background to which the fish are exposed in their early life stages. In general, skeletal anomalies are considered to have significant adverse effects on animal welfare, biological performance of farmed fish, product quality and production costs. In the data obtained by the meta-analysis method, the presence of negative effects on the formal structures of fish was found, regardless of the region, duration, stage, factor, stock density, and method used to detect deformation. In this regard, in the studies considered within the deformation region/type, 46% of deformities were found in the spine, 37% in the head, and 16% in the total skeleton. In turn, the results of the meta-analysis showed that the percentages of the apparent value were 35.82% in the spine, 33.12% in the skeleton, and 31.06% in the head. The deformation rate had an overall negative effect on the functional characteristics of the fish, regardless of the variables considered. In addition, all statistically significant individual response variables had a negative effect size. In the future, advanced statistical tools such as Bayesian meta-analysis, network meta-analysis, and meta-regression analysis can be used to explore more complex data structures. The rapid development of artificial intelligence techniques will increase the efficiency of data collection and the robustness of results for meta-analysis studies in aquaculture and other fields.

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