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7篇 您的检索式:作者名="Lingfeng Zou"
    题名 作者 年代 出处 被引量
1glmm.hp:一个计算广义线性混合模型中单个预测变量效应的R包显示文摘广义线性混合效应模型(GLMMs)是当代生态学研究中广泛应用的数据分析模型。然而,确定GLMMs中共线性的预测变量(固定效应)对响应变量的相对重要性是个挑战。基于适用于多元分析的‘平均共享方差’的算法,我们开发一个新的R包glmm.hp来分解GLMMs中由固定效应解释的边际(marginal)R2^(2)。我们论述了该软件包的工作原理并通过模拟数据集演示了该软件包的使用。glmm.hp包的输出结果为每个预测变量将获得一个独自的(individual)边际R2^(2),且它们的总和刚好等于模型总的边际R2^(2)。总之,我们相信glmm.hp包将有助于解释GLMMs的输出结果。Jiangshan Lai Yi Zou Shuang Zhang Xiaoguang Zhang Lingfeng Mao 2022Journal of Plant Ecology2022,15,6:2
2Decreased miRNA-148a is associated with lymph node metastasis and poorclinical outcomes and functions as a suppressor of tumor metastasis in non-smallcell lung cancer显示文摘Yong Chen Lingfeng Min Xizhi Zhang Suwei Hu Buhai Wang Wei Liu Rui Wang Xuewen Gu Weigan Shen Houning Lv Jing Zou Yuexiang Chen Xingxiang Xu Longbang Chen 2013Oncology Reports2013,,4:1
3Additional gene data and increased sampling give new insights into the phylogenetic relationships of Neogastropoda, within the caenogastropod phylogenetic framework显示文摘Shanmei Zou Qi Li Lingfeng Kong 2011Molecular Phylogenetics and Evolution2011,,2:1
4Underground coal gasification and its strategic significance to the development of natural gas industry in China显示文摘Based on the present situation and trend of underground coal gasification in China and overseas, this article puts forward the basic concept, mechanism and mode of underground coal gasification, and presents the challenges, development potential and development path now faced. In China, underground coal gasification which is in accord with the clean utilization of coal can produce 'artificial gas', which provides a new strategic approach to supply methane and hydrogen with Chinese characteristics before new energy sources offer large-scale supply. Coal measure strata in oil-bearing basins are developed in China, with 3.77 trillion tons coal reserves for the buried depth of 1000-3 000 m. It is initially expected that the amount of natural gas resources from underground coal gasification to be 272-332 trillion cubic meters, which are about triple the sum of conventional natural gas, or equivalent to the total unconventional natural gas resources. According to the differences of coal reaction mechanism and product composition of underground coal gasification, the underground coal gasification can be divided into three development modes, hydrogen-rich in shallow, methane-rich in medium and deep,supercritical hydrogen-rich in deep. Beyond the scope of underground mining of coal enterprises, petroleum and petrochemical enterprises can take their own integration advantages of technologies, pipeline, market and so on, to develop underground coal gasification business based on their different needs and technical maturity, to effectively exploit a large amount of coal resources cleanly and to alleviate the tight supply of natural gas. It can also be combined with using the produced hydrogen in nearby area and the CO_2 flooding and storage in adjacent oil areas to create a demonstration zone for net zero emissions of petroleum and petrochemical recycling economy. It is significant for reserving resources and technologies for the coming 'hydrogen economy' era, and opening up a new path for China's 'clean, low carbon, safe and efficient' modern energy system construction.ZOU Caineng CHEN Yanpeng KONG Lingfeng SUN Fenjin CHEN Shanshan DONG Zhen 2019Petroleum Exploration and Development2019,46,2:0
5The suppression of cervical cancer ferroptosis by macrophages:The attenuation of ALOX15 in cancer cells by macrophages-derived exosomes显示文摘Induction of cancer cell ferroptosis has been proposed as a potential treatment in several cancer types.Tumor-associated macrophages(TAMs)play a key role in promoting tumor malignant progression and therapy resistance.However,the roles and mechanisms of TAMs in regulating tumor ferroptosis is still unexplored and remains enigmatic.This study shows ferroptosis inducers has shown therapeutic outcomes in cervical cancer in vitro and in vivo.TAMs have been found to suppress cervical cancer cells ferroptosis.Mechanistically,macrophage-derived miRNA-660-5p packaged into exosomes are transported into cancer cells.In cancer cells,miRNA-660-5p attenuates ALOX15 expression to inhibit ferroptosis.Moreover,the upregulation of miRNA-660-5p in macrophages depends on autocrine IL4/IL13-activated STAT6 pathway.Importantly,in clinical cervical cancer cases,ALOX15 is negatively associated with macrophages infiltration,which also raises the possibility that macrophages reduce ALOX15 levels in cervical cancer.Moreover,both univariate and multivariate Cox analyses show ALOX15 expression is independent prognostic factor and positively associated with good prognosis in cervical cancer.Altogether,this study reveals the potential utility of targeting TAMs in ferroptosis-based treatment and ALOX15 as prognosis indicators for cervical cancer.Yanlin Luo Yibing Chen Huan Jin Benxin Hou Hongsheng Li Xiang Li Lingfeng Liu Yuan Zhou Yonghua Li Yong Sang Song Quentin Liu Zhengzhi Zou 2023Acta Pharmaceutica Sinica B2023,13,6:0
6Highly Efficient Aligned Ion‑Conducting Network and Interface Chemistries for Depolarized All‑Solid‑State Lithium Metal Batteries显示文摘Improving the long-term cycling stability and energy density of all-solid-state lithium(Li)-metal batteries(ASSLMBs)at room temperature is a severe challenge because of the notorious solid–solid interfacial contact loss and sluggish ion transport.Solid electrolytes are generally studied as two-dimensional(2D)structures with planar interfaces,showing limited interfacial contact and further resulting in unstable Li/electrolyte and cathode/electrolyte interfaces.Herein,three-dimensional(3D)architecturally designed composite solid electrolytes are developed with independently controlled structural factors using 3D printing processing and post-curing treatment.Multiple-type electrolyte films with vertical-aligned micro-pillar(p-3DSE)and spiral(s-3DSE)structures are rationally designed and developed,which can be employed for both Li metal anode and cathode in terms of accelerating the Li+transport within electrodes and reinforcing the interfacial adhesion.The printed p-3DSE delivers robust long-term cycle life of up to 2600 cycles and a high critical current density of 1.92 mA cm^(−2).The optimized electrolyte structure could lead to ASSLMBs with a superior full-cell areal capacity of 2.75 mAh cm^(−2)(LFP)and 3.92 mAh cm^(−2)(NCM811).This unique design provides enhancements for both anode and cathode electrodes,thereby alleviating interfacial degradation induced by dendrite growth and contact loss.The approach in this study opens a new design strategy for advanced composite solid polymer electrolytes in ASSLMBs operating under high rates/capacities and room temperature.Yongbiao Mu Shixiang Yu Yuzhu Chen Youqi Chu Buke Wu Qing Zhang Binbin Guo Lingfeng Zou Ruijie Zhang Fenghua Yu Meisheng Han Meng Lin Jinglei Yang Jiaming Bai Lin Zeng 2024Nano-Micro Letters2024,16,5:0
73D printing critical materials for rechargeable batteries: from materials, design and optimization strategies to applications显示文摘Three-dimensional(3D)printing,an additive manufacturing technique,is widely employed for the fabrication of various electrochemical energy storage devices(EESDs),such as batteries and supercapacitors,ranging from nanoscale to macroscale.This technique offers excellent manufacturing flexibility,geometric designability,cost-effectiveness,and eco-friendliness.Recent studies have focused on the utilization of 3D-printed critical materials for EESDs,which have demonstrated remarkable electrochemical performances,including high energy densities and rate capabilities,attributed to improved ion/electron transport abilities and fast kinetics.However,there is a lack of comprehensive reviews summarizing and discussing the recent advancements in the structural design and application of 3D-printed critical materials for EESDs,particularly rechargeable batteries.In this review,we primarily concentrate on the current progress in 3D printing(3DP)critical materials for emerging batteries.We commence by outlining the key characteristics of major 3DP methods employed for fabricating EESDs,encompassing design principles,materials selection,and optimization strategies.Subsequently,we summarize the recent advancements in 3D-printed critical materials(anode,cathode,electrolyte,separator,and current collector)for secondary batteries,including conventional Li-ion(LIBs),Na-ion(SIBs),K-ion(KIBs)batteries,as well as Li/Na/K/Zn metal batteries,Zn-air batteries,and Ni–Fe batteries.Within these sections,we discuss the 3DP precursor,design principles of 3D structures,and working mechanisms of the electrodes.Finally,we address the major challenges and potential applications in the development of 3D-printed critical materials for rechargeable batteries.Yongbiao Mu Youqi Chu Lyuming Pan Buke Wu Lingfeng Zou Jiafeng He Meisheng Han Tianshou Zhao Lin Zeng 2023International Journal of Extreme Manufacturing2023,5,4:0
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