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11篇 您的检索式:作者名="Maxine L"
    题名 作者 年代 出处 被引量
1Abuse liability assessment of tobacco products including potential reduced exposure products显示文摘Lawrence P Maxine L Jack E 2009Cancer Epidemiol Biomarkers Prev2009,18,:1
2The promyelocytic leukemia protein does not mediate foamy virus latency in vitro显示文摘Christopher D Meiering Maxine L Linial 2003Journal of Virology2003,2,:1
3Telemedicine: explorations in the use of tele- communications in health care 显示文摘Maxine L R 1977Social Science &Medicine1977,11,4:1
4Networking and innovation: a systematic review of the evidence 显示文摘Pittaway L Maxine Robertson Kamal Denyer Neely 2004International Journal of Management Reviews2004,56,34:1
5Evaluating plan implementation: a con- formance based methodology显示文摘Lucie L Maxine D 2007Journal of the American Plan- ning Association2007,70,4:1
6Contingent reinforcement for reduced breath carbon monoxide levels: target-specific effects on cigarette smoking 显示文摘Maxine Stitzer L George Bigelow E 1985Addictive Behaviors1985,10,4:1
7Networking and innovation: A systematic review of the evidence 显示文摘Pittaway L Maxine R Munir K 2004International Journal of Management Reviews2004,56,34:1
8Evaluating the quality of self;reports of hypertension and diabetes 显示文摘Noreen G I-Fen L Maxine W 2003J Clin Epidemiol2003,56,:1
9Networking and innovation: a systematic review of the evidence 显示文摘Pittaway L Maxine Robertson Kama etal 2004International Journal of Management Reviews2004,56,34:1
10Cediranib combined with carboplatin and paclitaxel in patients with metastatic or recurrent cervical cancer (CIRCCa): a randomised, double-blind, placebo-controlled phase 2 trial显示文摘R Paul Symonds Charlie Gourley Susan Davidson Karen Carty Elaine McCartney Debbie Rai Susana Banerjee David Jackson Rosemary Lord Mary McCormack Emma Hudson Nicholas Reed Maxine Flubacher Petra Jankowska Melanie Powell Caroline Dive Catharine M L West Jam 2015The Lancet Oncology2015,,15:1
11Laser sources for microwave to millimeter-wave applications [Invited]显示文摘We present several laser sources dedicated to advanced microwave photonic applications.A quantum-dash mode-locked laser delivering a high-power,ultra-stable pulse train is first described.We measure a linewidth below 300 kHz at a 4.3 GHz repetition rate for an output power above 300 mW and a pulse duration of 1.1 ps after compression,making this source ideal for microwave signal sampling applications.A widely tunable(5–110 GHz),monolithic millimeter-wave transceiver based on the integration of two semiconductor distributed feedback lasers,four amplifiers,and two high-speed uni-traveling carrier photodiodes is then presented,together with its application to the wireless transmission of data at 200 Mb∕s.A frequency-agile laser source dedicated to microwave signal processing is then described.It delivers arbitrary frequency sweeps over 20 GHz with high precision and high speed(above 400 GHz∕ms).Finally,we report on a low-noise(below 1 kHz linewidth),solid-state,dual-frequency laser source.It allows independent tuning of the two frequencies in the perspective of the implementation of a tunable optoelectronic oscillator based on a high-Q optical resonator.Gaël Kervella Jeremy Maxin Mickael Faugeron Perrine Berger Hadrien Lanctuit Gregoire Pillet Loïc Morvan Frédéric van Dijk Daniel Dolfi 2014Photonics Research2014,2,4:0
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