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5篇 您的检索式:作者名="Elliott Hong"
    题名 作者 年代 出处 被引量
1Hapten synthesis and antibody production for the development of a melamine immunoassay显示文摘Hongtao Lei Yudong Shen Lijun Song Jinyi Yang Olivier P. Chevallier Simon A. Haughey Hong Wang Yuanming Sun Christopher T. Elliott 2010Analytica Chimica Acta2010,,1:1
2A model for energy pricing with stochastic emission costs 显示文摘ELLIOTT R J LYLE M R MIAO Hong 2010Energy Economies2010,32,4:1
3Pharmacological Suppression of Hepcidin Increases Macrophage Cholesterol Efflux and Reduces Foam Cell Formation and Atherosclerosis显示文摘Omar Saeed Fumiyuki Otsuka Rohini Polavarapu Vinit Karmali Daiana Weiss Talina Davis Brad Rostad Kimberly Pachura Lila Adams John Elliott W. Robert Taylor Jagat Narula Frank Kolodgie Renu Virmani Charles C. Hong Aloke V. Finn 2012Arteriosclerosis Thrombosis and Vascular Biology2012,,2:1
4Interscan reproducibility of quantitative coronary plaque volume and composition from CT coronary angiography using an automated method显示文摘Annika Schuhbaeck Damini Dey Yuka Otaki Piotr Slomka Brian G. Kral Stephan Achenbach Daniel S. Berman Elliott K. Fishman Shenghan Lai Hong Lai 2014European Radiology2014,,:1
5High-Performance Magnetic-core Coils for Targeted Rodent Brain Stimulations显示文摘Objective and Impact Statement.There is a need to develop rodent coils capable of targeted brain stimulation for treating neuropsychiatric disorders and understanding brain mechanisms.We describe a novel rodent coil design to improve the focality for targeted stimulations in small rodent brains.Introduction.Transcranial magnetic stimulation(TMS)is becoming increasingly important for treating neuropsychiatric disorders and understanding brain mechanisms.Preclinical studies permit invasive manipulations and are essential for the mechanistic understanding of TMS effects and explorations of therapeutic outcomes in disease models.However,existing TMS tools lack focality for targeted stimulations.Notably,there has been limited fundamental research on developing coils capable of focal stimulation at deep brain regions on small animals like rodents.Methods.In this study,ferromagnetic cores are added to a novel angle-tuned coil design to enhance the coil performance regarding penetration depth and focality.Numerical simulations and experimental electric field measurements were conducted to optimize the coil design.Results.The proposed coil system demonstrated a significantly smaller stimulation spot size and enhanced electric field decay rate in comparison to existing coils.Adding the ferromagnetic core reduces the energy requirements up to 60%for rodent brain stimulation.The simulated results are validated with experimental measurements and demonstration of suprathreshold rodent limb excitation through targeted motor cortex activation.Conclusion.The newly developed coils are suitable tools for focal stimulations of the rodent brain due to their smaller stimulation spot size and improved electric field decay rate.Hedyeh Bagherzadeh Qinglei Meng Hanbing Lu Elliott Hong Yihong Yang Fow-Sen Choa 2022Biomedical Engineering Frontiers2022,3,1:0
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