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Currently, protected areas cover approximately 14% of the Earth's land surface, yet 12.2% of the world's bird species remain unprotected by any designated areas and face significant threats. This study investigates the current status of bird conservation in China, aiming to evaluate the effectiveness of existing protected areas, analyze why certain bird species are not adequately protected, and propose strategies for optimizing protected area configurations. Utilizing citizen science data and the zonation optimization algorithm, we comprehensively assessed the conservation value of birds in China. We then employed anthropogenic stressor data to evaluate the conservation of threatened bird habitats through a binary conflict intensity model. Finally, we conducted a spatial overlap analysis to determine the coverage and effectiveness of Chinese nature reserves in regions with high conservation value and high conflict risk. Our findings indicate that only 10.0% of the highest conservation value bird habitats are covered by protected areas, and just 7.3% of these protected areas effectively safeguard these critical habitats. Additionally, only 5.9% of bird habitats impacted by human activity conflicts are within protected areas, and merely 22.0% of the total protected areas can effectively conserve high conflict risk habitats. Overall, China's current protected area system has substantial shortcomings in safeguarding bird habitats and requires further optimization and expansion to maximize conservation benefits.
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http://dx.doi.org/10.1016/j.jenvman.2024.122263 | DOI Listing |
Environ Manage
September 2025
TEMSUS Research Group, Catholic University of Ávila, Ávila, Spain.
Forests have been increasingly affected by natural disturbances and human activities. These impacts have caused habitat fragmentation and a loss of ecological connectivity. This study examines potential restoration pathways that reconnect the five largest forest cores in the Castilla y León region of Spain.
View Article and Find Full Text PDFNat Plants
September 2025
Biological and Environmental Science and Engineering Division, Environmental Science and Engineering, King Abdullah, University of Science and Technology, Thuwal, Kingdom of Saudi Arabia.
Drylands are highly vulnerable to global-scale aridity thresholds that cause drastic reductions in their productivity. While protected areas may help buffer against the impact of aridification, their effectiveness in mitigating the aridity thresholds across global drylands remains virtually unknown. Here we assembled a global dataset of drylands and found that highly protected areas, which include national parks and wilderness areas, can buffer the emergence of aridity thresholds in ecosystem productivity by up to 0.
View Article and Find Full Text PDFBDJ Open
September 2025
Operative Dentistry & Endodontics, Department of Surgery, Aga Khan University Hospital, Karachi, Pakistan.
Background: Artificial Intelligence (AI) has become increasingly integrated into dental diagnostics, particularly for detecting carious lesions. While AI offers benefits such as improved accuracy and efficiency, its use raises important ethical concerns, including transparency, patient privacy, autonomy, diversity and accountability. This scoping review aims to identify these ethical concerns using a structured ethical framework.
View Article and Find Full Text PDFProc Biol Sci
September 2025
Department of Wildlife, Fish and Environmental Studies, Swedish University of Agricultural Sciences, 901 83 Umeå, Västerbotten County, Sweden.
Pharmaceutical contaminants reaching natural aquatic ecosystems can affect fish behaviour, modifying activity patterns, foraging behaviour and antipredator responses. While laboratory-based studies can offer key insights, assessing the ecological relevance of these findings requires field-based approaches. Therefore, we examined the effects of oxazepam, a widely prescribed anxiolytic drug, on the behaviour of a cyprinid fish (the common roach, ) in the wild, combining slow-release exposure implants with continuous tracking via acoustic telemetry.
View Article and Find Full Text PDFMar Pollut Bull
September 2025
Universidad del Mar, Instituto de Industrias, Campus Puerto Ángel, 70902, Puerto Ángel, Oaxaca, Mexico. Electronic address:
Spatial patterns, enrichments and the ecotoxicological risks of potentially toxic elements (PTE: Cd, Cu, Pb, Zn) were evaluated in surface sediments of the Chacahua-Pastoría Lagoon System, the first tropical ecosystem designated as natural protected area along the southern Mexican Pacific Coast. With the exception of a Pb maximum in Chacahua Lagoon, only Cd (0.002-0.
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