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Background: The optimal imaging modality for selecting the device size in patients with atrial fibrillation undergoing one-stop left atrial appendage occlusion (LAAO) with concomitant pulmonary vein isolation (PVi) remains undefined. We compared preprocedural 3-dimensional computed tomography (3D CT) with intra-procedural transesophageal echocardiography (TEE) and left atrial appendage (LAA) angiography in guiding one-stage PVi and LAAO.
Methods: We measured the LAA ostium diameter using an interactive 3D CT system with a central line-based approach and compared these measurements with those from intra-procedural TEE and angiography, and the actual device size. The optimal compression ratio was used to assess the attainment rates of the three imaging modalities.
Results: Twenty-two patients (median age: 68.5 years, 21.8 % female) underwent the one-stage procedure. The median LAA ostium diameter measured by 3D CT (24.3 mm, interquartile range [IQR] = 22.0-27.0 mm) was closer to the Watchman device size (27.0 mm, IQR = 24.0-31.0 mm, P = 0.127) compared to TEE (21.2 mm, IQR = 18.4-22.7 mm, P < 0.001) and angiography (22.5 mm, IQR = 17.9-25.1 mm, P < 0.001). 3D CT had a better attainment rate for the optimal compression ratio than TEE (10.8 %, IQR = 7.4-16.5 % vs. 22.7 %, IQR = 19.2-29.3 %, P < 0.001) and angiography (19.7 %, IQR = 15.1-24.1 %, P = 0.001). All patients underwent successful device implantation without peri-device leak or complications during the periprocedural period and follow-up.
Conclusions: In this pilot study, a preprocedural central line-based 3D CT planning system appeared to be more effective than intraoperative TEE and angiography in measuring the LAA ostium diameter to guide device size selection in patients with atrial fibrillation undergoing one-stop LAAO with concomitant PVi.
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http://dx.doi.org/10.1016/j.ijcha.2024.101594 | DOI Listing |
Beilstein J Nanotechnol
August 2025
Facultad de Ingeniería Mecánica y Eléctrica, Universidad Autónoma de Nuevo León. San Nicolás de los Garza, Nuevo León, 66455, México.
Nanoparticles in their pure colloidal form synthesized by laser-assisted processes such as laser ablation/fragmentation/irradiation/melting in liquids have attained much interest from the scientific community because of their specialties like facile synthesis, ultra-high purity, biocompatibility, colloidal stability in addition to other benefits like tunable size and morphology, crystalline phases, new compounds and alloys, and defect engineering. These nanocolloids are useful for fabricating different devices mainly with applications in optoelectronics, catalysis, sensors, photodetectors, surface-enhanced Raman spectroscopy (SERS) substrates, and solar cells. In this review article, we describe different methods of nanocolloidal synthesis using laser-assisted processes and corresponding thin film fabrication methods, particularly those utilized for device fabrication and characterization.
View Article and Find Full Text PDFRSC Adv
September 2025
Instituto de Ciencia de Materiales de Madrid, ICMM-CSIC C/Sor Juana Inés de la Cruz, 3 Madrid 28049 Spain
Perovskite light-emitting diodes (PeLEDs) have emerged as a promising technology for next-generation display and lighting applications, thanks to their remarkable colour purity, tunability, and ease of fabrication. In this work, we explore the incorporation of plasmonic spherical nanoparticles (NPs) directly embedded into the green-emitting CsPbBr perovskite layer in a PeLED as a strategy to enhance both its optical and electrical properties. We find that plasmonic effects directly boost spontaneous emission while also influencing charge carrier recombination dynamics.
View Article and Find Full Text PDFFront Plant Sci
August 2025
College of Mathematics and Computer Science, Yan'an University, Yan'an, Shaanxi, China.
To address the challenge of real-time kiwifruit detection in trellised orchards, this paper proposes YOLOv10-Kiwi, a lightweight detection model optimized for resource-constrained devices. First, a more compact network is developed by adjusting the scaling factors of the YOLOv10n architecture. Second, to further reduce model complexity, a novel C2fDualHet module is proposed by integrating two consecutive Heterogeneous Kernel Convolution (HetConv) layers as a replacement for the traditional Bottleneck structure.
View Article and Find Full Text PDFDalton Trans
September 2025
Department of Chemistry & Biochemistry, University of Maryland Baltimore County, Baltimore, MD 21250, USA.
Two-dimensional van der Waals (2D-vdW) semiconducting ferroelectrics, such as CuInPSe (CIPSe) and CuInPS (CIPS), offer unique opportunities for lightweight, scalable, low-power nanoscale electronic devices. However, the limited pool of functional 2D-vdW ferroics highlights the need for clear design principles that can be used to guide experiments. Here, we use first-principles density functional theory (DFT) to study how isovalent atomistic substitution at In and P sites modifies structure, polarization, and electronic properties in CIPSe and CIPS.
View Article and Find Full Text PDFMed Phys
September 2025
Department of Accelerator and Medical Physics, National Institutes for Quantum Science and Technology (QST), Chiba, Japan.
Background: Multi-ion radiotherapy using carbon, oxygen, and neon ions aims to improve local control by increasing dose-averaged linear energy transfer (LET) in the target. However, there has been limited understanding of how to utilize variables for multi-ion treatment planning such as the selection and arrangement of ion species.
Purpose: An in silico study was conducted to explore the feasibility of increasing a minimum LET, and the optimal selection and arrangement of ion species in multi-ion therapy for increasing LET in tumors of varying sizes mimicking bone and soft tissue sarcomas (BSTS).