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Harmful algal blooms (HABs) pose serious ecological and health risks with releasing waterborne toxins. In this study, a novel floating BiWO-based photocatalytic mesh (BPM) system was developed for efficient water purification by targeting the inactivation of HABs-dominated Microcystis and detoxification of associated microcystins (MCs) under solar light irradiation. The superior flotation, durability and sunlight utilization of the BPM system were achieved by its super-hydrophobic surface, robust stainless-steel mesh carrier, and efficient light transmission, respectively. Photocatalytic Microcystis inactivation and MCs degradation were achieved within 6 h at a bloom density of 5 × 10 cells/mL through dual mechanisms, which are free radicals generation and direct physical cell disruption. Additionally, the physiological response in Microcystis exhibited a time-dependent inactivation process. The photosynthetic and antioxidant system, cell membrane integrity and MCs production/release progressively collapsed in the BPM system, finally the MCs rapidly detoxified to a safe level. The floating BPM system maintained excellent stability and efficiency over 165 h of water flushing, demonstrating its superior applicability. The global feasibility assessments of the BPM system based on real-world solar radiation further demonstrated its scalability for reducing HABs areas. This work provides both mechanistic insights and practical validation for sustainable water purification in HABs management.
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http://dx.doi.org/10.1016/j.watres.2025.123819 | DOI Listing |
Comput Methods Programs Biomed
August 2025
Electrical Engineering, Eindhoven University of Technology, Eindhoven, the Netherlands.
Background And Objective: Preterm infants are characterized by immature cardiorespiratory systems and require continuous monitoring of physiological signals in neonatal intensive care units (NICUs) to assess their clinical condition and return alarms in critical situations. However, many alarms are false or clinically irrelevant, leading to alarm fatigue for nurses and clinicians. A particularly high false alarm rate is reported for central apneas (CAs), with precision as low as 0.
View Article and Find Full Text PDFAm J Surg
August 2025
Emory University School of Medicine, USA; Grady Health System, USA. Electronic address:
Introduction: We sought to develop, implement and evaluate an urban prehospital whole blood (PH-WB) program.
Methods: Using retrospective heat map data, Quick Response Vehicles (QRVs) carrying PH-WB were strategically placed throughout the city and dispatched using dynamic deployment. Patient inclusion criteria were age ≥15 years, traumatic mechanism, and SBP ≤90 mmHg.
Objective: High levels of stress during pregnancy can impact the health of pregnant individuals and their developing infants. Wearable biosensor devices offer noninvasive, continuous monitoring of stress physiology through heart rate variability (HRV), a marker of autonomic nervous system function and emotion regulation. This study aimed to examine the validity and acceptability of the movisens EcgMove4 device for measuring heart rate (HR) and HRV in a diverse community sample of pregnant women.
View Article and Find Full Text PDFBiosensors (Basel)
July 2025
School of Electronics and Information Engineering, Beihang University, Beijing 100191, China.
Continuous monitoring of respiratory patterns is essential for disease diagnosis and daily health care. Contact medical devices enable reliable respiratory monitoring, but can cause discomfort and are limited in some settings. Radar offers a noncontact respiration measurement method for continuous, real-time, high-precision monitoring.
View Article and Find Full Text PDFSci Rep
August 2025
Department of Biomedical and Electronics Engineering, University of Bradford, Bradford, UK.
This work presents a machine learning (ML)-optimized dual-band wearable antenna designed specifically for biomedical applications in healthcare monitoring. Fabricated on a Rogers substrate of 40 × 41 mm, the antenna operates at 2.4 GHz and 5.
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