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201.
Laure Fauch Ervin Nippolainen Alexei A. Kamshilin Markku Hauta-Kasari Jussi Parkkinen Timo Jääskeläinen 《Optical Review》2007,14(4):243-245
Accurate color classification by vector subspace method was implemented by simple optical system including computer controlled
set of light-emitting diodes and a photo-receiver operating in the integration regime. The technique is capable for fast and
precise classification of color distribution within two-dimensional frame with high spatial resolution. The feasibility of
the proposed system is shown by a test of four metameric colors, which were correctly distinguished. 相似文献
202.
The precedence effect (PE) describes the ability to localize a direct, leading sound correctly when its delayed copy (lag) is present, though not separately audible. The relative contribution of binaural cues in the temporal fine structure (TFS) of lead-lag signals was compared to that of interaural level differences (ILDs) and interaural time differences (ITDs) carried in the envelope. In a localization dominance paradigm participants indicated the spatial location of lead-lag stimuli processed with a binaural noise-band vocoder whose noise carriers introduced random TFS. The PE appeared for noise bursts of 10 ms duration, indicating dominance of envelope information. However, for three test words the PE often failed even at short lead-lag delays, producing two images, one toward the lead and one toward the lag. When interaural correlation in the carrier was increased, the images appeared more centered, but often remained split. Although previous studies suggest dominance of TFS cues, no image is lateralized in accord with the ITD in the TFS. An interpretation in the context of auditory scene analysis is proposed: By replacing the TFS with that of noise the auditory system loses the ability to fuse lead and lag into one object, and thus to show the PE. 相似文献
203.
204.
Rodolfo Teixeira de Souza Ervin Kaminski Lenzi Luiz Roberto Evangelista 《Liquid crystals》2013,40(12):1559-1568
The influence of surface viscosity and anchoring energy on the reorientation process of a nematic liquid crystal cell is theoretically investigated. The cell is a slab of thickness, d, whose limiting surfaces are characterised by different anchoring strengths and present easy directions parallel to the bounding surfaces, changing with time due to some external action. The exact space-time profile of the director angle is obtained by means of integral transform techniques and a Green function approach. From this formalism, the time dependence of the optical path difference is exactly determined and its behaviour is analysed in connection with the presence of surface viscosity and different anchoring energies. The problem is also exactly solved in the presence of a constant electric field. It is shown that the compatibility problem between the time derivative of the director field on the surface and in the bulk can be avoided. 相似文献