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17篇 您的检索式:作者名="Alberto ME"
    题名 作者 年代 出处 被引量
1High-resolution multimodal flexible coherent Raman endoscope显示文摘Coherent Raman scattering microscopy is a fast,label-free,and chemically specific imaging technique that shows high potential for future in vivo optical histology.However,the imaging depth in tissues is limited to the sub-millimeter range because of absorption and scattering.Realization of coherent Raman imaging using a fiber endoscope system is a crucial step towards imaging deep inside living tissues and providing information that is inaccessible with current microscopy tools.Until now,the development of coherent Raman endoscopy has been hampered by several issues,mainly related to the fiber delivery of the excitation pulses and signal collection.Here,we present a flexible,compact,coherent Raman,and multimodal nonlinear endoscope(4.2mm outer diameter,71mm rigid length)based on a resonantly scanned hollow-core Kagomé-lattice double-clad fiber.The fiber design enables distortion-less,background-free delivery of femtosecond excitation pulses and back-collection of nonlinear signals through the same fiber.Sub-micrometer spatial resolution over a large field of view is obtained by combination of a miniature objective lens with a silica microsphere lens inserted into the fiber core.We demonstrate high-resolution,high-contrast coherent anti-Stokes Raman scattering,and second harmonic generation endoscopic imaging of biological tissues over a field of view of 320μm at a rate of 0.8 frames per second.These results pave the way for intraoperative label-free imaging applied to real-time histopathology diagnosis and surgery guidance.Alberto Lombardini Vasyl Mytskaniuk Siddharth Sivankutty Esben Ravn Andresen Xueqin Chen Jérôme Wenger Marc Fabert Nicolas Joly Frédéric Louradour Alexandre Kudlinski Hervé Rigneault 2018Light(Science & Applications)2018,7,1:6
2The second generation anti- cancer drug Nedaplatin: a theoretical investigation on the hydrolysis mechanism显示文摘Alberto ME Lucas MF Pavelka M 2009J Phys Chem B2009,113,43:1
3Which one among the Pt-containing anticancer drugs more easily forms monoadducts with G and A DNA bases?A comparative study among oxaliplatin,nedaplatin and carboplatin显示文摘Alberto ME Butera V Russo N 2011Inorg Chem2011,50,15:1
4The second- generation anticancer drug nedaplatin: a theoretical investigation on the hydrolysis mechanism 显示文摘Alberto ME Lucas MF Pavelka M 2009J Plays Chem B2009,113,14:1
5A comparative survey of two analytical methods for identification and quantification of biogenic amines 显示文摘Alberto MR Arena ME Manca de Nadra MC 2002Food Contral2002,13,:1
6The second-generationanticancer drug Nedaplatin:a theoretical investigation on the hy-drolysis mechanism显示文摘Alberto ME Lucas MF Pavelka M 2009J Phys Chem B2009,113,14:1
7The second-generation anticancer drug Nedaplatin:a theoretical investigation on the hydrolysis mechanism显示文摘Alberto ME Lucas MF Pavelka M 2009J Phys Chem B2009,113,14:1
8The second-gen eration aticancer drug nedaplantin:a theoretical investigation on the by drolysis mechanism显示文摘Alberto ME Lucas MF Pavelka M 2009J Phys Chemo B2009,113,14:1
9Which one among the Pt-comain- ing anticancer drugs more easily forms monoadducts with G and A DNA bases? A comparative study among oxaliplatin, nedaplatin, and carboplatin显示文摘Alberto ME Butera V Russo N 2011Inorg Chem2011,50,15:1
10The second-generation anticancer drug Nedaplatin: a theoretical investigation on the hydrolysis mechanism 显示文摘Alberto ME Lucas MF Pavelka M 2009J Phys Chem B2009,113,14:1
11The degradation pathways in chloride medium of the third generation anticancer drug oxaliplatin显示文摘Alberto ME Lucas MF Pavelka M 2008J Phys Chem B2008,112,10:1
12The second generation anticancer drug Nedaplatin: a theoretical investigation on the hydrolysis mechanism 显示文摘Alberto ME Lucas MF Pavelka M 2009J Phys Chem B2009,113,14:1
13The secondgeneration anticancer drug Nedaplatin: a theoretical investigation on the hydrolysis mechanism 显示文摘Alberto ME Lucas MF Pavelka M 2009J Phys Chem B2009,113,14:1
14The Second-Generation Anti- cancer Drug Nedaplatin:A Theoretical Investigation on the HydrolysisMechanism显示文摘Alberto ME Lucas MF Pavelka M 2009J Phys Chen B2009,113,14:1
15A comparative survey of two analytical methods for identification and quantification of biogenic amines显示文摘Alberto MR Arena ME Manca de Nadra MC 2002Food control2002,13,:1
16The second-generation anticancer drug Nedaplatin:a theoretical investigation on the hydrolysis mechanism显示文摘Alberto ME Lucas MF Pavelka M 2009J Phy Chem B2009,113,14:1
17Observatory science with eXTP显示文摘In this White Paper we present the potential of the enhanced X-ray Timing and Polarimetry(eXTP) mission for studies related to Observatory Science targets. These include flaring stars, supernova remnants, accreting white dwarfs, low and high mass X-ray binaries, radio quiet and radio loud active galactic nuclei, tidal disruption events, and gamma-ray bursts. eXTP will be excellently suited to study one common aspect of these objects: their often transient nature. Developed by an international Consortium led by the Institute of High Energy Physics of the Chinese Academy of Science, the eXTP mission is expected to be launched in the mid 2020s.Jean J.M.in 't Zand Enrico Bozzo JinLu Qu Xiang-Dong Li Lorenzo Amati Yang Chen Immacolata Donnarumma Victor Doroshenko Stephen A.Drake Margarita Hernanz Peter A.Jenke Thomas J.Maccarone Simin Mahmoodifar Domitilla de Martino Alessandra De Rosa Elena M.Rossi Antonia Rowlinson Gloria Sala Giulia Stratta Thomas M.Tauris Joern Wilms XueFeng Wu Ping Zhou Iván Agudo Diego Altamirano Jean-Luc Atteia Nils A.andersson M.Cristina Baglio David R.Ballantyne Altan Baykal Ehud Behar Tomaso Belloni Sudip Bhattacharyya Stefano Bianchi Anna Bilous Pere Blay Joao Braga Sφren Brandt Edward F.Brown Niccolo Bucciantini Luciano Burderi Edward M.Cackett Riccardo Campana Sergio Campana Piergiorgio Casella Yuri Cavecchi Frank Chambers Liang Chen Yu-Peng Chen Jér?me Chenevez Maria Chernyakova ChiChuan Jin Riccardo Ciolfi Elisa Costantini Andrew Cumming Antonino D'Aì Zi-Gao Dai Filippo D'Ammando Massimiliano De Pasquale Nathalie Degenaar Melania Del Santo Valerio D'Elia Tiziana Di Salvo Gerry Doyle Maurizio Falanga XiLong Fan Robert D.Ferdman Marco Feroci Federico Fraschetti Duncan K.Galloway Angelo F.Gambino Poshak Gandhi MingYu Ge Bruce Gendre Ramandeep Gill Diego G?tz Christian Gouiffès Paola Grandi Jonathan Granot Manuel Güdel Alexander Heger Craig O.Heinke Jeroen Homan Rosario Iaria Kazushi Iwasawa Luca Izzo Long Ji Peter G.Jonker Jordi José Jelle S.Kaastra Emrah Kalemci Oleg Kargaltsev Nobuyuki Kawai Laurens Keek Stefanie Komossa Ingo Kreykenbohm Lucien Kuiper Devaky Kunneriath Gang Li En-Wei Liang Manuel Linares Francesco Longo FangJun Lu Alexander A.Lutovinov Denys Malyshev Julien Malzac Antonios Manousakis Ian McHardy Missagh Mehdipour YunPeng Men Mariano Méndez Roberto P.Mignani Romana Mikusincova M.Coleman Miller Giovanni Miniutti Christian Motch Joonas Nättilä Emanuele Nardini Torsten Neubert Paul T.O'Brien Mauro Orlandini Julian P.Osborne Luigi Pacciani Stéphane Paltani Maurizio Paolillo Iossif E.Papadakis Biswajit Paul Alberto Pellizzoni Uria Peretz Miguel A.Pérez Torres Emanuele Perinati Chanda Prescod-Weinstein Pablo Reig Alessandro Riggio Jerome Rodriguez Pablo Rodríguez-Gil Patrizia Romano Agata Rózańska Takanori Sakamoto Tuomo Salmi Ruben Salvaterra andrea Sanna andrea Santangelo Tuomas Savolainen Stéphane Schanne Hendrik Schatz LiJing Shao andy Shearer Steven N.Shore Ben W.Stappers Tod E.Strohmayer Valery F.Suleimanov Jirí Svoboda F.-K.Thielemann Francesco Tombesi Diego F.Torres Eleonora Torresi Sara Turriziani andrea Vacchi Stefano Vercellone Jacco Vink Jian-Min Wang JunFeng Wang Anna L.Watts ShanShan Weng Nevin N.Weinberg Peter J.Wheatley Rudy Wijnands Tyrone E.Woods Stan E.Woosley ShaoLin Xiong YuPeng Xu Zhen Yan George Younes WenFei Yu Feng Yuan Luca Zampieri Silvia Zane andrzej A.Zdziarski Shuang-Nan Zhang Shu Zhang Shuo Zhang Xiao Zhang Michael Zingale 2019Science China(Physics,Mechanics & Astronomy)2019,62,2:0
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