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6篇 您的检索式:作者名="Zhao Qianwei"
    题名 作者 年代 出处 被引量
1A study on theoretical calculation method of subway safety evaeuation显示文摘Zhang Bing Xu Zhisheng Zhao Qianwei 2014Procedia Engi neering2014,71,:1
2A study on theoretical calculation method of subway safety evacuation显示文摘ZHANG Bing XU Zhisheng ZHAO Qianwei 2014Procedia Engineering2014,71,:1
3BCAT1 promotes lung adenocarcinoma progression through enhanced mitochondrial function and NF-κB pathway activation显示文摘Lung cancer is one of the most prevalent and malignant cancers,among which lung adenocarcinoma(LUAD)accounts for the majority and remains a major cause of cancer-related mortality worldwide(Cui et al.,2019).Despite the growing intensity of research on the pathobiology and progression of lung cancer and the fact that many genes have been identified as potential drivers and targets for therapy(Luo et al.,2019;Zhang et al.,2019),the treatment and prognosis of lung cancer patients have hardly improved.Therefore,this study aimed to investigate the precise mechanism of lung cancer development and explore efficient diagnostic and therapeutic methods for clinical treatment.Mengdan YU Qianwei ZHAO Jinxia LI Fang XU Zhibiao ZHANG Yixian LIU Liping DAI Bingxia ZHANG Jianying ZHANG Jintao ZHANG 2022Journal of Zhejiang University-Science B(Biomedicine & Biotechnology)2022,23,9:0
4Recent advances in brown adipose tissue biology显示文摘In mammals,white adipose tissue(WAT)store energy,whereas brown adipose tissue(BAT)burns energy.As a thermogenic organ,BAT can help maintain body temperature during cold exposure.Owing to its important roles in energy metabolism and regulating triacylglycerol levels,BAT has received great attention in treating obesity and its related diseases.Recent studies have suggested that BAT may secrete factor(s)—batokines—to regulate wholebody energy metabolism.In this review,we summarize the recent advances in the formation and function of BAT,as well as molecules that regulate the activity of BAT and beige fat.Yanyan Shen Xiaomeng Liu Meng Dong Jun Lin Qianwei Zhao HyuekJong Lee Wanzhu Jin 2014Chinese Science Bulletin2014,59,31:0
5Frequency dispersion effect and parameters extraction method for novel HfO_2 as gate dielectric显示文摘The electric characteristic of MOS capacitor with HfO_2/SiO_2/p-Si grown by ALCVD (atom layer chemical vapor deposition) is investigated. The C-V curves show that the accumulation capacitances take on the frequency dispersion at high frequency. For MOS capacitor with ultra thin HfO_2/SiO_2 gate stack, different fabrication processes and measurement equipment will cause parasitic effect. Here an equivalent circuit model that can eliminate the frequency dispersion effect is proposed. The C-V characteristics curve at high frequency shows some distortion because of the bulk defects and the interface states. This paper discusses the distortion of the high frequency MOS C-V characteristic curve. A data processing method is advanced and interface trap density distribution in the band gap is presented. By comparing the ideal C-V curve with the experimental C-V curve, the typical electrical parameters of MOS capacitor are extracted, including the shift of flat-band voltage, the oxide charges and the density of interface traps at the SiO_2/Si interface.LIU HongXia KUANG QianWei LUAN SuZhen ZHAO Aaron TALLAVARJULA Sai 2010Science China(Information Sciences)2010,53,4:0
6Structural basis of INTAC-regulated transcription显示文摘DearEditor,Eukaryotic transcription by RNA polymerase I(Pol I)is a strictly regulated process that involves the interplay of numerous factors.Promoter-proximal pausing is a regulatory mechanism that connects transcription initiation and productive elongation in metazoans(Core and Adelman,2019).Pol II forms a paused elongation complex(PEC)through binding of two transcriptional regulation factors DSIF and NELF(Vos et al.,2018).Following the duration of pausing,Pol II either proceeds into productive elongation or undergoes promoter-proximal premature transcription termination(PTT)(Kamieniarz-Gdula and Proudfoot,2019),which plays a decisive role in determining transcriptional outputs.Hai Zheng Qianwei Jin Xinxin Wang Yilun Qi Weida Liu Yulei Ren Dan Zhao Fei Xavier Chen Jingdong Cheng Xizi Chen Yanhui Xu 2023Protein & Cell2023,14,9:0
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