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Trust-driven approach to enhance early forest fire detection using machine learning

Scientific Reports Tayyab Khan, Karan Singh, Bhoopesh Singh Bhati et al. Apr 25, 2025 DOI: 10.1038/s41598-025-99032-6

Chern networks: reconciling fundamental physics and device engineering

Nature Communications Matthew J. Gilbert Apr 25, 2025 DOI: 10.1038/s41467-025-59162-x

The effect of preparation process on combustibility of Robinia pseudoacacia charcoal and its structure-performance relationship

Scientific Reports Lijuan Gao, Xiaohua Ma, Junxia Cheng et al. Apr 25, 2025 DOI: 10.1038/s41598-025-99467-x

A specific microbial consortium enhances Th1 immunity, improves LCMV viral clearance but aggravates LCMV disease pathology in mice

Nature Communications Daphne Kolland, Miriam Kuhlmann, Gustavo P. de Almeida et al. Apr 25, 2025 DOI: 10.1038/s41467-025-59073-x

Abstract Anti-viral immunity can vary tremendously from individual to individual but mechanistic understanding is still scarce. Here, we show that a defined, low complex bacterial community (OMM12) but not the general absence of microbes in germ-free mice leads to a more potent immune response compared to the microbiome of specific-pathogen-free (SPF) mice after a systemic viral infection with LCMV Clone-13. Consequently, gnotobiotic mice colonized with OMM12 have more severe LCMV-induced disease pathology but also enhance viral clearance in the intestinal tract. Mechanistically, single-cell RNA sequencing analysis of adoptively transferred virus-specific T helper cells and endogenous T helper cells in the intestinal tract reveal a stronger pro-inflammatory Th1 profile and a more vigorous expansion in OMM12 than SPF mice. Altogether, our work highlights the causative function of the intestinal microbiome for shaping adaptive anti-viral immunity with implications for vaccination strategies and anti-cancer treatment regimens.

Optimization of tangential interior brushless DC motor rotor for hybrid vehicles

Scientific Reports Xiaojing Li, Yingbo Zhang, Jiale Wu Apr 25, 2025 DOI: 10.1038/s41598-025-98799-y

Deciphering distinct genetic risk factors for FTLD-TDP pathological subtypes via whole-genome sequencing

Nature Communications Cyril Pottier, Fahri Küçükali, Matt Baker et al. Apr 25, 2025 DOI: 10.1038/s41467-025-59216-0

Robust optical design of high-contrast vehicle headlamps with cylindrical lens array and inverted triangular beam pattern

Scientific Reports Chi-Shou Wu, Ivan Moreno, Chieh-Hsun Liu et al. Apr 25, 2025 DOI: 10.1038/s41598-025-99149-8

T-bet+CD8+ T cells govern anti-PD-1 responses in microsatellite-stable gastric cancers

Nature Communications Shiying Tang, Xiaofang Che, Jinyan Wang et al. Apr 25, 2025 DOI: 10.1038/s41467-025-58958-1

BPIFB4 rs4339026 A > G polymorphism impacts COPD susceptibility in the Kashi population, China

Scientific Reports Jingran Xu, Li Tao, Yanyan Shi et al. Apr 25, 2025 DOI: 10.1038/s41598-025-98599-4

Blockchain-based isotopic big data-driven tracing of global PM sources and interventions

Nature Communications Yuming Huang, Xiangyu Li, Yuehan Wu et al. Apr 25, 2025 DOI: 10.1038/s41467-025-59220-4

Abstract Tracing sources and assessing intervention effectiveness are crucial for controlling atmospheric particulate matter (PM) pollution. Isotopic techniques enable precise top-down tracing, but the absence of long-term, global-scale multi-compound isotopic data limits comprehensive analysis. Here, we establish a blockchain-based isotopic database, compiling 34,815 isotopic fingerprints of global PM and its emissions from 1,890 pollution events across 66 countries. This allows retrospective analysis and predictions, revealing that PM sources are distinct, dynamically changing over time, and often asynchronous with interventions. Additionally, we estimate source contributions to PM2.5 and its compounds, highlighting the increasing impact of biomass burning. Furthermore, projections indicate that by 2100, PM levels may decline to 5.38 ± 0.16 μg/m³ in the Americas and 13.9 ± 1.82 μg/m³ in Asia under climate mitigation scenarios but will still exceed WHO guidelines without further controls on natural emissions. Guiding future interventions with isotopic big data is essential for addressing air pollution challenges.

Development and application of tail brush elastic test device

Scientific Reports Jingkai Li, Jingbo Guo, Shaopu Yang et al. Apr 25, 2025 DOI: 10.1038/s41598-025-99089-3

Wild and domesticated animal abundance is associated with greater late-Holocene alpine plant diversity

Nature Communications Sandra Garcés-Pastor, Peter D. Heintzman, Scarlett Zetter et al. Apr 25, 2025 DOI: 10.1038/s41467-025-59028-2

Abstract In the face of human land use and climate dynamics, it is essential to know the key drivers of plant species diversity in montane regions. However, the relative roles of climate and ungulates in alpine ecosystem change is an open question. Neither observational data nor traditional palaeoecological data have the power to resolve this issue over decadal to centennial timescales, but sedimentary ancient DNA (sedaDNA) does. Here we record 603 plant taxa, as well as 5 wild, and 6 domesticated mammals from 14 lake sediment records over the last 14,000 years in the European Alps. Sheep were the first domesticated animals detected (at 5.8 ka), with cattle appearing at the early Bronze Age (4.2 ka) and goats arriving later (3.5 ka). While sheep had an impact similar to wild ungulates, cattle have been associated with increased plant diversity over the last 2 ka by promoting the diversity of forbs and graminoids. Modelling of the sedaDNA data revealed a significantly larger effect of cattle and wild ungulates than temperature on plant diversity. Our findings highlight the significant alteration of alpine vegetation and the entire ecosystem in the Alps by wild and domesticated herbivores. This study has immediate implications for the maintenance and management of high plant species diversity in the face of ongoing anthropogenic changes in the land use of montane regions.

Snow Leopard habitat vulnerability assessment under climate change and connectivity corridor in Xinjiang Uygur autonomous region, China

Scientific Reports Wei Cong, Jia Li, Yi Zhang et al. Apr 25, 2025 DOI: 10.1038/s41598-025-98909-w

Coeval upper crustal extension and surface uplift in the Central Taurides (Türkiye) above the Cyprus Subduction Zone

Nature Communications Tunahan Aykut, Cengiz Yıldırım, I. Tonguç Uysal et al. Apr 25, 2025 DOI: 10.1038/s41467-024-55802-w

Predictive value of systemic immune inflammation index for infections caused by healthcare in pediatric patients hospitalized to the burn unit

Scientific Reports Berfin Özgökçe Özmen, Merve Türkegün Şengül, Şefika Aldaş et al. Apr 25, 2025 DOI: 10.1038/s41598-025-98258-8

Climate-driven succession in marine microbiome biodiversity and biogeochemical function

Nature Communications Alyse A. Larkin, Melissa L. Brock, Adam J. Fagan et al. Apr 25, 2025 DOI: 10.1038/s41467-025-59382-1

Abstract Seasonal and El Niño-Southern Oscillation (ENSO) warming result in similar ocean changes as predicted with climate change. Climate-driven environmental cycles have strong impacts on microbiome diversity, but impacts on microbiome function are poorly understood. Here we quantify changes in microbial genomic diversity and functioning over 11 years covering seasonal and ENSO cycles at a coastal site in the southern California Current. We observe seasonal oscillations between large-genome lineages during cold, nutrient rich conditions in winter and spring versus small-genome lineages, including Prochlorococcus and Pelagibacter , in summer and fall. Parallel interannual changes separate communities depending on ENSO condition. Biodiversity shifts translate into clear oscillations in microbiome functional potential. Ocean warming induced an ecosystem with less iron but more macronutrient stress genes, depressed organic carbon degradation potential and biomass, and elevated carbon-to-nutrient biomass ratios. The consistent microbial response observed across time-scales points towards large climate-driven changes in marine ecosystems and biogeochemical cycles.

Real-time classroom student behavior detection based on improved YOLOv8s

Scientific Reports Xiaojing Sheng, Suqiang Li, Sixian Chan Apr 25, 2025 DOI: 10.1038/s41598-025-99243-x

Superexchange interaction regulates Ni/Mn spin states triggering Ni-t2g/O-2p reductive coupling enabling stable lithium-rich cathode

Nature Communications Chaoliang Zheng, Yaqing Wang, Huican Mao et al. Apr 25, 2025 DOI: 10.1038/s41467-025-59159-6

Influence of antiretroviral therapy on frailty among people living with HIV

Scientific Reports Enrique Contreras Macías, María de las Aguas Robustillo Cortés, Ramón Morillo Verdugo Apr 25, 2025 DOI: 10.1038/s41598-025-99566-9

Evaluation of fetal exposure to environmental noise using a computer-generated model

Nature Communications Pierre Gélat, Elwin van’t Wout, Reza Haqshenas et al. Apr 25, 2025 DOI: 10.1038/s41467-025-58983-0

Abstract Acoustic noise can have profound effects on wellbeing, impacting the health of pregnant women and their fetus. Mounting evidence suggests neural memory traces are formed by auditory learning in utero. A better understanding of the fetal auditory environment is therefore critical to avoid exposure to damaging noise levels. Using anatomical data from MRI scans of pregnant patients ( $$N=4$$ N = 4 ) from 24 weeks of gestation, we develop a computational model to quantify fetal exposure to acoustic field. We obtain acoustic transfer characteristics across the human audio range and pressure maps in transverse planes passing through the uterus at 5 kHz, 10 kHz and 20 kHz, showcasing multiple scattering and modal patterns. Our calculations show that the sound transmitted in utero is attenuated by as little as 6 dB below 1 kHz, confirming results from animal studies that the maternal abdomen and pelvis do not shelter the fetus from external noise.