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18篇 您的检索式:作者名="Amit Banerjee"
    题名 作者 年代 出处 被引量
1Applications of phototheranostic nanoagents in photodynamic therapy显示文摘Nanotherapeutics 在象癌症那样的疾病的治疗有一个增加的角色。在光力学的治疗(太平洋夏季时间) ,治疗学地不活跃的 photosensitizer 混合物被光有选择地激活生产能够杀死 diseased 房间和病原体的分子。一个 phototheranostic 代理人能为指向的交货,光成像和疾病的光力学的治疗与能力被定义为单个 nanoentity。恶意的房间,纸巾和微生物引起的 etiologic 代理人能被太平洋夏季时间有效地指向。光力学的治疗是 noninvasive,或最低限度地侵略,并且当健康织物的损坏被最小化,杀死的效果是局部性的,有很少副作用。癌症,粉刺和另外的疾病的各种各样的形式可以被对待。在里面 photosensitizers 的 vivo 功效被把他们纳入能够指向 diseased 地点的 nanostructures 进一步改进。如此的 photosensitizer-functionalized nanostructures,或 nanotherapeutics,为改进 phototheranostic 性能允许成像和治疗学的代理人的地点特定的交货。这评论在诊断和治疗探索 phototheranostic nanostructures 的潜在的应用。Jayeeta Bhaumik Amit Kumar Mittal Avik Banedee Yusuf Chisti Uttam Chand Banerjee 2015Nano Research2015,8,5:8
2Changes in organic structure and mineral phases transformation of coal during heat treatment on laboratory scale显示文摘Vivek Mishra Mamta Sharma Sanchita Chakravarty Amit Banerjee 2016International Journal of Coal Science & Technology2016,3,4:8
3Distribution of mineral species in different coal seams of Talcher coalfield and its transformation behavior at varying temperatures显示文摘Amit Banerjee P. R. Mishra Ashok Mohanty K. Chakravarty R. Das Biswas R. Sahu S. Chakravarty 2016International Journal of Coal Science & Technology2016,3,2:4
4Rapid high performance hyperspectral anomaly detection via global support vector data description显示文摘Renven Meth Amit Banerjee Philippe Burlina Thomas Strat 2008SPIE2008,6967,:1
5Enzymatic acetylation of 10-deacetylbaccatin III to baccatin III by C-10 deacetylase from Nocardioides luteus SC 13913显示文摘Ramesh N. Patel Amit Banerjee Venkata Nanduri 2000Enzyme and Microbial Technology2000,,6:1
6Multi-scale damage state estimation in composites using nonlocal elastic kernel: An experimental validation显示文摘Amit Shelke Sourav Banerjee Tribikram Kundu Umar Amjad W. Grill 2011International Journal of Solids and Structures2011,,7:1
7Synthesis, processing, mechanical, and biological property characterization of hydroxyapatite whisker-reinforced hydroxyapatite composites显示文摘Banerjee Ashis Dasgupta Sudip Bandyopadhyay Amit 2009Journal of the American Ceramic Society2009,92,2:1
8A support vector method for anomaly detection in hyperspectral imagery显示文摘 2006IEEE Transactions on Geoscience and Remote Sensing2006,44,8:1
9Xanthine oxidoreductase: A journey from purine metabolism to cardiovascular excitation-contraction coupling显示文摘Amit Agarwal Avik Banerjee U C Banerjee 2011Critical Reviews in Biotechnology2011,,3:1
10Conventional and Predictive Control Algorithms for Controlling Nonlinear Processes Using Multiple-Model Approach显示文摘Ma'moun Abu-Ayyad Issam Abu-Mahfouz Amit Banerjee 2013Journal of Mechanics Engineering and Automation2013,3,1:1
11A Support Vector Method for Anomaty Detection in Hyperspectral Imagery 显示文摘Amit Banerjee Philippe Burlina Chris Diehl 2006IEEE Transactions on Geoscienee and Remote Sensing2006,44,8:1
12Accurate analysis of on-chip inductance effects and implications for optimal repeater insertion and technology scaling显示文摘Banerjee Kaustav Mehrotra Amit 2001IEEE Symposium on VLSI Circuits2001,6,:1
13A support vector method for anomaly detection in hyperspectral imagery 显示文摘Amit Banerjee 2006IEEE Transactions on Geosciences and Remote Sensing2006,44,8:1
14Accurate analysis of on-chip inductance effects and implications for optimal repeater insertion and technology scaling 显示文摘Banerjee Kaustav Mehrotra Amit 2001IEEE Symposium on VLSI Circuits2001,6,:1
15A Support Vector Method for Anomaly Detection in Hyperspectral Imagery 显示文摘Amit Banerjee Philippe Burlina Chris Diehl 2006IEEE Transactions on Geoscience and Remote Sensing(S0196-2892)2006,44,8:1
16A Knowledge Based Framework for Selecting Management Science Models 显示文摘Snehamay Banerjee Amit Basu 1990IEEE1990,3,:1
17A Support vector method for anomaly detection in hyperspectral imagery 显示文摘Amit Banerjee 2006IEEE Trans on Geoscience and Remote Sensing2006,44,8:1
18纳米级金刚石的超大弹性形变显示文摘金刚石具有很强的硬度和耐磨性,但使金刚石形变通常会导致脆性断裂。本文研究展示了纳米级(~300纳米)单晶和多晶金刚石针的超大、完全可逆的弹性形变。对于单晶金刚石,最大拉伸应变(高达9%)接近理论弹性极限,并且相应的最大拉伸应力达到约89至98千兆帕斯卡。Amit Banerjee Yang Lu Subra Suresh 刘斐莹 2018家电科技2018,0,5:0
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