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| 1 | The association between metabolic abnormality and endometrial cancer: A large case-control study in China显示文摘 | Yan Zhang Zhiwei Liu Xinchun Yu Xiaofei Zhang Shiming Lü Xiaoduan Chen Bingjian Lü | 2010 | Gynecologic Oncology2010,,1: | 3 |
| 2 | Dual-layered metasurfaces for asymmetric focusing显示文摘Asymmetric transmission,defined as the difference between the forward and backward transmission,enables a plethora of applications for on-chip integration and telecommunications.However,the traditional method for asymmetric transmission is to control the propagation direction of the waves,hindering further applications.Metasurfaces,a kind of two-dimensional metamaterials,have shown an unprecedented ability to manipulate the propagation direction,phase,and polarization of electromagnetic waves.Here we propose and experimentally demonstrate a metasurface-based directional device consisting of a geometric metasurface with spatially rotated microrods and metallic gratings,which can simultaneously control the phase,polarization,and propagation direction of waves,resulting in asymmetric focusing in the terahertz region.These dual-layered metasurfaces for asymmetric focusing can work in a wide bandwidth ranging from 0.6 to 1.1 THz.The flexible and robust approach for designing broadband asymmetric focusing may open a new avenue for compact devices with potential applications in encryption,information processing,and communication. | BINGSHUANG YAO XIAOFEI ZANG ZHEN L LIN CHEN JINGYA XIE YIMING ZHU SONGLIN ZHUANG | 2020 | Photonics Research2020,8,6: | 2 |
| 3 | Repair of massive stent-induced tracheoesophageal fistula显示文摘 | Yong H Kun L Xiaofei L | 2009 | J Thorac Cardiovasc Surg2009,137,4: | 1 |
| 4 | Clarification of cinnamoyl Co-enzyme A r-eductase catalysis in monolignol biosynthesis of aspen显示文摘 | LAIGENG L XIAOFEI C SHANFA L | 2005 | Plant and Cell Physiology2005,46,7: | 1 |
| 5 | Correlation of microRNAs responding to high dose γ-irradiation with predicted target mRNAs in HeLa cells using microarray analyses显示文摘An increasing data indicates that altered microRNAs(miRNAs)participate in the radiation-induced DNA damage response.However,a correlation of mRNA and miRNA profiles across the entire genome and in response to irradiation has not been thoroughly assessed.We analyzed miRNA microarray data collected from HeLa cells after ionizing radiation(IR),quantified the expression profiles of mRNAs and performed comparative analysis of the data sets using target prediction algorithms,Gene Ontology(GO)analysis,pathway analysis,and gene network construction.The results showed that the altered miRNAs were involved in regulation of various cellular functions.miRNA-gene network analyses revealed that miR-186,miR-106b,miR-15a/b,CCND1and CDK6 played vital role in the cellular radiation response.Using qRT-PCR,we confirmed that twenty-two miRNAs showed differential expression in HeLa cells treated with IR and some of these miRNAs affected cell cycle progression.This study demonstrated that miRNAs influence gene expression in the entire genome during the cellular radiation response and suggested vital pathways for further research. | HU Zheng TIE Yi Lü GuiXiang FU HanJiang XING RuiYun ZHU Jie SUN ZhiXian ZHENG XiaoFei | 2013 | Chinese Science Bulletin2013,58,36: | 1 |
| 6 | Evaluation of the psychological status in adult with seasonal allergic rhinitis显示文摘 | XIAOFEI L V LIN X I DEMIN HAN | 2010 | ORL2010,72,: | 1 |
| 7 | Transmit ting-mode time reversal imaging using MUSIC algo- rithm for surveillance in wireless sensor network显示文摘 | LIU Xiaofei WANG Bingzhong LI J L | 2012 | IEEE Transactions on Antennas and Propagation2012,60,1: | 1 |
| 8 | Effect of Changing Heart Rate on the Ocular Pulse and Optic Nerve Head Deformations显示文摘Objective To study the effect of changing heart rate on the ocular pulse and optic nerve head deformations with a viscoelastic lamina cribrosa.Methods An FE model of a healthy eye was reconstructed.The choroid was biphasic and consisted of a solid phase(connective tissues)and a fluid phase(blood).The LC was viscoelastic as characterized by a stress-relaxation test.We applied arterial pressures at 18 entry sites(posterior ciliary arteries)and venous pressures at 4 exit sites(vortex veins).The heart rate was varied from 60 bpm to 120 bpm(increment:20 bpm).We reported the ocular pulse amplitude(OPA),pulse volume,optic nerve head(ONH)deformations and the dynamic modulus of the LC at different heart rates.Results With an increasing heart rate,the OPA decreased by 0.04 mmHg for every 10 bpm increase.The pulse volume also exhibited a linear relationship with heart rate,and decreased by 0.13 L.In addition,the storage modulus and the loss modulus of the LC center increased by 0.014 MPa and 0.04 MPa,respectively for every 10 pm increase in heart rate.Conclusions Our model predicted that the OPA,the pulse volume the ONH deformation decreased at a faster heartrate.We also found that the viscoelastic LC became stiffer with an increasing heart rate.Further studies are required to explore the potential links with the vascular dysregulation and axonal loss in glaucoma. | Yuejiao Jin Xiaofei Wang Sylvi Febriana Rachmawati Irnadiastputri Rosmin Elsa Mohan Tin Aung Leopold Schmetterer Michal JAGirard | 2019 | 医用生物力学2019,34,A01: | 0 |