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6篇 您的检索式:作者名="Jami Lu"
    题名 作者 年代 出处 被引量
1Transplantation of hypoxia preconditioned bone marrow mesenchymal stem cells enhances angiogenesis and neurogenesis after cerebral ischemia in rats显示文摘Ling Wei Jamie L. Fraser Zhong-Yang Lu Xinyang Hu Shan Ping Yu 2012Neurobiology of Disease2012,,3:3
2Effects of weight loss and exercise on the distribution of lead and essential trace elements in rats with prior lead exposure显示文摘Han SG Li WJ Jami Lu 1999Environ Health Perspect1999,107,:1
3Full-text federated search of textbased digital libraries in peer-to-peer networks显示文摘Jie Lu Jamie Callan 2006Information Retrieval2006,9,4:1
4N-Terminal Pro-Brain Natriuretic Peptide as a Biomarker for Hypertensive Disorders of Pregnancy显示文摘Nazanin Moghbeli Sindhu Srinivas Jamie Bastek Yun Lu Mary Putt Thomas Cappola Michal Elovitz 2010Amer J Perinatol2010,,04:1
5“Cut-and-paste” method for the rapid prototyping of soft electronics显示文摘Unlike wafer-based rigid electronics, soft electronics have many unique advantages including thinness, flexibility, stretchability,conformability, lightweight, large area, as well as low cost. As a result, they have demonstrated many emerging capabilities in healthcare devices, soft robotics, and human-machine interface. Instead of conventional microfabrication, there is an evergrowing interest in the freeform or digital manufacture of soft electronics. This review provides a survey for a cost-and timeeffective subtractive manufacturing process called the 'cut-and-paste' method. It employs a mechanical cutter plotter to form patterns on various electronically functional membranes such as sheets of metals, functional polymers, and even two-dimensional(2D) materials, supported by a temporary tape. The patterned membranes can then be pasted on soft substrates such as medical tapes or even human skin. This process is completely dry and desktop. It does not involve any rigid wafers and is hence capable of making large-area electronics. The process can be repeated to integrate multiple materials on a single substrate.Integrated circuits(ICs) and rigid components can be added through a 'cut-solder-paste' process. Multilayer devices can also be fabricated through lamination. We therefore advocate that the 'cut-and-paste' method is a very versatile approach for the rapid prototyping of soft electronics for various applications.YANG XiangXing HUANG YiFu DAI ZhaoHe BARBER Jamie WANG PuLin LU NanShu 2019Science China(Technological Sciences)2019,62,2:1
6Super-anti-freezing,tough and adhesive titanium carbide and L-ornithine-enhanced hydrogels显示文摘Hydrogels are highly porous three-dimensional crosslinked polymer networks consisting of hy-drophilic polymers,employed most practically in medicine and industry,often as biosensors.Simple hydrogels suffer limitations in their mechanical properties,such as tensile and com-pression,and freeze at sub-zero temperatures,which compromise their ability as useful biosen-sors.In this study,the incorporation of L-ornithine-based zwitterionic monomer(OZM),titanium carbide(MXene),and glycerol within polyacrylamide hydrogels was used to prepare a novel polyacrylamide/polyL-ornithine-based zwitterion/MXene(PAM/Porn/MXene)hydrogel to im-prove the mechanical,adhesion,and anti-freezing properties of pure polyacrylamide hydrogels.This study also analyzed the mechanical strength(tensile and compression),adhesion,and anti-freezing properties of a novel PAM/Porn/MXene hydrogel at 1%,4%,and 10%MXene concen-trations to establish to what extent the conductive MXene material enhanced these properties and concluded that the tensile and compressive properties improved linearly with the increase in the concentrations of MXene,adhesion decreased with the increased MXene concentrations,and syn-ergistic interaction between MXene and OZM significantly improved the anti-freezing properties up to-80°C.Zhangkang Li Jamie LeBlanc Hitendra Kumar Hongguang Zhang Weijun Yang Xiao He Qingye Lu Jeffrey Van Humbeck Keekyoung Kim Jinguang Hu 2023Journal of Bioresources and Bioproducts2023,8,2:0
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