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7篇 您的检索式:作者名="Dini LI"
    题名 作者 年代 出处 被引量
1Primary Ewings sarcoma of the spine: ease report显示文摘Dini LI Mendonqa R Gallo P 2006Arq Neuropsiquiatr2006,64,3:1
2Chemical composi- tion of Lepidium meyenii 显示文摘Dini A Migliuolo G Rastre|li L 1994Food ChemLstry1994,49,4:1
3Primary Ewings sarcoma of the spine:case report显示文摘Dini LI Mendon?a R Gallo P 0,,3:1
4Maffucci's syndrome complicated by intracranial chondrosarcoma:two new illustrative cases显示文摘Dini LI Isolan GR Saraiva GA 2007Arq Neuropsiquiatr2007,65,3:1
5Effect of fiber architecture and density on the ablation behavior of carbon/carbon composites modified by Zr–Ti–C显示文摘Yi Zeng Xiang Xiong Guodong Li Zhaoke Chen Wei Sun Dini Wang Yalei Wang 2013Carbon2013,,:1
6Rigid–flexible hybrid surfaces for water-repelling and abrasionresisting显示文摘Droplets impacting solid superhydrophobic surfaces is appealing not only because of scientific interests but also for technological applications such as water-repelling.Recent studies have designed artificial surfaces in a rigid–flexible hybrid mode to combine asymmetric redistribution and structural oscillation water-repelling principles,resolving strict impacting positioning;however,this is limited by weak mechanical durability.Here we propose a rigid–flexible hybrid surface(RFS)design as a matrix of concave flexible trampolines barred by convex rigid stripes.Such a surface exhibits a 20.1%contact time reduction via the structural oscillation of flexible trampolines,and even to break through the theoretical inertial-capillary limit via the asymmetric redistribution induced by rigid stripes.Moreover,the surface is shown to retain the above water-repelling after 1,000 abrasion cycles against oilstones under a normal load as high as 0.2 N·mm−1.This is the first demonstration of RFSs for synchronous waterproof and wearproof,approaching real-world applications of liquid-repelling.Songtao HU Weifeng HUANG Jinbang LI Tom REDDYHOFF Xiaobao CAO Xi SHI Zhike PENG Andrew DEMELLO Daniele DINI 2023Friction2023,11,4:0
7A rapid nucleic acid detection platform based on phosphorothioate-DNA and sulfur binding domain显示文摘Nucleic acid detection plays a key role in diverse diagnosis and disease control.Currently available nucleic acid detection techniques are challenged by trade-offs among speed,simplicity,precision and cost.Here,we described a novel method,designated SENSOR(Sulfur DNA mediated nucleic acid sensing platform),for rapid nucleic acid detection.SENSOR was developed from phosphorothioate(PT)-DNA and sulfur binding domain(SBD)which specifically binds double-stranded PT-modified DNA.SENSOR utilizes PT-DNA oligo and SBD as targeting module,which is linked with split luciferase reporter to generate luminescence signal within 10 min.We tested detection on synthesized nucleic acid and COVID-19 pseudovirus,achieving attomolar sensitivity combined with an amplification procedure.Single nucleotide polymorphisms(SNP)could also be discriminated.Indicating SENSOR a new promising nucleic acid detection technique.Yuting Shuai Yi Ju Yuanhang Li Dini Ma Lan Jiang Jingyu Zhang Gao-Yi Tan Xueting Liu Shenlin Wang Lixin Zhang Guang Liu 2023Synthetic and Systems Biotechnology2023,8,2:0
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