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105篇 您的检索式:作者名="JOE ZHU"
    题名 作者 年代 出处 被引量
1Nature:通过控制血管生长来开发治疗癌症等多种疾病的新型疗法显示文摘最近,一项刊登在国际杂志Nature上的研究报告中,来自耶鲁大学的研究人员通过研究揭示了如何通过控制血管发育来帮助开发治疗心血管疾病以及癌症的新型疗法。Yu, Pengchun Wilhelm, Kerstin Dubrac, Alexandre Tung, Joe K. Alves, Tiago C. Fang, Jennifer S. Xie, Yi Zhu, Jie Chen, Zehua De Smet, Frederik Zhang, Jiasheng Jin, Suk-Won Sun, Lele Sun, Hongye Kibbey, Richard G. Hirschi, Karen K. Hay, Nissim Carmeliet, Peter Chittenden, Thomas W. Eichmann, Anne Potente, Michael Simons, Michael 2017现代生物医学进展2017,17,22:9
2Measuring performance of two-stage network structures by DEA: A review and future perspective显示文摘Wade D. Cook Liang Liang Joe Zhu 2009Omega2009,,6:3
3Returns to scale in different DEA models显示文摘Rajiv D. Banker William W. Cooper Lawrence M. Seiford Robert M. Thrall Joe Zhu 2003European Journal of Operational Research2003,,2:2
4Evaluation of information technology investment: a data envelopment analysis approach显示文摘Yao Chen Liang Liang Feng Yang Joe Zhu 2004Computers and Operations Research2004,,5:2
5Alternative secondary goals in DEA cross-efficiency evaluation显示文摘Liang Liang Jie Wu Wade D. Cook Joe Zhu 2008International Journal of Production Economics2008,,2:2
6Modeling undesirable factors in efficiency evaluation显示文摘Lawrence M. Seiford Joe Zhu 2002European Journal of Operational Research2002,,1:2
7On brain activity mapping: Insights and lessons from Brain Decoding Project to map memory patterns in the hippocampus显示文摘The BRAIN project recently announced by the president Obama is the reflection of unrelenting human quest for cracking the brain code, the patterns of neuronal activity that define who we are and what we are. While the Brain Activity Mapping proposal has rightly emphasized on the need to develop new technologies for measuring every spike from every neuron, it might be helpful to consider both the theoretical and experimental aspects that would accelerate our search for the organizing principles of the brain code. Here we share several insights and lessons from the similar proposal, namely, Brain Decoding Project that we initiated since 2007. We provide a specific example in our initial mapping of real-time memory traces from one part of the memory circuit, namely, the CA1 region of the mouse hippocampus. We show how innovative behavioral tasks and appropriate mathematical analyses of large datasets can play equally, if not more, important roles in uncovering the specific-to-general feature-coding cell assembly mechanism by which episodic memory, semantic knowledge, and imagination are generated and organized. Our own experiences suggest that the bottleneck of the Brain Project is not only at merely developing additional new technologies, but also the lack of efficient avenues to disseminate cutting edge platforms and decoding expertise to neuroscience community. Therefore, we propose that in order to harness unique insights and extensive knowledge from various investigators working in diverse neuroscience subfields, ranging from perception and emotion to memory and social behaviors, the BRAIN project should create a set of International and National Brain Decoding Centers at which cutting-edge recording technologies and expertise on analyzing large datasets analyses can be made readily available to the entire community of neuroscientists who can apply and schedule to perform cutting-edge research.TSIEN Joe Z. LI Meng OSAN Remus CHEN GuiFen LIN LongNian WANG Phillip Lei FREY Sabine FREY Julietta ZHU DaJiang LIU TianMing ZHAO Fang KUANG Hui 2013Science China(Life Sciences)2013,56,9:1
8Dendritic cell-activated CD44^hi CD8^+T cells are defective in mediating acute grail-versus-host disease but retain graft-versus-leukemia activity显示文摘Zhang YY Joe G Zhu J 2004Blood2004,103,10:1
9Evaluation of information technology investment: a data envelopment analysis approach 显示文摘Yao Chen Liang Liang Feng Yang Joe Zhu 2006computer & operations research2006,,:1
10An investigation of returns to scale in data envelopment analysis显示文摘Lawrence M. Seiford Joe Zhu 1998Omega1998,,:1
11Dendritic cell-activated CD44hiCD8+ T cells are defective in mediating acute graft-versus-host disease but retain graft-versus-leukemia activity显示文摘ZHANG Y JOE G ZHU J 2004Blood2004,103,10:1
12On piecewise loglinear frontiers and log efficiency measures显示文摘Lawrence M. Seiford Joe Zhu 1998Computers and Operations Research1998,,:1
13Portfolio evaluation and benchmark selection: A mathematical programming approach显示文摘Wilkens Kathryn Zhu Joe 2001The Journal of Alternative Investments2001,,:1
14Super-efficiency and DEA sensitivity analysis显示文摘Joe Zhu 2001European Journal of Operational Research2001,,:1
15Context-Dependent DEA with an Application to Tokyo Public Libraries显示文摘Chen Yao Morita H Zhu Joe 2005International Journal of Information Technology & Decision Making2005,,3:1
16A slacks-based measure of super-efficiency in data envelopment analysis: A comment显示文摘Juan Du Liang Liang Joe Zhu 2009European Journal of Operational Research2009,,3:1
17The DEA Game Cross-Efficiency Model and Its Nash Equilibrium显示文摘Liang Liang Wu Jie Cook Wade D Zhu Joe 2008Operations Research2008,,5:1
18Deriving the DEA fron- tier for two - stage processes 显示文摘YAO CHEN WADE D COOK JOE ZHU 2010European Journal of Operational Research2010,,202:1
19Evaluation of information technology investment: a data envelopment analysis approach 显示文摘Yao Chen Liang Liang Feng Yang Joe Zhu 2006Computers & Operations Research2006,33,:1
20NF-Ya activates multiple hematopoietic stem cell (HSC) regulatory genes and promotes HSC self-renewal显示文摘Zhu J Zhang Y Joe G J 2005Proc Natl Acad Sci2005,102,11:1
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