Button battery (BB) impaction in the esophagus requires immediate endoscopic removal and meticulous follow-up, including serial cross-sectional imaging, preferably with magnetic resonance imaging (MRI). However, BBs quickly degrade in the esophagus, and metallic fragments may remain in the injured mucosa following removal. This metallic debris can cause thermal injury during MRI, potentially aggravating local injury. We aimed to explore whether such metallic fragments could be identified on imaging following BB removal. In this study, we conducted a retrospective review of children (0-18 years) presenting with BB impaction in the esophagus between 2014 and 2020. Endoscopy reports and imaging studies were blindly reviewed by a pediatric gastroenterologist and a pediatric radiologist. Of 161 cases of battery ingestion, 14 (8%) underwent endoscopy, and in 9 (5%) a BB was impacted in the esophagus. The median time from ingestion to BB removal was 8 h (range 2-48 h). The median time from removal to CT was 44 h (range 0.5-104 h). BB appearance ranged from mild corrosion to visible debris. Pre-removal plain films showed irregular battery contour suggesting corrosion (5/7 plain films). In 7/9 CT scans (78%), high-attenuation esophageal content (median 266HU (range 140-1151)), which may represent metallic debris, was identified. Five patients had a follow-up CT which still showed gradual resolution of the high-attenuation content.Conclusions: we describe a new finding on CT following BB removal which might represent metallic debris. Clinicians should be aware of these findings which potentially may be harmful during MRI used in the ongoing assessment of esophageal injury. What is Known: • Button batteries are a dangerous pediatric foreign body with potentially fatal vascular complications. What is New: • Metallic debris was identified on computerized tomography following button battery removal in most children. • We bring to attention this new finding which may affect clinical management, as minimal metallic content can cause burns during MRI.
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http://dx.doi.org/10.1007/s00431-021-04184-y | DOI Listing |
Inorg Chem
January 2025
College of Environment and Materials Engineering, Yantai University, Yantai 264005, China.
As an attractive optical/heat dynamic management technology, reversible metal electrodeposition/dissolution electrochromism (RME-EC) shows many advantages, including high optical modulation amplitude, wide modulation band, and color neutrality, but also suffers from performance degradation because of uneven dendritic metal deposition as well as the formation/accumulation of isolated metal debris. In this paper, a facile RME-EC system is established in a green and affordable aqueous electrolyte, by making good use of the nondendritic Ni-Cu codeposition. Furthermore, an in situ self-healing strategy is further established by activating the Br/Br couple of the Br-containing electrolyte to improve the EC performance.
View Article and Find Full Text PDFMar Pollut Bull
January 2025
California State University, Los Angeles, 5151 State University Drive ST 305, Los Angeles, CA 90032, USA. Electronic address:
Marine debris such as plastic, metal, and rubber, is a significant source of anthropogenic waste pollution in oceanic waters. Debris continues to be found along Southern California's coastlines and poses serious risks to biodiversity and ecosystem health through entrapment, ingestion, and entanglement. One particular species that drops eggs in the South Bay, particularly in the Palos Verdes peninsula, is the California horn shark (Heterodontus francisci).
View Article and Find Full Text PDFSci Total Environ
December 2024
Institute of Mountain Hazards and Environment, Chinese Academy of Sciences, Chengdu 610299, China. Electronic address:
The elemental dynamics and interactions within deadwood profoundly influence carbon sequestration and nutrient cycling in forest ecosystems. Recent studies have investigated macronutrient cycling during deadwood decay of specific plants, yet the dynamics and interactions of micronutrients, trace elements, and the elementome across species and decay stages remain unexplored. Here, we investigated the elementome and their coupling relationships across five decay stages of downed deadwood (DDW) from four dominant species (Hippophae rhamnoides, Populus purdomii, Abies fabri, and Picea brachytyla) along the Hailuogou Glacier primary successional chronosequence.
View Article and Find Full Text PDFPharmacol Res Perspect
February 2025
Department of Pharmacology, Faculty of Health Sciences, University of Pretoria, Pretoria, South Africa.
Gold nanoparticles (AuNPs) present with unique physicochemical features and potential for functionalization as anticancer agents. Three-dimensional spheroid models can be used to afford greater tissue representation due to their heterogeneous phenotype and complex molecular architecture. This study developed an A549 alveolar carcinoma spheroid model for cytotoxicity assessment and mechanistic evaluation of functionalized AuNPs.
View Article and Find Full Text PDFWaste Manag
December 2024
Cooperative Program for Resources Engineering, Graduate School of Engineering, Kyushu University, Fukuoka, Japan.
The proliferation of space debris poses a significant challenge in modern space exploration, with potential repercussions for the future space environment and activities. Various research and technological developments have addressed these concerns, including estimating the number of space debris orbiting the Earth and its efficient removal. This paper proposes a novel resource-oriented perspective on space debris and focuses on the composition and resource potential of space debris.
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