AI总结:根据提供的论文名称,这些文献主要聚焦于纤维性痉挛(Febrile Seizures)的临床实践、管理指南及研究进展。整体来看,这些论文涵盖以下几个方面:1. 临床实践指南:多篇论文强调了针对儿童纤维性痉挛长期管理的临床实践指南,旨在为医生提供标准化的诊疗建议。这些指南不仅涵盖了急性期处理,还包括长期随访和预防策略。2. 药物管理:部分文献探讨了抗痉挛药物在儿童中的应用,特别是丙戊酸类药物的使用及其对纤维性痉挛的疗效评估。这方面的研究关注药物的安全性和有效性,以优化治疗方案。3. 病理机制与治疗进展:有研究深入探讨了纤维性痉挛的病理生理机制,结合最新的分子生物学和神经科学进展,探索更有效的治疗方法。这部分内容对于理解疾病本质及开发新疗法具有重要意义。4. 院前与院内治疗:文献中还涉及了纤维性痉挛患者从院前急救到住院治疗的全程管理,确保患者在不同阶段都能得到及时有效的救治。综上所述,这些论文集中反映了当前医学界对纤维性痉挛这一儿科常见急症的研究热点和临床管理的最新进展,为提高诊疗水平提供了重要的理论依据和实践指导。
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共2篇 平均IF=15.8 (15.6-16)更多分析
  • 1区Q1影响因子: 15.6
    1. Bio-inspired polydopamine: a versatile and powerful platform for covalent synthesis of molecular sieve membranes.
    1. 受生物启发的聚多巴胺:一种多功能共生的平台,用于共价合成分子筛膜。
    作者:Liu Qian , Wang Nanyi , Caro Jürgen , Huang Aisheng
    期刊:Journal of the American Chemical Society
    日期:2013-11-15
    DOI :10.1021/ja4080562
    Inspired by the bioadhesive ability of the marine mussel, a simple, versatile, and powerful synthesis strategy was developed to prepare highly reproducible and permselective molecular sieve membranes by using polydopamine as a novel covalent linker. Attributing to the formation of strong covalent and noncovalent bonds, ZIF-8 nutrients are attracted and bound to the support surface, thus promoting the ZIF-8 nucleation and the growth of uniform, well intergrown, and phase-pure ZIF-8 molecular sieve membranes. The developed ZIF-8 membranes show high hydrogen selectivity and thermal stability. At 150 °C and 1 bar, the mixture separation factors of H2/CO2, H2/N2, H2/CH4, and H2/C3H8 are 8.9, 16.2, 31.5 and 712.6, with H2 permeances higher than 1.8 × 10(-7) mol·m(-2)·s(-1)·Pa(-1), which is promising for hydrogen separation and purification.
  • 1区Q1影响因子: 16
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    2. Versatile Core-Shell Nanoparticle@Metal-Organic Framework Nanohybrids: Exploiting Mussel-Inspired Polydopamine for Tailored Structural Integration.
    2. 多功能核壳纳米@金属有机骨架纳米复合物:贻贝环境与开发,启发聚多巴胺用于修整的结构整合。
    作者:Zhou Jiajing , Wang Peng , Wang Chenxu , Goh Yi Ting , Fang Zheng , Messersmith Phillip B , Duan Hongwei
    期刊:ACS nano
    日期:2015-06-15
    DOI :10.1021/acsnano.5b01138
    We report a versatile strategy based on the use of multifunctional mussel-inspired polydopamine for constructing well-defined single-nanoparticle@metal-organic framework (MOF) core-shell nanohybrids. The capability of polydopamine to form a robust conformal coating on colloidal substrates of any composition and to direct the heterogeneous nucleation and growth of MOFs makes it possible for customized structural integration of a broad range of inorganic/organic nanoparticles and functional MOFs. Furthermore, the unique redox activity of polydopamine adds additional possibilities to tailor the functionalities of the nanohybrids by sandwiching plasmonic/catalytic metal nanostructures between the core and shell via localized reduction. The core-shell nanohybrids, with the molecular sieving effect of the MOF shell complementing the intrinsic properties of nanoparticle cores, represent a unique class of nanomaterials of considerable current interest for catalysis, sensing, and nanomedicine.
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