期刊文献+

基于细菌视紫红质膜的用于滤除亮背景光学滤波器的特性分析 被引量:1

CHARACTERS FOR OPTICAL FILTER OF REMOVING BRIGHT-BACKGROUND BASED ON BACTERIORHODOPSIN FILM
下载PDF
导出
摘要 利用细菌视紫红质膜的互补抑制调制透射特性建立了新型光学滤波器,可用于光学图像非相干亮背景的处理.我们演示了这种新型滤波器并对它的特性进行了理论分析.计算结果表明,处理后的图像质量 (对比度,透射光强及其空间分布)受膜参数(浓度,M态寿命)和偏置光强的影响.透射光强及其空间分布的弯曲度随膜浓度的变大而变小,对比度先升高至最大值后降低至 0.M态寿命变大时,透射光强及其空间分布的弯曲度都变大,对比度增大至一稳定值.透射光强随偏置光强的增大而减小,但其空间分布的弯曲度保持不变,对比度可以增大至 1.当膜浓度,M态寿命和偏置光强过大时,处理后的图像将发生畸变. Special property of. complementary suppression modulated transmission (CSMT) of bacteriorhodopsin (bR) film was used to establish a new kind of optical filter,which can be used to remove incoherent bright-background in optical image. This new kind of optical filter was demonstrated and its behavior was analyzed theoretically. The calculated results showed that the quality (the contrast the transmitted intensity and the space distribution) of the processed image was affected by the parameters (concentration and lifetime of M state) of bR film and the intensity of the bias light. With the increasing of bR film concentration, the transmitted intensity and the curvature degree of the space distribution of the transmitted intensity decreased, and the contrast increased to the maximum and then decreased to zero. By prolonging the lifetime of M state, the transmitted intensity, the curvature degree of the space distribution of the transmitted intensity increased and the contrast increased to the stable value. Accompanying the increase of the intensity of the bias light, the transmitted intensity decreased, the space distribution was not changed, and the contrast can be increased to 1. But when the concentration of bR film, the lifetime of M state and the intensity of the bias light were too large, the processed image might be distorted.
出处 《红外与毫米波学报》 SCIE EI CAS CSCD 北大核心 2005年第1期56-60,共5页 Journal of Infrared and Millimeter Waves
基金 国家自然科学基金(60278007) 天津自然科学基金(033601311)
  • 相关文献

参考文献1

二级参考文献10

  • 1Oesterhelt D and Stoeckenius W 1971 Nature 233 149.
  • 2Birge R R 1990 Ann. Rev. Phys. Chem. 41 683.
  • 3Huang Y H, Zhao Y Y, Yang O et al 2003 Chin. Phys.Lett. 20 959.
  • 4Chen Z, Lewis A, Takei H and Nabenzahl I 1991 Appl. Opt.30 5188.
  • 5Thoma R, Hampp N,Brauchle C and Oesterhelt D 1991 Opt. Lett. 16 651.
  • 6Gu L Q, Zhang C P and Zhang G Y 1996 Opt. Commun.131 25.
  • 7Song Q W, Zhang C P and Birge R R 1993 Opt. Lett. 181373.
  • 8Zheng Y, Yao B L, Menke Net al 2003 Chin. Phys. Lett.20 671.
  • 9Becher B and Ebrey T G 1977 Biophys. J. 17 185.
  • 10Gross R B, Izgi K C and Birge R R 1992 SPIE 1662 186.

同被引文献22

引证文献1

相关作者

内容加载中请稍等...

相关机构

内容加载中请稍等...

相关主题

内容加载中请稍等...

浏览历史

内容加载中请稍等...
;
使用帮助 返回顶部