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Specific dynamic facial expression evoked responses show distinct perceptual and attentional features in autism connected to social communication and GABA phenotypes

Scientific Reports Daniela Sousa, Ana Ferreira, Helena Catarina Pereira et al. Aug 04, 2025 DOI: 10.1038/s41598-025-12376-x

Reliability of a German version of the Kansas City Cardiomyopathy Questionnaire (KCCQ) administered via telephone

Scientific Reports Martha Schutzmeier, Viktoria Rücker, Jonas Widmann et al. Aug 04, 2025 DOI: 10.1038/s41598-025-14179-6

Abstract To date, there is no validated telephone version of the Kansas City Cardiomyopathy Questionnaire (KCCQ) available to collect data about health-related quality of life among patients with heart failure (HF). We assessed the reliability of the German KCCQ administered via telephone in comparison to the self-administered version. Patients with HF admitted to the outpatient clinic of the University Hospital Würzburg were consecutively identified and recruited. Patients completed (a) the self-administered version of the KCCQ, and (b) the telephone-based interview performed by trained raters. The sequence of both approaches was randomized. For the between-method agreement, the intraclass correlation coefficient (ICC) was calculated using a non-parametric, rank-based approach. We analysed data from sixty-one HF patients. The median KCCQ overall summary score was 84.8 (interquartile range (IQR) 71.6–76.9). The test-retest reliability between the self-administered and the telephone interview showed good agreement for the total symptom score, the clinical score and the overall summary core: ICC 0.75, 95 % confidence interval (CI) 0.72–0.79; ICC 0.80, CI 0.77–0.84; ICC 0.83, CI 0.80–0.86, respectively. The German KCCQ administered via telephone showed good test-retest reliability, indicating its applicability to collect data about health status among HF patients over the phone.

Evaluating microstructural and machine learning predictive models for friction drilling of sustainable snail shell reinforced aluminium matrix composites

Scientific Reports Rajesh Jesudoss Hynes Navasingh, R. Sankaranarayanan, Priyanka Mishra et al. Aug 04, 2025 DOI: 10.1038/s41598-025-12555-w

Influence of dynamic changes of ocular biometric parameters on new-onset myopia in Chinese children: a 4-year cohort study

Scientific Reports Zengrui Zhang, Jingyu Mu, Yanrong Yang et al. Aug 04, 2025 DOI: 10.1038/s41598-025-14453-7

Research on the synergistic evolution of land use transformation and ecosystem service value in the Anning River Basin

Scientific Reports Zitong Li, Bin Zhang, Jun Luo et al. Aug 04, 2025 DOI: 10.1038/s41598-025-12657-5

Network epidemiological analysis of COVID-19 transmission patterns by age, occupation and residence across four waves in Cyprus

Scientific Reports Pavlos Alexandros Dimitriou, Valentinos Silvestros, Elisavet Constantinou et al. Aug 04, 2025 DOI: 10.1038/s41598-025-14267-7

Experimental study on the impact of water flow velocity on internal erosion of granite residual soil

Scientific Reports Shaofeng Wan, Hong Pan, Guanyong Luo et al. Aug 04, 2025 DOI: 10.1038/s41598-025-06012-x

Abstract The internal erosion effect causes fine particles in the soil to move through seepage, and the loss of these fine particles leads to changes in porosity, which in turn affects the soil’s hydraulic properties and mechanical performance, posing a threat to the safety of dam and levee engineering. To understand the formation and development of internal erosion under reverse seepage, a simulation test device for internal erosion was designed, and experiments were conducted on three granite residual soil samples with identical soil properties under different water flow speeds (25 L/H, 50 L/H, and 100 L/H). By comparing and analyzing the wetting front, the amount of internal erosion, and the water content, the influence of water flow speed on reverse seepage internal erosion was studied. The results show that under reverse internal erosion, as the water flow speed increases, the internal erosion rate accelerates, as evidenced by the faster advancement of the wetting front and the increase in cumulative internal erosion. As internal erosion develops, the fine particle accumulation curve enters a stable phase. After the soil’s water content reaches its peak, it slightly decreases and then remains relatively stable. Fluctuations in the soil water content occur due to the formation of preferential internal erosion channels or the redeposition of fine particles. The soil particle movement, fine particle loss, and redeposition caused by internal erosion create an internal erosion channel that narrows from the inlet to the outlet.

Damage evolution of Cu-inductors used for electromagnetic forming

Scientific Reports Lisa-Marie Rymer, Lisa Winter, Maik Linnemann et al. Aug 04, 2025 DOI: 10.1038/s41598-025-14135-4

Abstract Electromagnetic forming (EMF) is a high-speed forming technology using the interactions of pulsed currents and magnetic fields to apply Lorentz forces to electrically conductive workpieces. The damage behavior of Cu-inductors used for EMF was investigated by electron microscopy, particularly electron backscatter diffraction (EBSD) and energy dispersive x-ray spectroscopy (EDS). The process-specific electrical-thermo-mechanical load leads to plastic deformations on the inductor and melting and re-solidification of grain boundaries. Both weaken the inductor material. Cracks propagate at grain boundaries, where the thermo-mechanical load is concentrated, and become larger after each discharge. As a result, blowholes form, which cause failure of the inductor. Annealing and recrystallization processes as well as local melting at grain boundaries and formation of blowholes due to joule heating are probably the origin of the damage evolution during EMF. Understanding the correlations of these microstructural mechanisms will enable targeted heat treatment for wear-resistant inductors in the future.

Elucidating the impact of soil’s physico-chemical properties and seasonal variation on earthworm distribution in flood-prone areas of Harike wetland, India

Scientific Reports Ankeet Bhagat, Madan Lal, Anu Bala Chowdhary et al. Aug 04, 2025 DOI: 10.1038/s41598-025-12118-z

Predicting head and neck cancer response to radiotherapy with a chemokine-based model

Scientific Reports Jinzhi Lai, Rongfu Huang, Jingshan Huang Aug 04, 2025 DOI: 10.1038/s41598-025-13346-z

Abstract Radiotherapy resistance remains a major challenge in Head and neck squamous cell carcinoma (HNSCC) treatment. This study aimed to develop a chemokine-based model for predicting radiosensitivity in HNSCC using a retrospective analysis of 432 patients from the TCGA database. We identified a model incorporating CXCL2, CCL28, and CCR8 expression that effectively stratified patients into radiosensitive (RS) and radioresistant (RR) groups. Patients in the RS group demonstrated significantly improved overall survival (OS) with radiotherapy, whereas this prognostic advantage was not observed in the non-radiotherapy group. Notably, patients within the RS group with high PD-L1 expression exhibited even better OS and increased immune infiltration, indicating a synergistic relationship between radiosensitivity and PD-L1 expression. Further analyses revealed enrichment of immune-related pathways and higher effector immune cell abundance in the RS group, suggesting greater potential for immunotherapy response. Corroborating these findings, analysis of the GSE40020 cohort showed significant upregulation of CCL28 in patients with complete response compared to those with post-treatment failure. In vitro experiments using radiosensitive and radioresistant Tongue squamous cell carcinoma (TSCC) cell lines validated the association between chemokine gene expression and radiosensitivity. Our model provides a valuable tool for identifying HNSCC patients who may benefit from combined treatment strategies incorporating synergistic anti-tumor agents.

An integrated predictive model for Alzheimer’s disease progression from cognitively normal subjects using generated MRI and interpretable AI

Scientific Reports Atefe Aghaei, Mohsen Ebrahimi Moghaddam Aug 04, 2025 DOI: 10.1038/s41598-025-13478-2

Late Miocene speleothems show significant warming, temperate vegetation, and wildfires in Arctic Siberia

Scientific Reports Stuart Umbo, Sina Panitz, Julia Homann et al. Aug 04, 2025 DOI: 10.1038/s41598-025-12287-x

Abstract Climate driven northward boreal forest expansion into the tundra biome controlled by permafrost will play a major role in global emissions trajectories. Yet our limited understanding of the interplay between vegetation and permafrost makes predictions of changing boreal forest extent difficult. We analyse fossil pollen, stable carbon isotopes, and lignin and levoglucosan biomarkers from Tortonian speleothems (8.68 ± 0.09 Ma) from the Lena River Delta (N72.27°, E126.94°) in Arctic Siberia to infer palaeotemperature, precipitation, vegetation and fire regimes. The Tortonian provides a potential analogue for near future climate warming under extreme emissions scenarios, with global mean global temperature ca. 4.5°C above modern and atmospheric CO2 concentrations similar to present. We find evidence for a mixed forest regime, capable of maintaining wildfires, in a region currently dominated by tundra. Future transition to a similarly temperate regime would have large-scale impacts on the global carbon cycle.

Optimization of antibacterial and antifungal activities in Moroccan saffron by-products using mixture design and simplex centroid methodology

Scientific Reports Abdellah Baraich, Amine Elbouzidi, Naoufal El Hachlafi et al. Aug 04, 2025 DOI: 10.1038/s41598-025-07424-5

Supplementation of a new combination of prebiotic and postbiotic shapes fecal microbiota of old dogs while influencing immune parameters

Scientific Reports A. Rodiles, W. Wambacq, C. Le Bourgot et al. Aug 04, 2025 DOI: 10.1038/s41598-025-10280-y

Abstract Healthy senior dogs were subjected for 77 days to a dietary regime with (or without) prebiotic + postbiotic mixture composed by short-chain fructo-oligosaccharides and yeast fractions (scFOS+). Their fecal microbiota was studied and the links between the microbiota and immune parameters were investigated after Lyme vaccination. All along the study results showed a clear modulation of the microbiota with a higher relative abundance (RA) for Megamonas spp., Bacteroidaceae, Bacteroidetes plebeius, Clostridiales, Phascolarctobacterium, Succinivibrionaceae, Fusobacterium spp. in feces from scFOS + dogs. An amplicon sequence variants (ASVs) index (Enterobacteriaceae + Clostridium spiroforme vs. Fusobacterium + Megamonas) was developed and found significantly different between the groups with scFOS + dogs showing a lower index suggesting a possible modulation of the physico-chemical environment in the gut, favoring the growth of strict anaerobes producing short-chain fatty acids. Phylogenetic Investigation of Communities by Reconstruction of Unobserved States (PICRUSt2) analysis revealed stimulation of propionate and acetate production pathways, vitamin biosynthesis (vitamin B2, B5 and B9 precursors) and pathways related to tricarboxylic acid cycle in the scFOS + group. The RA of several ASVs from Bacteroidetes and Fusobacteria families were found moderately negatively correlated to IgA and IgG concentrations (P < 0.05). In particular, Megamonas and Phascolarctobacterium appeared as interest genera. In summary, scFOS + is a good candidate to support the health of elderly dogs through microbiota changes. Metabolomics or in vitro mechanistic experiments will be crucial to further understand the mechanisms at play.

Thermal radiation effects on nanofluid flow over a vertical cone in the presence of pressure work

Scientific Reports Mohamed Fathy, Emad A. Sayed Aug 04, 2025 DOI: 10.1038/s41598-025-10554-5

Abstract This study examines the effect of thermal radiation on nanofluid flow and heat transfer over a truncated cone in the presence of pressure work, a problem critical for thermal management and industrial cooling systems. Using similarity transformations, the governing equations are converted into coupled nonlinear partial differential equations and solved numerically via the Legendre collocation method. It gives a high degree of consistency between the proposed numerical solutions and the results previously reported under specific cases. The Prandtl number, pressure work parameter, radiation parameter, and nanoparticle volume fraction all have a major impact on flow and thermal behavior, according to the main results. Nanofluids enhance the transfer of heat by 10–40% when compared to pure fluid, cooling speeds up, and surface strength and hardness improve. Also, the kinds of nanofluid and the parameters related to the volume percentage of nanoparticles are crucial in determining the flow behavior. The surface mechanical properties are advanced by using 10% nanoparticle nanofluid rather than 5%. It has been discovered that the strength and hardness of the surface will enhance with an increase in the pressure work parameter when employing Cu-water nanofluid, but they will decrease with an increase in the thermal radiation parameter values. The novelty of this work lies in the application of the Legendre collocation method to this problem, along with new quantitative insights into how pressure work and radiation interact with nanofluids, providing practical guidelines for optimizing thermal and mechanical performance in industrial systems.

Soybean reproductive physiology as affected by sublethal rates of auxin mimic herbicides

Scientific Reports Koffi Badou-Jeremie Kouame, Benjamin C. Thrash, Nick R. Bateman et al. Aug 04, 2025 DOI: 10.1038/s41598-025-14066-0

Subcellular and macrostructural immediate responders to airblast traumatic brain injury

Scientific Reports Pratheepa Kumari Rasiah, Jacob Hardenburger, Han Dong et al. Aug 04, 2025 DOI: 10.1038/s41598-025-13288-6

Hematological analysis of alpha-thalassemia: A single-center, retrospective clinical study

PLoS ONE Lin Zheng, Nuolan Yin, Meiying Wang et al. Aug 04, 2025 DOI: 10.1371/journal.pone.0329365

Objectives To determine the optimal cutoffs of the three indicators (MCV, MCH and HbA2) for alpha-thalassemia screening and to evaluate the validity of these indicators in Fujian Province, China. Methods We conducted a retrospective analysis on the results of specimens received from May 2016 to April 2023. Receiver operating characteristic (ROC) curves were used to confirm the optimal cutoffs of the screening indicators. And the effectiveness of different combined screening methods was evaluated in patients with and without alpha-thalassemia. Results The optimal cutoffs of MCV, MCH, and HbA2 were 77.85, 27.05 and 2.55, respectively. Among them, the area under the ROC curve of MCH was 0.912, and it was the best of the three parameters used for alpha-thalassemia screening. Conclusions The results can help clinicians and laboratory technicians perform genetic counseling and prenatal diagnosis for patients. It also provide a reference for alpha-thalassemia genotype distributions in our region and the optimal cutoff values of MCV, MCH and HbA2.

Correction: Causes of delays in construction projects in the Province of Aceh, Indonesia

PLoS ONE Anita Rauzana, Wira Dharma Aug 04, 2025 DOI: 10.1371/journal.pone.0329775

Evaluation of an alternative positive control strain of Salmonella enterica subsp. enterica serovar Typhimurium for microbial assays

PLoS ONE Yu-Si Lee, Su-Hyeon Joung, Yongchjun Park et al. Aug 04, 2025 DOI: 10.1371/journal.pone.0329363

Officially certified microbiological testing methods utilize positive control strains to enhance experimental reproducibility and ensure standardized procedures among experimenters. Salmonella enterica subsp. enterica serovar Typhimurium ATCC 14028 is designated as a positive control strain for microbiological testing by the International Organization for Standardization, the Korean Pharmacopoeia, and Ministry of Food and Drug Safety (MFDS) foodborne investigation methods. However, using such foreign strains involves complicated import procedures and significant financial burdens. In this study, we aimed to select a domestic isolate strain that can replace S. Typhimurium ATCC 14028. The target strains used were S. Typhimurium strains preserved in the Korean Culture Collection for foodborne pathogens (MFDS). To confirm the equivalent characteristics between the candidate strains and the positive control strain, biochemical and molecular characterization were performed according to the methods specified in ISO test methods, the Food Code, and the MFDS food poisoning investigation methods. After biochemical and molecular biological analyses on 19 S. Typhimurium strains, only those exhibiting equivalent characteristics underwent whole-genome sequencing. In the biochemical characterization, two strains showed different results in the citrate utilization test. Excluding these, the remaining 17 strains were subjected to molecular analysis (PCR), and all showed identical genetic profiles to the positive control strain. Ultimately, whole-genome sequencing of the 17 selected candidate strains revealed that strains 1004022 and 1004023 shared the same sequence type (ST19) as S. Typhimurium ATCC 14028, exhibited fewer than 20 SNPs, and showed 99.94% genomic homology. Therefore, S. Typhimurium MFDS 1004022 and 1004023 were proposed as suitable domestic alternative to the imported strain. It is anticipated that the distribution of these alternative strains to microbiological testing laboratories will contribute to food safety management by supporting microbial testing and analysis.