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  1. Xiao ZS, Zhou H, Jiang YL, Samah NA
    World J Psychiatry, 2024 Dec 19;14(12):1793-1796.
    PMID: 39704369 DOI: 10.5498/wjp.v14.i12.1793
    This article examines the critical integration of reflexivity, cultural sensitivity, and emergent design in qualitative psychiatry research focused on lived experiences. While quantitative methods offer essential clinical insights, qualitative approaches provide a deeper understanding of the emotional, psychological, and social dimensions of mental health. Reflexivity enables researchers to remain aware of how their personal biases and professional backgrounds shape data interpretation. Cultural sensitivity ensures that mental health conditions are understood within their broader cultural contexts, helping avoid misrepresentation and promoting authentic participant expression. Emergent design offers flexibility in adapting the research process to evolving themes, particularly in the dynamic and multifaceted realm of psychiatric conditions. Together, these principles promote ethically sound, participant-centered research that captures the full complexity of lived experiences. The article also highlighted the practical implications of these principles for enhancing both academic knowledge and clinical practice in psychiatry.
  2. Chen JC, Fang C, Zheng RH, Hong FK, Jiang YL, Zhang M, et al.
    Mar Environ Res, 2021 May;167:105295.
    PMID: 33714106 DOI: 10.1016/j.marenvres.2021.105295
    Marine biota, especially commercially important species, serves as a basis for human nutrition. However, millions of tons of plastic litter are produced and enter the marine environment every year, with potential adverse impacts on marine organisms. In the present study, we investigated the occurrence and characteristics of microplastic (MP) pollution in the digestive tracts of 13 species of wild nektons from 20 stations sampled in the South China Sea (SCS) and the Indian Ocean (IO), and assessed the human health risks of MPs. The detection rate of MPs ranged from 0.00% to 50.00% from the SCS, which was dramatically lower than that from the IO (10.00-80.00%). The average abundance of MP was 0.18 ± 0.06 items g wet weight-1 (ww-1) in the SCS, which was significantly lower than that in the IO with a concentration of 0.70 ± 0.16 items g ww-1. Most MPs were fibers in type, black in color, and polyester (PES) in polymer composition in both the SCS and IO. Interestingly, distinct profiles of MP pollution were found between the benthic and pelagic nektons: 1) The predominant MP composition was PES in the benthic nektons, whereas polyamide (PA) accounted for a larger part of the total MP count in the pelagic nektons within the SCS; 2) The abundance of MP in the benthic nektons (0.52 ± 0.24 items individual-1) was higher than that in the pelagic nektons (0.30 ± 0.11 items individual-1). Accordingly, the mean hazard score of MPs detected in the benthic nektons (220.66 ± 210.75) was higher than that in the pelagic nektons (49.53 ± 22.87); 3) The mean size of the MP in the pelagic nektons (0.84 ± 0.17 mm) was larger than that in the benthic nektons (0.49 ± 0.09 mm). Our findings highlight the need to further investigate the ecological impacts of MPs on wild nekton, especially commercially important species, and its potential implications for human health.
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