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Titlebook: Microscopic Imaging Through Turbid Media; Monte Carlo Modeling Min Gu,Xiaosong Gan,Xiaoyuan Deng Book 2015 Springer-Verlag Berlin Heidelber

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Min Gu,Xiaosong Gan,Xiaoyuan Deng performing treatment plans for endodontically treated teeth. As some of the existing literature is not clinically relevant, one must understand the limitations of published studies as they apply to clinical dentistry..There are known clinical complications one could anticipate when attempting to re
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Min Gu,Xiaosong Gan,Xiaoyuan Deng forest area would remain untouched. cal and economical consequences. The problem The population explosion takes care of that argu­ is of such magnitude that it can only be com­ ment. The two main problem areas before us are pared to warfare. The destruction of tropical first the wise utilization of
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Min Gu,Xiaosong Gan,Xiaoyuan Dengils. Spatial and temporal patterns of secondary forest species regeneration were studied in permanent quadrats in . plantation plots and control areas at a degraded coastal pasture in Puerto Rico. Approximately 6.7 years after plantation establishment, a total of 22 tree and shrub species were found
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,Monte Carlo Simulation for an Optical Microscope,on . summarizes the basic formula in a conventional Monte Carlo simulation process. The implementation of this method in reflection and transmission optical microscopes is given in Sect. .. The effect of the polarization states and pulsed illumination of a beam are described in Sects. . and .. Secti
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Effective Point Spread Function,. The requiring of computational time increases significantly when images of complicated objects embedded in a turbid medium are modeled. To address this problem, the concept of the effective point spread function (EPSF) has been introduced in this chapter for imaging through turbid media [.]. Secti
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