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9篇 您的检索式:作者名="Chian Wei"
    题名 作者 年代 出处 被引量
1Finite element simulation of food transport through the esophageal body显示文摘The peristaltic transport of swallowed material in the esophagus is a neuro-muscular function involving the nerve control, bolus-structure interaction, and structure-mechanics relationship of the tissue. In this study, a finite element model (FEM) was developed to simulate food transport through the esophagus. The FEM consists of three components, i.e., tissue, food bolus and peristaltic wave, as well as the interactions between them. The transport process was simulated as three stages, i.e., the filling of fluid, contraction of circular muscle and traveling of peristaltic wave. It was found that the maximal passive intraluminal pressure due to bolus expansion was in the range of 0.8-10 kPa and it increased with bolus volume and fluid viscosity. It was found that the highest normal and shear stresses were at the inner surface of muscle layer. In addition, the peak pressure required for the fluid flow was predicted to be 1-15 kPa at the bolus tail. The diseases of systemic sclerosis or osteogenesis imperfecta, with the remodeled microstructures and mechanical properties, might induce the malfunction of esophageal transport. In conclusion, the current simulation was demonstrated to be able to capture the main characteristics in the intraluminal pressure and bolus geometry as measured experimentally. Therefore, the finite element model established in this study could be used to further explore the mechanism of esophageal transport in various clinical applications.Wei Yang Tat Ching Fung Kerm Sire Chian Chuh Khiun Chong 2007World Journal of Gastroenterology2007,13,9:3
2Linear drug release membrane prepared by a modified coaxial electrospinning process 显示文摘YU Deng-guang CHIAN Wei WANG Xia 2013Journal of Mem- brane Science2013,428,:1
3INTERLEUKIN-6 IN CERVICAL CANCER: THE RELATIONSHIP WITH VASCULAR ENDOTHELIAL GROWTH FACTOR显示文摘WEI Lin-hung Kuo MIN-LIANG CHEN CHIAN ET AL 2001GYNECOL ONCOL2001,82,1:1
4Zero-order drug release cellulose acetate nanofibers prepared using coaxial electrospinning显示文摘Deng-Guang Yu Xiao-Yan Li Xia Wang Wei Chian Yao-Zu Liao Ying Li 2013Cellulose2013,,1:1
5Linear drug release membrane prepared by a modified coaxial electrospinning process显示文摘Yu Dengguang Chian Wei Wang Xia 2013J Membr Sci2013,428,:1
6Linear drug release membrane prepared by a modified coaxial electrospinning process显示文摘Deng-Guang Yu Wei Chian Xia Wang Xiao-Yan Li Ying Li Yao-Zu Liao 2013Journal of Membrane Science2013,,:1
7Selective oxidation of CO in excess hydrogen over CuO/ CexZrl -x 02 - Al2 03 catalysts显示文摘Yin - Zu Chen Bing - Jye Liaw Wei - Chian chang etal 2007Int J Hydrogen Energy2007,32,:1
8Hybrid Method to Identify Second-trip Echoes Using Phase Modulation and Polarimetric Technology显示文摘For pulse Doppler radars,the widely used method for identifying second-trip echoes(STs)in the signal processing level yields significant misidentification in regions of high turbulence and severe wind shear.In the data processing level,although the novel algorithm for ST identification does not yield significant misidentification in specific regions,its overall identification performance is not ideal.Therefore,this paper proposes a hybrid method for the identification of STs using phase modulation(signal processing)and polarimetric technology(data processing).Through this approach,most of the STs are removed,whereas most of the first-trip echoes(FTs)remain untouched.Compared with the existing method using a signal quality index filter with an optimized threshold,the hybrid method exhibits superior performance(Heidke skill scores of 0.98 versus 0.88)on independent test datasets,especially in high-turbulence and severe-wind-shear regions,for which misidentification is significantly reduced.Shuai ZHANG Jinzhong MIN Chian ZHANG Xingyou HUANG Jun LIU Kaihua WEI 2021Advances in Atmospheric Sciences2021,38,3:1
937 GHz Bandwidth Monolithically Integrated InP HBT/Evanescently Coupled Photodiode显示文摘Huang Wei kuo Huang Shou chian Chung Hsiao wen 2006IEEE Photonics Tech Lett2006,,12:1
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