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Search Results (14,739)

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16 pages, 552 KB  
Article
Safety of Lactiplantibacillus plantarum K014 in Healthy Adults: A Randomized, Double-Blind, Placebo-Controlled, Parallel-Group Trial
by Kar Shin Goh, Chee Ping Chong, Joo Shun Tan, Rhu Yann Ho, Zhang Jin Ng, Ahmad Zaimi bin Abdul Latiff, Sulosanah Sinnasamy and Mohd Hisyamuddin Seberi
Nutrients 2026, 18(9), 1406; https://doi.org/10.3390/nu18091406 - 29 Apr 2026
Abstract
Background and aims: Lactiplantibacillus plantarum is a widely studied probiotic species with well-documented benefits for gastrointestinal function and immune modulation. However, probiotic effects are strain-specific, and the safety of newly identified strains must be clinically established. L. plantarum K014, isolated from traditionally fermented [...] Read more.
Background and aims: Lactiplantibacillus plantarum is a widely studied probiotic species with well-documented benefits for gastrointestinal function and immune modulation. However, probiotic effects are strain-specific, and the safety of newly identified strains must be clinically established. L. plantarum K014, isolated from traditionally fermented vegetables, has not previously been evaluated in human subjects. This study aimed to evaluate the safety and tolerability of L. plantarum K014 in healthy Malaysian adults by assessing its effects on anthropometric measures, hematological indices, liver and renal function, gastrointestinal health, and selected immune-related outcomes, including the incidence and severity of common cold symptoms. Methods: This single-center, randomized, double-blind, placebo-controlled trial was conducted over a 6-month period. Of 304 healthy adults screened, 152 were enrolled and randomized in a 1:1 ratio to receive either L. plantarum K014 (≥1 × 109 CFU/day) or placebo (maltodextrin), administered daily in sachet form; 125 participants completed the study. Clinical assessments, including physical examination, anthropometric measurements, and blood analyses, were performed at baseline, Month 4, and Month 6. Gastrointestinal symptoms, stool characteristics, and immune-related outcomes were monitored weekly using structured online questionnaires. Results: L. plantarum K014 was well tolerated, with no probiotic-related adverse events reported. No clinically significant changes were observed in body weight, BMI, hematological indices, or renal function in either group. Exploratory analyses indicated that participants receiving L. plantarum K014 exhibited statistically significant differences in several liver function markers, as well as lower severity of diarrhea and abdominal pain compared with placebo, though these findings were not prespecified efficacy endpoints and should be interpreted cautiously. Similarly, lower weekly ratings of common cold symptoms interfering with work or study were observed in the probiotic group as an exploratory observation. Conclusions: Daily consumption of L. plantarum K014 at a dose of ≥1 × 109 CFU for six months was safe and well tolerated in healthy adults. The absence of adverse effects, together with observed trends toward lower gastrointestinal discomfort and immune-related symptoms, supports the suitability of L. plantarum K014 for further investigation in efficacy-driven clinical studies. Full article
(This article belongs to the Section Prebiotics, Probiotics and Postbiotics)
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10 pages, 994 KB  
Brief Report
Dose-Dependent Alterations of the Human Gut Microbiome During Oral Iron Supplementation: A Randomized Study in Iron-Deficient Non-Anaemic Women
by Morton G. Schubert, Anaëlle Dentand, Maximilian Karczewski, Yasser Morsy, Felix Beuschlein, Michael Scharl and Pierre-Alexandre Krayenbuehl
Nutrients 2026, 18(9), 1399; https://doi.org/10.3390/nu18091399 - 29 Apr 2026
Abstract
Background/Objectives: Oral iron supplementation is widely used to treat iron deficiency but frequently causes gastro-intestinal side effects that limit treatment adherence. Unabsorbed luminal iron has been proposed to influence intestinal microbial communities, yet the effects of different oral iron doses on the [...] Read more.
Background/Objectives: Oral iron supplementation is widely used to treat iron deficiency but frequently causes gastro-intestinal side effects that limit treatment adherence. Unabsorbed luminal iron has been proposed to influence intestinal microbial communities, yet the effects of different oral iron doses on the human gut microbiome remain insufficiently characterized. Methods: In this randomized open-label study, 30 healthy premenopausal women with iron deficiency without anaemia received either low-dose oral iron supplementation (6 mg twice daily) administered under fasting conditions or standard-dose iron supplementation (100 mg once daily) taken with a meal for four weeks. Stool samples were collected before and after treatment and analyzed using 16S rRNA sequencing to evaluate microbiome composition. Results: Baseline characteristics, including age, body mass index, hemoglobin concentration and serum ferritin, were comparable between groups. After four weeks of treatment, distinct alterations in gut microbiome composition were observed between the low-dose and standard-dose groups. The genera Colidextribacter and GCA-900066575 decreased in the low-dose group but increased in the standard-dose group, whereas Oscillospira showed the opposite pattern. Gastrointestinal adverse events were reported by 87% of participants receiving standard-dose iron supplementation compared with 7% receiving low-dose iron supplementation (p < 0.0001). Conclusions: Oral iron supplementation induces dose-dependent changes in the intestinal microbiome and higher doses are associated with substantially increased gastrointestinal intolerance. These findings suggest that lower iron doses may reduce microbiome disruption and improve treatment tolerability. Full article
(This article belongs to the Section Micronutrients and Human Health)
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13 pages, 11282 KB  
Article
Rapid Far-Infrared Radiation and Physiotherapeutic Effects of Carbon Nanotube Flexible Thin-Film Heaters
by Shi-Yao Wang, Yue-Xin Wang, Wen-Zheng Li, Meng-Yao Li, Jia-Yi Gao, Pu Liu, Jing Zhou, Xuguo Huai and Hong-Zhang Geng
Nanomaterials 2026, 16(9), 539; https://doi.org/10.3390/nano16090539 - 29 Apr 2026
Abstract
Carbon nanotube (CNT) materials exhibit ultrahigh electrical and thermal conductivity. Upon electrical excitation, CNT-based transparent conductive films (TCFs) can emit far-infrared radiation (FIR) and provide certain physiotherapeutic efficacy, making them ideal candidates for thermotherapy applications. This work systematically tests and analyzes the fundamental [...] Read more.
Carbon nanotube (CNT) materials exhibit ultrahigh electrical and thermal conductivity. Upon electrical excitation, CNT-based transparent conductive films (TCFs) can emit far-infrared radiation (FIR) and provide certain physiotherapeutic efficacy, making them ideal candidates for thermotherapy applications. This work systematically tests and analyzes the fundamental physical properties and physiotherapeutic performance of CNT flexible thin-film heaters (TFHs) for potential use in health physiotherapy. Two types of TFHs with different electrode connection modes were fabricated via the prepared TCFs. Experimental characterizations were conducted on their response time, electrothermal performance, and heat transfer characteristics. The results showed that the temperature rise per unit input power for TFH1 was 16.71 °C/W, while that of TFH2 was 4.29 °C/W at the same voltage of 10 V. In addition, the variation trends of maximum temperature with power density were highly consistent for the two films. This demonstrates that TFHs fabricated using the same TCFs exhibit excellent and high electrothermal conversion efficiency as well as outstanding comprehensive electrothermal performance. In addition, smaller L/W ratio leads to lower resistance of TFHs, resulting in a stronger thermal effect under identical applied voltage. After the temperature stabilized, the surface temperature of the TFHs decreased by approximately 5 °C when attached to the human arm, confirming that the heat generated by the TFHs under electrical excitation could be effectively absorbed by the human body. The TFHs emitted rapid FIR upon electrification, and the peak wavelength ranged from 8 to 12 µm, which fell within the range of 6–14 µm that was easily absorbable by the human body. The heat can be rapidly absorbed by the skin and distributed throughout the body via blood circulation, yielding favorable physiotherapeutic efficacy. This study provides key physical parameters for the application of TFHs in wearable medical devices and physiotherapy equipment. Full article
(This article belongs to the Special Issue New Trends in the Synthesis and Applications of Carbon Nanotubes)
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14 pages, 2455 KB  
Article
Pesticides and Their Metabolites in Amphibian Spawning Waters Are Positively Associated with Nearby Arable Land
by Yurii V. Kornilev, Stephan Burgstaller, Janette Siebert, Magdalena Spießberger, Dmytro Monoshyn, Yoko Muraoka, Werner Kammel, Florian Glaser, Werner Weißmair, Ute Nüsken, Silke Schweiger, Johann G. Zaller and Lukas Landler
Agriculture 2026, 16(9), 969; https://doi.org/10.3390/agriculture16090969 (registering DOI) - 28 Apr 2026
Abstract
Pesticides pose risks to human health and the environment. Monitoring schemes often exclude small sites with fluctuating water levels, inhabited by many species, including amphibians. We sampled for pesticides and their metabolites in 68 amphibian spawning waters in Austria. We analyzed the number [...] Read more.
Pesticides pose risks to human health and the environment. Monitoring schemes often exclude small sites with fluctuating water levels, inhabited by many species, including amphibians. We sampled for pesticides and their metabolites in 68 amphibian spawning waters in Austria. We analyzed the number of pesticides and concentrations in relation to the surrounding land use. We tested for 165 pesticides and metabolites and found 54; 46% were herbicides. The median total pesticide concentration per site was 0.097 µg/L (range: 0–20.419 µg/L). Pesticides found were generally of lower toxicity. We calculated the pesticide toxicity for aquatic invertebrates, fish, birds, and mammals, as proxies for amphibians and the overall ecosystems. Arable land was associated with pesticide number, concentration and toxicity according to the Boruta model selection. However, due to highly variable concentrations (and therefore also variable toxicity) only pesticide number showed significances in a generalized linear model. In this model arable land was positively associated with the number of pesticides detected, while the proportion of grassland, scrubs, artificial surfaces and tree cover had negative effects according to the linear model. Our results highlight (i) a widespread contamination of small temporary water bodies, (ii) the presence of multiple pesticide residues (cocktails), commonly more harmful than single pesticides, at amphibian spawning waters. These results provide a basis for future studies investigating the effects of common pesticide combinations in controlled settings using realistic scenarios and enable better assessment of the potential risks to wildlife. Full article
(This article belongs to the Section Ecosystem, Environment and Climate Change in Agriculture)
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21 pages, 986 KB  
Article
A Tolerance Study of Turmeric Extract in Healthy Adult Cats
by Emilie Raynaud, Melody Raasch, William Sanders, Denise Mitchell, Jeremy Laxalde, Vincent Biourge, Claudie Venet and Todd Cohen
Animals 2026, 16(9), 1355; https://doi.org/10.3390/ani16091355 - 28 Apr 2026
Abstract
Turmeric has a long history of use as a colorant and flavoring agent. Turmeric extract (TE) is a feed additive containing at least 90% total curcuminoids, comprising mainly curcumin, desmethoxycurcumin and bisdemethoxycurcumin. The published antioxidant effects of TE in humans have sparked interest [...] Read more.
Turmeric has a long history of use as a colorant and flavoring agent. Turmeric extract (TE) is a feed additive containing at least 90% total curcuminoids, comprising mainly curcumin, desmethoxycurcumin and bisdemethoxycurcumin. The published antioxidant effects of TE in humans have sparked interest and feeding studies in companion animals. Studies describing the feeding of TE to cats are scarce and do not provide adequate toxicology data; regulatory approval is required to allow use of TE as a nutritional antioxidant in pet food. The current study describes a safety test of TE in cats. Control cats were fed a standard extruded dry diet whilst two groups of test cats were fed the same diet supplemented with two different levels of TE for four months. Physical examination, body weight, body condition score, food intake, fecal score, monitoring of adverse effects (vomiting, diarrhea, clinical signs), complete blood count, and blood biochemistry (particularly liver enzymes) were used to monitor toxicity signs. The lack of statistically significant effects of clinical or toxicological concern concludes that feeding TE to cats at a dietary level providing up to 1040 ppm total curcuminoids is safe. This allows future application of this ingredient in cat food as a nutritional antioxidant. Full article
(This article belongs to the Section Animal Nutrition)
21 pages, 443 KB  
Review
Adaptive Optics RTX1 Imaging for Early Detection of Retinal Vascular Remodeling in Hypertensive Retinopathy: A Review
by Mateusz Zabochnicki, Agnieszka Łebek-Szatańska, Monika Łazicka-Gałecka, Anna Zaleska-Żmijewska, Andrzej Januszewicz and Jacek P. Szaflik
J. Clin. Med. 2026, 15(9), 3376; https://doi.org/10.3390/jcm15093376 - 28 Apr 2026
Abstract
Background/Objectives: Arterial hypertension might lead to serious organ damage and complications like hypertensive retinopathy. The retina is the only place in the human body where microscopic blood vessels can be directly investigated. This enables early diagnosis of arterial hypertension-mediated organ damage. Untreated hypertensive [...] Read more.
Background/Objectives: Arterial hypertension might lead to serious organ damage and complications like hypertensive retinopathy. The retina is the only place in the human body where microscopic blood vessels can be directly investigated. This enables early diagnosis of arterial hypertension-mediated organ damage. Untreated hypertensive retinopathy leads to vision loss in its advanced stages. There are many methods of assessing changes in the arterioles; however, the most accurate is adaptive optics (RTX1™ device with AODetectArtery software, ver. 3.0., Imagine Eyes, Orsay, France). It provides a resolution of 1.6 μm, which is superior to conventional imaging techniques. Optical coherence tomography angiography can serve as an early, minimally invasive marker of microvascular damage. Across the studies analyzed, the WLR (Wall-to-Lumen Ratio) exhibited significantly higher values when comparing individuals with hypertensive retinopathy to normotensives (0.31 vs. 0.26). The main aim of this review is to present the application of adaptive optics in the early diagnosis of hypertensive retinopathy. Methods: The search strategy included 267 original studies, among which 12 were selected to be described and analyzed in this review based on criteria including original research and studies performed on humans with hypertensive retinopathy. Results: RTX1™ enables the assessment of arterial parameters such as the Wall Thickness (WT), Lumen Diameter (LD), Outer Diameter (OD), Wall-to-Lumen Ratio (WLR) and Wall Cross Sectional Area (WCSA). These parameters differ depending on the arterial hypertension. The WLR was identified to be the parameter that differs in the vast majority of analyzed studies when comparing hypertensive patients to normotensive patients. Vascular parameters were also found to change depending on different organisms’ states, treatment applications and etiological causes of disease. Furthermore, changes in retinal arterial parameters were associated with increased cardiovascular risk in observational studies. RTX1™ was also identified to provide very good intra- and interobserver variability. Conclusions: RTX1™ is a valuable tool in the examination of arterial vessels and in establishing associations between retinal vascular parameters and a patient’s clinical state. Full article
(This article belongs to the Special Issue New Insights into Retinal Diseases)
19 pages, 697 KB  
Systematic Review
A Systematic Review of SMART Implantable Devices for Spinal Implants: Current Insights and Future Trends
by Mohsen Khodaee, Anna Schuler, Tobias Götschi, Taekwang Jang, Mazda Farshad and Jonas Widmer
Sensors 2026, 26(9), 2729; https://doi.org/10.3390/s26092729 - 28 Apr 2026
Abstract
(1) Background: SMART spinal implants combine biomechanical stabilization with embedded sensors for continuous in vivo monitoring of spinal loading and implant behaviour. This systematic review summarizes current SMART implant technologies in spinal surgery and evaluates their potential clinical applications. (2) Methods: A structured [...] Read more.
(1) Background: SMART spinal implants combine biomechanical stabilization with embedded sensors for continuous in vivo monitoring of spinal loading and implant behaviour. This systematic review summarizes current SMART implant technologies in spinal surgery and evaluates their potential clinical applications. (2) Methods: A structured literature search was conducted in PubMed and Scopus in December 2025. Two independent reviewers screened studies using predefined criteria, with data extracted on implant design, sensor type, study model, and application; risk of bias was assessed using the Office of Health Assessment and Translation tool. (3) Results: Thirty-four studies met inclusion criteria, including sensor-integrated posterior rods and fixators (n = 16), vertebral body replacements (n = 6), intervertebral cages or disc space sensors (n = 7), and other configurations (n = 5). Devices were tested in human, cadaveric, and animal models. Most systems used strain-based sensors to quantify implant loading, while few employed accelerometers or pressure sensors. Reported results demonstrated activity- and posture-dependent load changes, and several studies indicated potential for monitoring spinal fusion progression by monitoring load trends. (4) Conclusions: Overall, SMART spinal implants primarily support biomechanical monitoring and show promise for real-time assessment of implant performance, though further studies correlating sensor data with clinical outcomes are required. Full article
34 pages, 1556 KB  
Review
Impact of Heavy Metal Sequestration During Phytoremediation of Textile Wastewater on Biogas Yield of Aquatic Plants: A Review
by Kaizar Hossain, Sayanti Kar, Dipsita Hati, Arpita Ghosh, Sinjini Sengupta, Souvik Paul, Avik De and Abhishek RoyChowdhury
Biomass 2026, 6(3), 34; https://doi.org/10.3390/biomass6030034 - 28 Apr 2026
Abstract
The textile industry consumes a significant quantity of water and produces effluent containing water-soluble dyes and heavy metals such as Lead (Pb), Cadmium (Cd), Chromium (Cr), Copper (Cu), and Zinc (Zn), among others. Heavy metal contamination of water bodies and their impact on [...] Read more.
The textile industry consumes a significant quantity of water and produces effluent containing water-soluble dyes and heavy metals such as Lead (Pb), Cadmium (Cd), Chromium (Cr), Copper (Cu), and Zinc (Zn), among others. Heavy metal contamination of water bodies and their impact on aquatic life, as well as on human health, is of prime importance. This review examined the potential of phytoremediation, a low-cost and eco-friendly process for removing contaminants from textile effluent. This review also investigated the impact of heavy metal toxicity on aquatic plants used for biogas production post phytoremediation application. This review evaluated textile effluent characteristics, efficiency evaluation of phytoremediation of textile wastewater, metal uptake mechanisms of aquatic plants, and anaerobic digestion processes with emphasis on Water hyacinth (Eichhornia crassipes), Duckweed (Lemna minor), and Water lettuce (Pistia stratiotes). The findings indicated that these aquatic plants possess immense potential for removing heavy metals and other impurities by employing phytoextraction and rhizofiltration methods. Their rapid growth rate makes them preferred candidates for anaerobic digestion. However, accumulation of heavy metals in plant tissues inhibits microbial activities during anaerobic digestion, resulting in fluctuations in biogas and methane production. Findings also showed that these aquatic plants are efficient in the removal of heavy metals in water while yielding considerable biomass that can be used to produce bioenergy through anaerobic digestion. However, the sequestration of heavy metals in plant biomass may affect the rate of methane generation efficiency. The findings of this review suggest that phytoremediation has promising potential for the recycling of textile wastewater and, when coupled with biogas production, contributes towards a circular bioeconomy, an approach that integrates closed-loop resource utilization with renewable biological systems to minimize waste. Full article
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16 pages, 680 KB  
Article
Spirits and Body in the Tsinghua University *Wu ji 五紀 Manuscript
by Feng Cao
Religions 2026, 17(5), 529; https://doi.org/10.3390/rel17050529 - 28 Apr 2026
Abstract
In the complex cosmological system of the *Wu ji, spirits and body are closely interwoven. There are seventy-two gods arranged into hierarchical ranks, consisting of six primary gods (zhushen 主神), twelve great gods (dashen 大神), twenty-four earthly gods ( [...] Read more.
In the complex cosmological system of the *Wu ji, spirits and body are closely interwoven. There are seventy-two gods arranged into hierarchical ranks, consisting of six primary gods (zhushen 主神), twelve great gods (dashen 大神), twenty-four earthly gods (qi 祇), twenty-eight ordinary gods (shen 神), and the gods of the Southern Gate (Nanmen 南門) and the Northern Dipper (Beidou 北斗). All these gods have distinctive names and functions. It is only through comprehensive mastery of this system that the ruler of the human realm can accomplish his governance. The human body and the cosmos are closely interconnected, and the different parts of the human body are also controlled by seventy-two gods; therefore, it is only through knowledge and mastery of one’s body that one can master the cosmos. If humans do not pay respect to the gods, they send down misfortunes. This notion of the presence of gods in the human body probably influenced the later practice of visualization (cunsi 存思) in religious Daoism. Apart from the seventy-two gods, there are also five types of demons in the human body, which cause illness. Full article
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22 pages, 392 KB  
Article
The Hylomorphism Inventory (HI): Theoretical Foundations and Validation of a Scale Measuring Folk Beliefs Congruent with Hylomorphism
by Paweł Fortuna, Zbigniew Wróblewski, Marcin Wojtasiński, Przemysław Tużnik and Anna Sędłak
Religions 2026, 17(5), 527; https://doi.org/10.3390/rel17050527 - 28 Apr 2026
Abstract
The article introduces the Hylomorphism Inventory (HI), a new instrument designed to measure lay beliefs about the soul–body relationship that are congruent with the Aristotelian–Thomistic framework of hylomorphism. Although research on intuitive ontology has predominantly focused on dualist and monist models, the hylomorphic [...] Read more.
The article introduces the Hylomorphism Inventory (HI), a new instrument designed to measure lay beliefs about the soul–body relationship that are congruent with the Aristotelian–Thomistic framework of hylomorphism. Although research on intuitive ontology has predominantly focused on dualist and monist models, the hylomorphic perspective—central to Catholic anthropology yet difficult to articulate in everyday cognition—remains largely unexplored. Drawing on research in intuitive anthropology, we conceptualize hylomorphic beliefs as endorsing the human person as a psychophysical unity in which the soul functions as the organizing form of the body. Using a theory-driven approach and expert evaluation, we developed an initial 10-item scale and tested it in a nationwide online sample of Polish adults (n = 407). Exploratory (EFA) and confirmatory factor analyses (CFA), supported by nonparametric Mokken scaling, converged on a primarily unidimensional 9-item solution with high internal consistency (α = 0.89, ordinal α = 0.91, ω ≈ 0.90). Validity analyses revealed that HI scores were strongly associated with beliefs emphasizing the integration of body, mind, and soul, but only weakly related to their mere endorsement as components. This pattern suggests that what distinguishes hylomorphism at the psychological level is not belief in the soul per se, but belief in the unity of the human person. The HI provides a parsimonious tool for differentiating lay anthropological models and enables empirical investigation of how hylomorphism-congruent beliefs relate to moral reasoning, spiritual practices, and broader psychological functioning. Full article
14 pages, 2056 KB  
Article
From Sunlight to Screens: Modeling When Light Exposure Matters Most for Sleep and Circadian Health
by Franco Tavella, Michael Gradisar, Renske Lok and Olivia Walch
Clocks & Sleep 2026, 8(2), 21; https://doi.org/10.3390/clockssleep8020021 - 27 Apr 2026
Abstract
Understanding the effects of light on the body at different times of the 24 h solar day is a topic of increasing interest. In this paper, we use a mathematical model from the literature to simulate what would be expected of the human [...] Read more.
Understanding the effects of light on the body at different times of the 24 h solar day is a topic of increasing interest. In this paper, we use a mathematical model from the literature to simulate what would be expected of the human circadian clock on different light schedules. We first reproduce an influential experiment which found eBooks, when compared to a paper book, delayed sleep by roughly 10 min and melatonin onset by 1.5 h. The model is able to match the delay in sleep onset but struggles to reproduce the melatonin phase delay. However, certain initial conditions and parameters are capable of phase shifts consistent with the original study’s magnitude, suggesting that the original study’s finding may have been influenced by the pre-study entrainment or variability among the participants. We next simulate the same protocol under higher daytime light levels (increasing baseline illumination from 90 to 500 lux) and find that brighter daytime exposure reduces both sleep onset latency and the variability in phase delay attributable to evening eBook light. Finally, we explore how the timing of a bright light pulse during the day changes outcomes, such as sleep onset and circadian amplitude, and how these effects interact with light during the other hours of the 24 h day. Together, these modeling results suggest robust daytime light exposure confers resilience against the circadian-disruptive effects of evening light, generating testable predictions regarding the timing and intensity of beneficial light interventions for maintaining circadian alignment. Full article
(This article belongs to the Section Impact of Light & other Zeitgebers)
34 pages, 4734 KB  
Article
Tail-Preserving Shape Partitioning via Multi-Orientation Centroid-Line Extraction and Fuzzy Influence-Zone Assignment
by Halit Nazli, Osman Yildirim and Yasser Guediri
Symmetry 2026, 18(5), 752; https://doi.org/10.3390/sym18050752 - 27 Apr 2026
Abstract
Meaningful partitioning of 2D binary shapes remains a challenging problem in shape analysis because many existing methods rely mainly on local geometric rules or skeleton simplification, which often struggle to separate the main body of a shape from its protruding parts in a [...] Read more.
Meaningful partitioning of 2D binary shapes remains a challenging problem in shape analysis because many existing methods rely mainly on local geometric rules or skeleton simplification, which often struggle to separate the main body of a shape from its protruding parts in a perceptually meaningful way. This limitation becomes more evident in shapes with thin limbs, branching structures, or irregular extensions, where preserving topology while achieving human-consistent decomposition is difficult. We present a fully automatic framework for the hierarchical partitioning of 2D binary shapes into semantically meaningful core bodies and protruding limbs (tails). The pipeline begins by generating candidate structural lines through multi-directional centroid tracking along horizontal, vertical, and diagonal (±45°) bands. Three direction-specific Sugeno fuzzy controllers first evaluate these lines based on normalized length, angular alignment, and minimum distance to the boundary. A second pair of fuzzy systems then classifies segments as either tails or core parts using thickness statistics derived from the distance transform. For ambiguous merged tail groups, iterative midpoint splitting is applied until stable labeling is achieved. High-curvature boundary corners are then detected via signed turning-angle analysis, and candidate cutting rays are assessed through exact region splitting, tail area measurement, and label purity analysis. An adaptive third-stage fuzzy controller ranks these candidates according to cut length, purity, and area. The highest-scoring non-overlapping cuts are executed iteratively, progressively peeling peripheral parts while preserving the overall topology and symmetry of the shape. The proposed framework is evaluated on a targeted subset of 32 categories from the 2D Shape Structure Dataset Results on this evaluated subset indicate that the method produces coherent and topologically consistent partitions, with competitive agreement with the available human-annotated references. This training-free framework provides an interpretable tool for 2D shape analysis, with potential applications in object recognition, computer animation, and symmetry studies. Full article
(This article belongs to the Section Computer)
19 pages, 2161 KB  
Article
TLA-SleepNet: A Transformer–BiLSTM–Attention Network for Automatic Sleep Staging Using Single-Channel Ballistocardiogram Signals
by Jianfeng Wu, Banteng Liu and Ke Wang
Electronics 2026, 15(9), 1841; https://doi.org/10.3390/electronics15091841 - 27 Apr 2026
Abstract
Traditional sleep staging studies typically rely on signals collected using contact-based sensors, which may interfere with the natural sleep state of subjects and thus affect the authenticity and reliability of the recorded data. To address this limitation, this study proposes an automatic sleep [...] Read more.
Traditional sleep staging studies typically rely on signals collected using contact-based sensors, which may interfere with the natural sleep state of subjects and thus affect the authenticity and reliability of the recorded data. To address this limitation, this study proposes an automatic sleep staging method based on non-contact single-channel ballistocardiogram (BCG) signals. First, band-pass filtering is applied to the raw BCG signals to separate the heart rate and respiratory components. Heart rate variability (HRV) and respiratory rate variability (RRV) features are then extracted, and mutual information is used to select key feature subsets that exhibit strong correlations with different sleep stages. Considering the complexity and prominent temporal characteristics of real-world sleep data, a temporal modeling network named TLA-SleepNet is constructed to enhance the model’s capability in capturing complex sequential features and improving robustness. Experiments conducted on 10 independent sleep recordings containing a total of 10,614 sleep epochs demonstrate that, under subject non-independent testing conditions with five-fold cross-validation, the proposed method achieves an accuracy of 87.1% in the sleep staging task, with precision, kappa coefficient, and F1-score reaching 92.4%, 81.9%, and 88.7%, respectively. The results indicate that the proposed method can achieve a reliable sleep staging performance without direct contact between sensors and the human body, providing a feasible solution for non-contact sleep monitoring in home-based and mobile healthcare applications. Full article
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24 pages, 3020 KB  
Review
A Narrative Review of Microplastics in Terrestrial Ecosystems: Impacts on Wild Herbivores and Emerging Conservation Priorities, Supported by Evidence from Livestock and Experimental Mammals
by Subrata Saha, Rachita Saha, Manjil Gupta, Debangana Saha, Ananya Paul, Surovi Roy, Alolika Bose, Sulagna Chandra, Koustav Kundu, Elena I. Korotkova, Muhammad Saqib and Pradip Kumar Kar
Microplastics 2026, 5(2), 79; https://doi.org/10.3390/microplastics5020079 - 27 Apr 2026
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Abstract
Microplastic (MP) and nanoplastic (NP) pollution has emerged as a pervasive and still insufficiently quantified pressure on terrestrial ecosystems, yet its consequences for wild herbivores remain incompletely understood. As key links between primary producers and higher trophic levels, wild herbivores occupy a critical [...] Read more.
Microplastic (MP) and nanoplastic (NP) pollution has emerged as a pervasive and still insufficiently quantified pressure on terrestrial ecosystems, yet its consequences for wild herbivores remain incompletely understood. As key links between primary producers and higher trophic levels, wild herbivores occupy a critical ecological position and may serve both as exposed receptors and as biological vectors of plastic contamination. This manuscript presents a narrative review that synthesizes recent advances in understanding the physiological, behavioural, and ecological implications of MP and/or NP exposure in free-ranging herbivorous mammals, integrating evidence from field surveys, experimental studies, ecological modelling, and supportive mechanistic findings from livestock and experimental mammalian systems. Available evidence indicates that MPs and NPs are consistently detected in wild herbivores from both human-modified and protected landscapes, demonstrating widespread terrestrial exposure. Reported biological effects include oxidative stress, digestive dysfunction, inflammatory and immune responses, altered gut microbial communities, impaired nutrient assimilation, and organ-level damage, although much of the mechanistic evidence derives from controlled laboratory or livestock-based studies rather than direct wildlife investigations. Behavioural responses remain comparatively underexplored, particularly in large-bodied herbivores, with limited evidence for altered foraging, habitat use, and stress-related behaviours. At the ecosystem level, emerging studies suggest that herbivores may contribute to the landscape-scale redistribution of MPs and NPs through movement and faecal deposition, with potential downstream effects on soil processes, nutrient cycling, and plant–herbivore interactions. However, the current evidence base is constrained by major methodological and conceptual limitations, including the lack of standardized detection and reporting protocols, limited ecological realism in exposure studies, taxonomic and geographic biases, and poor resolution of long-term population-level and food-web consequences. Overall, the available literature indicates that MP and NP pollution represent a multifaceted and emerging risk to wild herbivores and the ecosystems they inhabit. Future research should prioritize standardized contamination-controlled monitoring, non-invasive faecal surveillance, ecologically realistic chronic exposure studies, and integrated conservation frameworks that recognize wild herbivores as sentinel species for terrestrial plastic pollution. Full article
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15 pages, 4472 KB  
Article
Potential Clinical Application of Determination of Bisphenols in Pericardial Fluid from Patients with Coronary Artery Disease
by Tomasz Tuzimski, Kamil Baczewski, Viorica Railean, Daria Tarkowska and Małgorzata Szultka-Młyńska
Molecules 2026, 31(9), 1442; https://doi.org/10.3390/molecules31091442 - 27 Apr 2026
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Abstract
Bisphenols may negatively impact human health, including the heart and circulatory system. It is crucial to determine the presence of these xenobiotics in biological samples, including pericardial fluid. Pericardial fluid was collected from patients with acute coronary syndromes (ACS), and with coronary artery [...] Read more.
Bisphenols may negatively impact human health, including the heart and circulatory system. It is crucial to determine the presence of these xenobiotics in biological samples, including pericardial fluid. Pericardial fluid was collected from patients with acute coronary syndromes (ACS), and with coronary artery disease during coronary artery bypass surgery. Bisphenol residues were identified and quantified in samples from 15 patients. Quantitative analysis of bisphenols in the samples was performed by LC–MS/MS on a triple quadrupole (QqQ) mass spectrometer and electrospray ionization (ESI−/ESI+) was applied in the negative and positive ion modes, respectively. The procedure was successfully applied to the biomonitoring of free forms of 14 bisphenols in pericardial fluid. After statistical examination of the relationships between the selected variables, it was concluded that while male subjects demonstrated higher Body Mass Index (BMI), longer procedural times, and earlier troponin release, female subjects exhibited later but more pronounced increases in CK and TrI, suggesting differences in kinetics and physiological response. Full article
(This article belongs to the Special Issue Modern Trends and Solutions in Analytical Chemistry in Poland)
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