Background And Aim Of The Study: Patients with restenosis after open or closed surgical commissurotomy (SC) often demonstrate more severe valve degeneration than patients without prior surgery. This may affect the result of balloon mitral valvotomy (BMV) in this patient group.
Methods: The immediate- and long-term results (maximum 106 months; mean 26 months) of BMV with the Inoue balloon in patients with prior SC were compared with findings in patients without prior surgery. Between February 1989 and July 2001, a total of 1,156 BMV interventions was performed, of which 127 were conducted in patients (106 women, 21 men; mean age 56 +/- 12 years) with prior SC.
Results: After BMV, the mitral valve area (MVA) increased from 1.0 +/- 0.2 cm2 to 1.6 +/- 0.4 cm2 after SC compared with 1.0 +/- 0.3 cm2 to 1.8 +/- 0.4 cm2 without SC. After three months, the average MVA was 1.7 +/- 0.3 cm2 in both patient groups. The mean NYHA class improved from 2.8 to 2.0 (after SC) versus 2.7 to 1.8 (no SC) three months after BMV. The main complications were cardiac tamponade in three patients (2.4 %), and more than moderate mitral regurgitation (grade 2+) in six (4.7 %) compared to 5.8% in no-SC patients.
Conclusion: In view of the satisfactory clinical and hemodynamic results, BMV with the Inoue balloon can be considered the treatment of choice for mitral valve restenosis after SC in selected patients.
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Nat Nanotechnol
January 2025
Department of Chemical and Biomolecular Engineering, University of Maryland, College Park, MD, USA.
Room-temperature non-aqueous sodium metal batteries are viable candidates for cost-effective and safe electrochemical energy storage. However, they show low specific energy and poor cycle life as the use of conventional organic-based non-aqueous electrolyte solutions enables the formation of interphases that cannot prevent degradations at the positive and negative electrodes. Here, to promote the formation of inorganic NaF-rich interphases on both negative and positive electrodes, we propose the salt-in-presalt (SIPS) electrolyte formulation strategy.
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January 2025
Department of Physics, College of Science, Princess Nourah bint Abdulrahman University, P.O. Box 84428, Riyadh, 11671, Saudi Arabia.
We report the fabrication and characterization of a Bi(III) oxide/polypyrrole (BiO/Ppy) nanocomposite thin film optoelectronic photodetector synthesized by a simple one-pot method. The nanocomposite consists of spherical BiO nanoparticles embedded in a Ppy matrix, forming a porous structure with a high surface area. The XRD analysis reveals that the BiO nanoparticles have a poly-crystalline nature with a crystal size of 40 nm and an optical bandgap of 2.
View Article and Find Full Text PDFZhongguo Gu Shang
January 2025
Department of Orthopaedics, Fudan University Affiliated Zhongshan Hospital Wusong Hospital, Shanghai 200940, China.
Objective: To analyze the clinical efficacy and safety of microsurgery in patients with Gustilo ⅢC open fractures.
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ACS Nano
January 2025
College of Environmental Science and Engineering, North China Electric Power University, Beijing 102206, P. R. China.
Electrocatalytic CO-to-CO conversion with a high CO Faradaic efficiency (FE) at low overpotentials and industrial-level current densities is highly desirable but a huge challenge over non-noble metal catalysts. Herein, graphitic N-rich porous carbons supporting atomically dispersed nickel (NiN-O sites with an axial oxygen) were synthesized (denoted as O-Ni-N-GC) and applied as the cathode catalyst in a CORR flow cell. O-Ni-N-GC showed excellent selectivity with a FE over 92% at low overpotentials ranging from 17 to 60 mV, and over 99% at 80 mV.
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January 2025
Henan Provincial Key Laboratory of Nanocomposites and Applications, Institute of Nanostructured Functional Materials, Huanghe Science and Technology College, Zhengzhou, Henan 450006, China.
Due to the high configuration entropy, unique atomic arrangement, and electronic structures, high-entropy materials are being actively pursued as bifunctional catalysts for both the oxygen reduction reaction (ORR) and oxygen evolution reaction (OER) in rechargeable zinc-air batteries (ZABs). However, a relevant strategy to enhance the catalytic activity of high-entropy materials is still lacking. Herein, a hole doping strategy has been employed to enable the high-entropy perovskite La(CrMnFeCoNi)O to effectively catalyze the ORR and OER.
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