AIM: To investigate the special Fourier transform infraredspectroscopy (FT-IR) spectra in normal and cancerous tissuesof esophagus.METHODS: Twenty-seven pairs of normal and canceroustissues of esophagus were studied b...AIM: To investigate the special Fourier transform infraredspectroscopy (FT-IR) spectra in normal and cancerous tissuesof esophagus.METHODS: Twenty-seven pairs of normal and canceroustissues of esophagus were studied by using FT-IR and thespecial spectra characteristics were analyzed in differenttissues.RESULTS: Different spectra were found in normal andcancerous tissues. The peak at 1 550/cm was weak andwide in cancerous tissues but strong and high in normaltissues.The ratio of I1 647/I1 550 was 2.0 in normal tissuesand 2.36 in cancerous tissues (P<0.05). The ratio of Ⅰ1 550/I 1 080 was 4.5 in normal tissues and 3.4 in canceroustissues (P<0.01). The peak at 1453/cm was higher than at1 402/cm in normal tissue and lower than at 1 402/cm incancerous tissues.CONCLUSION: The results indicate that F-FIR may be used in clinical diagnosis.展开更多
传统的超分辨成像系统易受外界环境影响,抗噪效果差,输出的超分辨图像清晰度较低,基于此设计基于空域变换的超分辨成像系统,系统先将激光集中在孔径光栏上射出,通过聚光镜汇聚激光,根据分光镜和辅助镜将激光聚焦在显微镜焦平面上,依照...传统的超分辨成像系统易受外界环境影响,抗噪效果差,输出的超分辨图像清晰度较低,基于此设计基于空域变换的超分辨成像系统,系统先将激光集中在孔径光栏上射出,通过聚光镜汇聚激光,根据分光镜和辅助镜将激光聚焦在显微镜焦平面上,依照物镜将激光束转变成平型光,使平行光能够均匀照射测量样品上,采用显微镜和辅助物镜处理从样品表面反射的带有样品信息的激光,最后通过分光镜反射带有信息的激光,反射光束在CCD上显示成像,核心处理器是FPGAWie的图像采集模块,采集CCD传输的视频图像后,通过通用并行接口将采集的视频图像数据传输到图像处理模块,该模块通过空域变换方法处理图像,获取超分辨图像,最终传输到计算机上进行显示。经过实验分析发现,该系统图像稳定性和图像清晰度平均值分别是98.538%和99.19%,干扰信噪比为16 d B时,该系统成像时间最短为6.57 ms,说明该系统成像清晰度高、抗干扰性能优。展开更多
基金the National Natural Science Foundation of China, No.39730160
文摘AIM: To investigate the special Fourier transform infraredspectroscopy (FT-IR) spectra in normal and cancerous tissuesof esophagus.METHODS: Twenty-seven pairs of normal and canceroustissues of esophagus were studied by using FT-IR and thespecial spectra characteristics were analyzed in differenttissues.RESULTS: Different spectra were found in normal andcancerous tissues. The peak at 1 550/cm was weak andwide in cancerous tissues but strong and high in normaltissues.The ratio of I1 647/I1 550 was 2.0 in normal tissuesand 2.36 in cancerous tissues (P<0.05). The ratio of Ⅰ1 550/I 1 080 was 4.5 in normal tissues and 3.4 in canceroustissues (P<0.01). The peak at 1453/cm was higher than at1 402/cm in normal tissue and lower than at 1 402/cm incancerous tissues.CONCLUSION: The results indicate that F-FIR may be used in clinical diagnosis.
文摘传统的超分辨成像系统易受外界环境影响,抗噪效果差,输出的超分辨图像清晰度较低,基于此设计基于空域变换的超分辨成像系统,系统先将激光集中在孔径光栏上射出,通过聚光镜汇聚激光,根据分光镜和辅助镜将激光聚焦在显微镜焦平面上,依照物镜将激光束转变成平型光,使平行光能够均匀照射测量样品上,采用显微镜和辅助物镜处理从样品表面反射的带有样品信息的激光,最后通过分光镜反射带有信息的激光,反射光束在CCD上显示成像,核心处理器是FPGAWie的图像采集模块,采集CCD传输的视频图像后,通过通用并行接口将采集的视频图像数据传输到图像处理模块,该模块通过空域变换方法处理图像,获取超分辨图像,最终传输到计算机上进行显示。经过实验分析发现,该系统图像稳定性和图像清晰度平均值分别是98.538%和99.19%,干扰信噪比为16 d B时,该系统成像时间最短为6.57 ms,说明该系统成像清晰度高、抗干扰性能优。