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1.
PPLN晶体差频中红外激光系统调谐特性研究   总被引:3,自引:0,他引:3  
室温工作的连续可调谐相干光源在痕量气体检测技术中有着重要应用价值,光学非线性变换是获得室温运转中红外相干光源的有效途径,是对传统激光技术的有效补充.研究了基于准相位匹配原理的差频激光系统的温度和信号光波长调谐特性,从准相位匹配技术的一般位相匹配关系出发,推导了PPLN晶体差频准相位匹配的温度和信号光波长匹配带宽解析表达式;建立了基于PPLN晶体准相位匹配原理的宽调谐差频中红外激光系统,实现了3.2~3.7üm中红外相干光输出,最大输出功率约为1üW;对系统温度和信号光波长调谐特性进行实验研究,并与理论结果进行了比较和分析.  相似文献   

2.
正弦相位调制的频域光学相干层析成像   总被引:1,自引:1,他引:1  
提出一种基于正弦相位调制的频域光学相干层析成像,利用正弦相位调制干涉术探测复频域干涉条纹的实部和虚部,重建复频域干涉条纹。对该复频域干涉条纹作逆傅里叶变换后,消除了频域光学相干层析成像中存在的复共轭镜像以及直流背景和自相干噪声。对玻璃片样品进行了层析成像实验。实验结果表明,采用正弦相位调制的频域光学相干层析成像,将可利用的成像深度范围扩大到原来的2倍,实现了全深度探测的频域光学相干层析成像。  相似文献   

3.
光学相干层析成像色散补偿研究   总被引:2,自引:2,他引:0  
针对通过增加光源谱宽度来提高光学相干层析成像系统分辨率时样品色散特性的限制作用,分析了色散与光学相干层析成像系统纵向光程分辨率的约束关系.根据物质色散特性,采用数值变换方法对光学相干层析成像相干成像信号进行了色散补偿.实验使用了中心波长1550nm自激发辐射光源和光纤迈克尓逊干涉结构,对水和光学快速扫描延迟线引入的二阶和三阶色散进行了数值补偿并通过相位修正因子来改善补偿效果.确定了一种普适的、快速的数值色散补偿方法.在对水中盖玻片和生物组织和的光学相干层析成像图像的色散补偿实验中取得了良好的效果,证明了方法的可行性.  相似文献   

4.
针对通过增加光源谱宽度来提高光学相干层析成像系统分辨率时样品色散特性的限制作用,分析了色散与光学相干层析成像系统纵向光程分辨率的约束关系.根据物质色散特性,采用数值变换方法对光学相干层析成像相干成像信号进行了色散补偿.实验使用了中心波长1 550 nm 自激发辐射光源和光纤迈克尓逊干涉结构,对水和光学快速扫描延迟线引入的二阶和三阶色散进行了数值补偿并通过相位修正因子来改善补偿效果.确定了一种普适的、快速的数值色散补偿方法.在对水中盖玻片和生物组织和的光学相干层析成像图像的色散补偿实验中取得了良好的效果,证明了方法的可行性.  相似文献   

5.
本文给出在准单色光照明下,部分相干和非相干成像光学传递函数新的计算方法。从基尔霍夫衍射积分出发,引进准波前像差,并在菲涅尔近似下给出点像振幅分布,对照明光源不作匹配限制,计算公式简明,准相干度( 不同于传统的相干度) 容易计算。利用分片多项式插值计算准波前像差,从而可实现变形成像OTF 的计算  相似文献   

6.
基于相位一致性和Hough变换的多源图像配准方法   总被引:2,自引:0,他引:2       下载免费PDF全文
由于红外图像与可见光图像对比度不同,常用基于梯度幅值的特征匹配方法难以正确配准。在分析红外图像与可见光图像成像机制的基础上,提出了一种结合相位一致性边缘检测与Hough变换的多源图像配准新方法。该算法首先采用高通滤波和平台直方图均衡方法对红外图像进行预处理以提高红外图像的对比度,再利用具有图像对比度不变性的相位一致性边缘检测法提取两幅图像的边缘,结合Hough变换选取图像空间中最长的线作为特征,采用改进相位相关法作为相似性度量,在对数极坐标域下计算出两幅图像的几何变形参数。仿真实验结果表明,该方法能够以较高查准率实现红外与可见光图像自动配准,并具有较强的鲁棒性。  相似文献   

7.
多帧叠加平均处理是去除扫频光学相干层析系统散斑噪声、获得较为清晰结构信息的有效方法,但眼睛的震颤、漂移、微眼跳等生理特性和系统光路特性会使图像之间存在错位,导致叠加效果不佳、结构稳定性差,为此本文提出一种基于灰度分布信息和目标几何信息相结合的配准算法。该方法根据图像平均灰度分布提取包含目标信息的感兴趣区域,通过相位相关算法和基于分段拟合的灰度投影算法的双重作用校正图像的平移变换;通过拟合视网膜上边界作为特征点迭代确定最佳旋转参数,并再次重新估计平移参数,实现图像的刚性配准;最后通过轴向扫描一对一映射法以能量函数为约束条件实现图像的非刚性配准。对活体兔眼进行实验,结果表明,本文算法配准后的叠加图像边界清晰,结构信息增强,信噪比和对比度平均有效提高一倍多。本算法适用于强噪声视网膜B-Scans图像的配准,能满足多种类型OCT系统的叠加成像需要,具有较高的鲁棒性和图像配准精度。  相似文献   

8.
超分辨率活体人眼视网膜共焦扫描成像系统   总被引:1,自引:0,他引:1       下载免费PDF全文
卢婧  李昊  何毅  史国华  张雨东 《物理学报》2011,60(3):34207-034207
活体人眼共焦扫描成像系统的分辨率受到人眼像差、数值孔径和探测针孔尺度的限制,本文设计了一套超分辨活体人眼视网膜共焦扫描系统,采用自适应光学技术探测并校正人眼像差,结合光学超分辨技术提高系统分辨率,补偿有限尺度针孔对分辨率的影响,并获得活体人眼的实时、高分辨图像. 关键词: 超分辨 共焦扫描光学显微术 眼科光学 自适应光学  相似文献   

9.
为进一步提高超声全聚焦的成像质量,提出一种基于相位环形统计矢量的全聚焦成像方法。首先,在全聚焦实施过程中提取全矩阵数据中信号的相位信息。然后,将同一聚焦像素点的相位视作环形分布的统计样本,通过饱和状态加权统计构建由幅值和相位分布共同决定的相位环形统计矢量。最后,将相位环形统计矢量的模等效为全聚焦图像的幅值。结果表明,该成像算法既能够通过放大相位分布对信号幅值的贡献提高信噪比,又能够通过减小声束宽度有效提高横向分辨率。相比于相位相干加权算法SCF和CCF,基于相位环形统计矢量的算法对相位偏差的容忍度更高。   相似文献   

10.
基于互信息的干涉成像采样系统性能分析   总被引:3,自引:1,他引:2  
徐建程  许乔  柴立群 《光子学报》2008,37(8):1608-1611
为了优化干涉采样成像系统的设计,采用端到端的互信息量评价系统的性能.建立了基于互信息的干涉采样成像系统数学模型.利用该模型得到了互信息量最大时光学成像系统和CCD的匹配条件:相干成像光学系统的截止频率等于CCD的Nyquist频率.分析了物体频谱分布、噪声、光源相干性和光学成像系统像差对互信息量的影响.结果表明,它们不影响光学成像系统和CCD的匹配条件.  相似文献   

11.
An L  Wang RK 《Optics letters》2011,36(6):831-833
This Letter presents a useful method that combines the full range complex Fourier domain optical coherence tomography (OCT) with the ultrahigh sensitive optical microangiography (OMAG) to achieve full range complex imaging of blood flow within microcirculatory tissue beds in vivo. We propose to use the fast scanning axis to realize the full range complex imaging, while using the slow axis to achieve OMAG imaging of blood flow. We demonstrate the proposed method by using a high speed 1310?nm OCT/OMAG system running at 92?kHz line scan rate to image the flow phantoms in vitro, and the blood flows in tissue beds in vivo.  相似文献   

12.
Tao YK  Zhao M  Izatt JA 《Optics letters》2007,32(20):2918-2920
We demonstrate high-speed complex conjugate artifact (CCA) resolved imaging of human retina in vivo using spectral domain optical coherence tomography. This technique utilizes sinusoidal reference mirror modulation to implement high-speed integrating buckets acquisition and a quadrature projection reconstruction algorithm in postprocessing. This method is illustrated experimentally using sets of four integrating bucket phase scans, acquired at 52 kHz, for DC suppression of 73 dB and complex conjugate suppression of 35 dB. Densely sampled (3000 A-scans/image, acquired at 4.3 images/s) full-depth in vivo images of optic nerve head show CCA suppression for most image reflections to the noise floor.  相似文献   

13.
We have developed a novel phase-resolved optical coherence tomography (OCT) and optical Doppler tomography (ODT) system that uses phase information derived from a Hilbert transformation to image blood flow in human skin with fast scanning speed and high velocity sensitivity. Using the phase change between sequential scans to construct flow-velocity imaging, this technique decouples spatial resolution and velocity sensitivity in flow images and increases imaging speed by more than 2 orders of magnitude without compromising spatial resolution or velocity sensitivity. The minimum flow velocity that can be detected with an axial-line scanning speed of 400 Hz and an average phase change over eight sequential scans is as low as 10 microm/s, while a spatial resolution of 10 microm is maintained. Using this technique, we present what are to our knowledge the first phase-resolved OCT/ODT images of blood flow in human skin.  相似文献   

14.
We describe a novel optical system for bidirectional color Doppler imaging of flow in biological tissues with micrometer-scale resolution and demonstrate its use for in vivo imaging of blood flow in an animal model. Our technique, color Doppler optical coherence tomography (CDOCT), performs spatially localized optical Doppler velocimetry by use of scanning low-coherence interferometry. CDOCT is an extension of optical coherence tomography (OCT), employing coherent signal-acquisition electronics and joint time-frequency analysis algorithms to perform flow imaging simultaneous with conventional OCT imaging. Cross-sectional maps of blood flow velocity with <50-microm spatial resolution and <0.6-mm/s velocity precision were obtained through intact skin in living hamster subdermal tissue. This technology has several potential medical applications.  相似文献   

15.
Zhao Y  Chen Z  Ding Z  Ren H  Nelson JS 《Optics letters》2002,27(2):98-100
We have developed a novel real-time phase-resolved functional optical coherence tomography system that uses optical Hilbert transformation. When we use a resonant scanner in the reference arm of the interferometer, with an axial scanning speed of 4 kHz, the frame rate of both structural and Doppler blood-flow imaging with a size of 100 by 100 pixels is 10 Hz. The system has high sensitivity and a larger dynamic range for measuring the Doppler frequency shift that is due to moving red blood cells. Real-time images of in vivo blood flow in human skin obtained with this interferometer are presented.  相似文献   

16.
光学相干层析多普勒成像功能拓展研究   总被引:8,自引:0,他引:8  
光学多普勒成像(Optical Doppler tomography,ODT)是一种结合了光学相干层析成像技术(Opticalcoherence tomography,OCT)和多普勒流速仪的非侵入、非接触的成像技术,能够实现对高散介质组织内部的血管分布和血液流速的探测。阐述了基于数字希尔伯特变换的相位分离多普勒光学相干层析成像技术的工作原理,并且通过对玻璃毛细管和生物芯片微通道管中聚苯乙烯溶液流速的实验测量,准确测量管内微粒缓慢移动时的多普勒频移量,获得了玻璃管内和生物芯片微通道管中流速分布曲线,证实了所提方法的可行性。获取的多普勒图像具有较高的空间分辨力和速度分辨力,在未来的临床应用中有潜在的应用价值。  相似文献   

17.
Low‐coherence optical microscopy or optical coherence microscopy uses light with short coherence length. The well‐known case is: “white‐light interferometry”, which became recently more known as: “optical coherence tomography”. However, when lenses and microscope objectives are used to create interferometric images, in what is known classically as “interference microscopy” or today as “full‐field optical coherence tomography” the spatial coherence starts to play a critical role. In this article the coherence effects in low‐coherence optical microscopy are reviewed. As this technology is becoming increasingly publicized due to its importance in three‐dimensional imaging, particularly of scattering biological media and optical metrology, the understanding of the fundamental physics behind it is essential. The interplay between longitudinal spatial coherence and temporal coherence and the effects associated with them are discussed in detail particularly when high numerical apertures are used. An important conclusion of this study is that a high‐contrast, high‐resolution system for imaging of multilayered samples is the one that uses narrowband illumination and high‐NA objectives with an index‐matching fluid. Such a system, when combined with frequency‐domain operation, can reveal nearly real‐time three‐dimensional images, and is thus competitive with confocal microscopy.  相似文献   

18.
A multilayered scattering structure is proposed and demonstrated as a reference mirror for use with full field optical coherence tomography (FF-OCT) to increase contrast of tissue imaging and provide compensation. Common-path FF-OCT systems were built demonstrating high resolution cell profiling. The use of this mirror with frequency domain FF-OCT allows 3D images in real time.  相似文献   

19.
Self-referenced Doppler optical coherence tomography   总被引:1,自引:0,他引:1  
Yazdanfar S  Izatt JA 《Optics letters》2002,27(23):2085-2087
Doppler optical coherence tomography (DOCT) allows simultaneous micrometer-scale resolution cross-sectional imaging of tissue structure and blood flow. We demonstrate a fiber-optic polarization-diversity-based differential phase contrast DOCT system as a method to perform self-referenced velocimetry in highly scattering media. Using this strategy, we reduced common-mode interferometer noise to <1 Hz and improved Doppler estimates in a scattering flow phantom by a factor of 5.  相似文献   

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