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7篇 您的检索式:作者名="Zengchen Yang"
    题名 作者 年代 出处 被引量
1Study of severe and rare complications of transarterial chemoembolization (TACE) for liver cancer显示文摘Jinglin Xia Zhenggang Ren Shenglong Ye Dilip Sharma Zhiying Lin Yuhong Gan Yi Chen Ninglin Ge Zengchen Ma Zhiquan Wu Jia Fan Lunxiu Qin Xinda Zhou Zhaoyou Tang Binghui Yang 2006European Journal of Radiology2006,,3:2
2Conversion of surgically verified unresectable to resectable hepatocellular carcinoma显示文摘Zhaoyou Tang Yeqin Yu Zengchen Ma Rong Yang Xinda Zhou Kangda Liu Jizhen Lu Yanming Bao Zhiying Lin Binghui Yang 1989Chinese Journal of Cancer Research1989,,3:1
3A novel fluorescein derivative as a colorimetric chemosensor for detecting copper(II) ion显示文摘Tianrong Li Zhengyin Yang Yong Li Zengchen Liu Gaofei Qi Baodui Wang 2010Dyes and Pigments2010,,1:1
4A novel fluorescein derivative as a colorimetric chemosensor for detecting copper(II) ion显示文摘Tianrong Li Zhengyin Yang Yong Li Zengchen Liu Gaofei Qi Baodui Wang 2010Dyes and Pigments2010,,1:1
5A novel fluorescein derivative as a colorimetric chemosensor for detecting copper(II) ion显示文摘Tianrong Li Zhengyin Yang Yong Li Zengchen Liu Gaofei Qi Baodui Wang 2010Dyes and Pigments2010,,1:1
6Recent advances in high-β_(N) experiments and magnetohydrodynamic instabilities with hybrid scenarios in the HL-2A Tokamak显示文摘Over the past several years,high-β_(N) experiments have been carried out on HL-2A.The high-β_(N) is realized using double transport barriers(DTBs)with hybrid scenarios.A stationary high-β_(N) (>2)scenario was obtained by pure neutral-beam injection(NBI)heating.Transient high performance was also achieved,corresponding to β_(N)≥3,ne/ne_(G)∼0.6,H_(98)∼1.5,f_(bs)∼30%,q_(95)∼4.0,and��∼0.4.The high-β_(N) scenario was successfully modeled using integrated simulation codes,that is,the one modeling framework for integrated tasks(OMFIT).In high-����plasmas,magnetohydrodynamic(MHD)instabilities are abundant,including low-frequency global MHD oscilla-tion with n=1,high-frequency coherent mode(HCM)at the edge,and neoclassical tearing mode(NTM)and Alfvénic modes in the core.In some high-β_(N) discharges,it is observed that the NTMs with m/n=3/2 limit the growth of the plasma energy and decrease β_(N).The low-n global MHD oscillation is consistent with the coupling of destabilized internal(m/n=1/1)and external(m/n=3/1 or 4/1)modes,and plays a crucial role in triggering the onset of ELMs.Achieving high-β_(N) on HL-2A suggests that core-edge interplay is key to the plasma confinement enhancement mechanism.Experiments to enhance β_(N) will contribute to future plasma operation,such as international thermonuclear experimental reactor.Wei Chen Liming Yu Min Xu Xiaoquan Ji Zhongbing Shi Xiaoxue He Zhengji Li Yonggao Li Tianbo Wang Min Jiang Shaobo Gong Jie Wen Peiwan Shi Zengchen Yang Kairui Fang Jia Li Lai Wei Wulv Zhong Aiping Sun Jianyong Cao Xingyu Bai Jiquan Li Xuantong Ding Jiaqi Dong Qingwei Yang Yi Liu Longwen Yan Zhengxiong Wang Xuanru Duan 2022Fundamental Research2022,2,5:0
7Enhanced mixing efficiency for a novel 3D Tesla micromixer for Newtonian and non-Newtonian fluids显示文摘The fabrication of constructs with gradients for chemical,mechanical,or electrical composition is becoming critical to achieving more complex structures,particularly in 3D printing and biofabrication.This need is underscored by the complexity of in vivo tissues,which exhibit heterogeneous structures comprised of diverse cells and matrices.Drawing inspiration from the classical Tesla valve,our study introduces a new concept of micromixers to address this complexity.The innovative micromixer design is tailored to enhance the re-creation of in vivo tissue structures and demonstrates an advanced capability to efficiently mix both Newtonian and non-Newtonian fluids.Notably,our 3D Tesla valve micromixer achieves higher mixing efficiency with fewer cycles,which represents a significant improvement over the traditional mixing method.This advance is pivotal for the field of 3D printing and bioprinting,and offers a robust tool that could facilitate the development of gradient hydrogel-based constructs that could also accurately mimic the intricate heterogeneity of natural tissues.Abdellah AAZMI Zixian GUO Haoran YU Weikang LV Zengchen JI Huayong YANG Liang MA 2023Journal of Zhejiang University-Science A(Applied Physics & Engineering)2023,24,12:0
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