为了有效抑制 H.264/AVC压缩视频流的传输错误扩散,提出一种基于率失真优化的 H.264参考帧选择算法。该算法针对 H .264/AVC中的多种预测模式,在像素级准确估计了差错环境下的视频传输失真,并将该失真模型与率失真优化准则结合,...为了有效抑制 H.264/AVC压缩视频流的传输错误扩散,提出一种基于率失真优化的 H.264参考帧选择算法。该算法针对 H .264/AVC中的多种预测模式,在像素级准确估计了差错环境下的视频传输失真,并将该失真模型与率失真优化准则结合,在率失真框架内选择最合适的参考帧,使解码段的失真度达到最小。实验结果表明,改进算法相比传统的预测编码方法PSNR值大约提高了1~2dB,能有效改善 H.264视频传输的抗差错性能。展开更多
AIM: To investigate cap morphology after small-incision lenticule extraction (SMILE) and its effects on intraocular scattering. METHODS: Sixty-five eyes of 33 patients undergoing SMILE were enrolled. In addition ...AIM: To investigate cap morphology after small-incision lenticule extraction (SMILE) and its effects on intraocular scattering. METHODS: Sixty-five eyes of 33 patients undergoing SMILE were enrolled. In addition to regular evaluation, Fourier-domain optical coherence tomography was used to investigate cap thickness at ld, lwk, 1 and 3mo postoperatively. The optical quality including modulation transfer function cutoff frequency, Strehl ratio, Optical Quality Analysis System (OQAS) values, and objective scattering index (OSI), were evaluated using OQASTM. RESULTS: Cap thickness decreased from ld to lwk (P〈0.001), but remained higher than intended thickness of 120 μm after 3mo (P〈0.001). Cap thickness in central area was thinner than that of in the paracentral and peripheral areas (P〈0.0001). Total number of microdistortions decreased from ld to 3mo (P〈0.0001). Pearson analysis revealed a weak correlation between OSI and standard deviation of cap thickness at ld and lmo, as well as between range of cap thickness and OSI at 1mo. No correlation was found between microdistortion and OSI, but a negative correlation existed between microdistortion and range at ld and lmoafter surgery. CONCLUSION: The corneal cap tends to be more accurate and regular with time lapse. Better cap morphology tends to contribute less intraocular scattering in the eyes undergoing SMILE.展开更多
文摘AIM: To investigate cap morphology after small-incision lenticule extraction (SMILE) and its effects on intraocular scattering. METHODS: Sixty-five eyes of 33 patients undergoing SMILE were enrolled. In addition to regular evaluation, Fourier-domain optical coherence tomography was used to investigate cap thickness at ld, lwk, 1 and 3mo postoperatively. The optical quality including modulation transfer function cutoff frequency, Strehl ratio, Optical Quality Analysis System (OQAS) values, and objective scattering index (OSI), were evaluated using OQASTM. RESULTS: Cap thickness decreased from ld to lwk (P〈0.001), but remained higher than intended thickness of 120 μm after 3mo (P〈0.001). Cap thickness in central area was thinner than that of in the paracentral and peripheral areas (P〈0.0001). Total number of microdistortions decreased from ld to 3mo (P〈0.0001). Pearson analysis revealed a weak correlation between OSI and standard deviation of cap thickness at ld and lmo, as well as between range of cap thickness and OSI at 1mo. No correlation was found between microdistortion and OSI, but a negative correlation existed between microdistortion and range at ld and lmoafter surgery. CONCLUSION: The corneal cap tends to be more accurate and regular with time lapse. Better cap morphology tends to contribute less intraocular scattering in the eyes undergoing SMILE.