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5篇 您的检索式:作者名="Kenneth KY"
    题名 作者 年代 出处 被引量
1Perioperative and late outcomes of laparoscopic fundoplication for neurologically impaired children with gastro-esophageal reflux disease显示文摘WONG Kenneth KY LIU Xue-lai 2012Chinese Medical Journal2012,,21:2
2Adiponectin-in- duced endothelial nitric oxide synthase activation and ni- tric oxide production are mediated by APPL1 in endothe- lial cells显示文摘Kenneth KY Cheng KS Lain L et al 2007Diabetes2007,56,5:1
3The first report of a single-port laparoscopic nephrectomy in a child 显示文摘KENNETH KY WONG PATRICK HY CHUNG LAWRENCE CL LAN 2010Hong Kong Med J2010,16,2:1
4Wide-band tuning of the gain spectra of one-pump fiber optical parametric amplifiers显示文摘Michel EM Kenneth KY Leonid G 2004IEEE J Quantum E lectron2004,10,5:1
5Ultrafast laser-scanning time-stretch imaging at visible wavelengths显示文摘Optical time-stretch imaging enables the continuous capture of non-repetitive events in real time at a line-scan rate of tens of MHz—a distinct advantage for the ultrafast dynamics monitoring and high-throughput screening that are widely needed in biological microscopy.However,its potential is limited by the technical challenge of achieving significant pulse stretching(that is,high temporal dispersion)and low optical loss,which are the critical factors influencing imaging quality,in the visible spectrum demanded in many of these applications.We present a new pulse-stretching technique,termed free-space angular-chirpenhanced delay(FACED),with three distinguishing features absent in the prevailing dispersive-fiber-based implementations:(1)it generates substantial,reconfigurable temporal dispersion in free space(41 ns nm^(−1))with low intrinsic loss(o6 dB)at visible wavelengths;(2)its wavelength-invariant pulse-stretching operation introduces a new paradigm in time-stretch imaging,which can now be implemented both with and without spectral encoding;and(3)pulse stretching in FACED inherently provides an ultrafast all-optical laser-beam scanning mechanism at a line-scan rate of tens of MHz.Using FACED,we demonstrate not only ultrafast laser-scanning time-stretch imaging with superior bright-field image quality compared with previous work but also,for the first time,MHz fluorescence and colorized time-stretch microscopy.Our results show that this technique could enable a wider scope of applications in high-speed and high-throughput biological microscopy that were once out of reach.Jiang-Lai Wu Yi-Qing Xu Jing-Jiang Xu Xiao-Ming Wei Antony CS Chan Anson HL Tang Andy KS Lau Bob MF Chung Ho Cheung Shum Edmund Y Lam Kenneth KY Wong Kevin K Tsia 2016Light(Science & Applications)2016,5,1:0
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