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Semi-permeable membrane devices (SPMDs) provide an informative and cost-effective approach for monitoring contaminants in remote tropical streams. Estimation and interpretation of contaminant concentrations in streams derived from SPMDs can vary based on a number of environmental factors, including stream flow, biofouling, and deployment time. In three one-month long trials, SPMDs were concurrently deployed for 4, 15, and 28 days at three stream sites in an extensive agricultural area of southeastern Costa Rica. Water, bottom sediment, and suspended solids grab samples were also collected and several environmental variables were monitored at corresponding time intervals during each month-long study period. At all three sites, SPMD concentrations of the widely used insecticide chlorpyrifos increased with deployment time, with no relationship between SPMD biofouling and pesticide sequestration. Differences in SPMD chlorpyrifos sequestration among sites are likely due to differences in stream chlorpyrifos concentration rather than differences in SPMD sampling rates. The longer exposure period of SPMDs allowed for the detection of lower concentrations of chlorpyrifos, terbufos, and difenoconazole compared to water grab samples. In addition to the use of appropriate performance reference compounds (PRCs), other environmental variables such as stream turbidity, flow regime, stream morphology, and knowledge of pesticide application methods are important considerations for optimizing SPMD deployment and data interpretation in tropical regions.
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http://dx.doi.org/10.1039/b904329b | DOI Listing |
Clin Neuroradiol
September 2025
Department of Diagnostic and Interventional Neuroradiology, Inselspital, Bern University Hospital, University of Bern, Bern, Switzerland.
Background: Pediatric acute ischemic stroke is a rare yet severe condition with multifactorial etiology, often associated with vasculopathies. Endovascular intervention in children with focal cerebral arteriopathy is seldom reported.
Purpose: Our aim was to report feasibility of intracranial rescue stenting for the management of pediatric focal cerebral arteriopathy with flow-limiting stenosis.
Front Plant Sci
September 2025
College of Big Data, Yunnan Agricultural University, Kunming, China.
Introduction: Accurate identification of cherry maturity and precise detection of harvestable cherry contours are essential for the development of cherry-picking robots. However, occlusion, lighting variation, and blurriness in natural orchard environments present significant challenges for real-time semantic segmentation.
Methods: To address these issues, we propose a machine vision approach based on the PIDNet real-time semantic segmentation framework.
J Imaging Inform Med
September 2025
Imaging Informatics, Diagnostics Institute, Cleveland Clinic, Cleveland, OH, USA.
With the increasing shift towards remote radiology work, institutions face the challenge of balancing cost-effectiveness with operational reliability. This experiential report presents a comparative analysis of the total cost of ownership (TCO) of commercial-grade displays (WCDs) and diagnostic-grade displays (WDDs) in remote diagnostic stations. We evaluate direct and indirect costs associated with each display type using activity-based costing, focusing on deployment, quality control (QC) processes, and ongoing maintenance.
View Article and Find Full Text PDFProg Mol Biol Transl Sci
September 2025
Manta Pharma LLC, Gaithersburg, MD, United States. Electronic address:
Biosensing technologies, including wearables, ingestibles, and implantables, are transforming modern healthcare by enabling real-time monitoring and precise personalized treatment. As these technologies advance, ensuring their safety, efficacy, and ethical deployment remains paramount. This chapter explores the regulatory framework that governs biosensing devices in the United States, detailing premarket approval pathways, postmarket surveillance, and emerging regulatory incentives that balance innovation with patient protection.
View Article and Find Full Text PDFProg Mol Biol Transl Sci
September 2025
Heidelberg Institute of Global Health (HIGH), Faculty of Medicine and University Hospital, Heidelberg University, Heidelberg, Germany. Electronic address:
Climate change poses a growing threat to human health, increasing exposure to extreme environmental conditions. Wearable biosensors provide real-time monitoring of physiological responses to heat stress, including cardiovascular strain, thermoregulatory disruptions, sleep disturbances, and biomarkers of heat-related illnesses. These devices also assess behavioural adaptations, such as reduced physical activity, offering insights into physiological resilience and susceptibility.
View Article and Find Full Text PDF