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1.
The possibility of measuring a full Doppler flow depth profile in parallel by use of frequency-domain optical coherence tomography is demonstrated. The method is based on a local phase analysis of the backscattered signal and allows for imaging of bidirectional Doppler flow. The Doppler frequency limit is 5 kHz for the presented measurements and is set by half of the frame rate of the CCD detector array. We measured the flow of 0.3-microm microspheres suspended in distilled water at controlled flow rates and in vitro human blood flow through a 200-microm capillary with a real-time color-encoded Doppler tomogram rate of 2-3/s.  相似文献   

2.
刘国忠  周哲海  邱钧  王晓飞  刘桂礼  王瑞康 《物理学报》2013,62(15):158702-158702
频域光学相干层析系统中扫描机构定位精度、 机械抖动及样品移动会造成A扫描信号幅值和相位发生波动, 影响生物组织成像质量. 利用最小灰度差匹配、Lorentzian曲线极值拟合和谱域光程差补偿等方法对A 扫描信号进行幅值配准. 通过对A扫描信号相位分布特征的匹配实现相位差检测与配准. 通过求已配准的A 扫描复信号之差, 消除静态组织对血流成像的影响. 进行了人眼扫描实验, 有效提取了视网膜三维血流图像. 实验结果表明, 提出的幅值及相位配准方法大大减小了系统扫描精度、人眼跳动等因素对生物组织在体成像质量的影响. 快速、精确的相位配准方法也可广泛应用在多普勒OCT、相位显微等与相位分辨有关的光学成像领域. 关键词: 频域光学相干层析 配准 血流成像 相位分布特征  相似文献   

3.
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   

4.
测量侧边抛磨光纤(side polished fiber,SPF)的包层剩余厚度对其应用有重要的指导意义,现今的测量方法均有所不足,现提出一种基于数字全息技术的测量方法。利用单模光纤纤芯折射率比包层折射率高的特点,基于数字全息成像技术,通过角谱传播法对二维全息图进行相位重构,并通过精确最小二乘法解相位包裹,得到侧边抛磨光纤的相位分布图。根据重构的相位分布图,进一步运用相关的边缘提取算法处理得到侧边抛磨光纤包层剩余厚度。实验测量结果与电子扫描电镜(SEM)测量结果相比,测量相对误差小于0.5%。这种测量方法是一种直接测量方法,减小了间接测量法中由于光纤不对称以及SPF轮廓边缘衍射所带来的测量误差,为侧边抛磨光纤包层剩余厚度的无损、在线测量提供了一种新的途径。同时,此方法还可应用于测量其他特种光纤,例如光子晶体光纤、微纳光纤等。  相似文献   

5.
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   

6.
基于空间光调制器的非相干数字全息单次曝光研究   总被引:2,自引:0,他引:2       下载免费PDF全文
菲涅耳非相干相关全息术(Fresnel incoherent correlation holography,FINCH)利用在空间光调制器(spatial light modulator,SLM)上加载双透镜模式对同一物点光分束自相干,并通过改变加载的相位因子得到不同的相移全息图.本系统利用SLM可分区编码调制特性,将FINCH成像中SLM上分三次加载的0°,120°,240°相位双透镜掩模各提取1/3组成一幅复合相移模式加载,并研究了三种相位分布方式对FINCH成像质量的影响.结果表明:三个相位在SLM上分布间隔越大,再现像越清晰.在此基础上,提出了一种新的掩模加载方式,在SLM加载透镜阵列,每一个相位因子对应一个双透镜,具有一个光轴.实验表明,通过这种加载方式,通过SLM后形成的三个相移图能够一次在电荷耦合器上记录,并且三个相移图不重叠,然后通过MATLAB编程计算将不同相移角度的全息图分别提取出来,通过三步相移计算合成一幅包含有物光波的复值全息图,最后通过数值再现算法重建待测样品.此系统可用于对光源相干性较低的实时成像系统,也为微小形变测量、动态物体的观测提供了新方法,为非相干数字全息术的发展提供了新思路.  相似文献   

7.
Ren H  Sun T  MacDonald DJ  Cobb MJ  Li X 《Optics letters》2006,31(7):927-929
We present a moving-scatterer-sensitive optical Doppler tomography (MSS-ODT) technique for in vivo blood flow imaging in real time by using a spectral-domain optical coherence tomography system. In MSS-ODT the influence of stationary scatterers is suppressed by subtracting adjacent complex axial scans before calculating the Doppler frequency shift. We demonstrate that MSS-ODT is a useful technique for accurate determination of blood vessel size by imaging flow in a small capillary tube with a 75 microm inner diameter. The flow profile obtained with MSS-ODT yields a substantially more accurate tube diameter than that obtained with the conventional phase-resolved method, which underestimates the diameter by about 23%. We also demonstrate that MSS-ODT provides improved sensitivity over the conventional phase-resolved method for imaging in vivo blood flow in small vessels in a mouse ear.  相似文献   

8.
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   

9.
天文望远镜像差对斑点成像技术的影响   总被引:4,自引:3,他引:1  
罗林  廖胜  樊敏  沈忙作 《光学学报》2005,25(11):447-1451
着重研究了采用斑点成像技术处理天文望远镜图像时,光学系统固定像差对图像恢复结果的影响。在详细研究各种恢复天文图像振幅和相位的理论和方法的基础上,建立了一个包括Labeyrie振幅恢复方法和KnoxThompson相位重构方法的恢复扩展目标的斑点成像处理模型,分析了光学系统固定像差对系统传递函数相位分布和目标相位重构的影响:天文目标通过大气成像,固定像差将会被淹没在大气湍流随机起伏中,像差对相位重构没有显著影响。处理图像结果表明,斑点成像技术能同时消除大气湍流和望远镜系统固定像差的影响,得到高分辨力的扩展目标图像。还提出了一种消除光学系统像差的方法。  相似文献   

10.
We have constructed a fast laser-based surface acoustic wave (SAW) microscope, which may be thought of as a non-perturbing scanning acoustic microscope. The instrument is capable of rapid high resolution vector contrast imaging at several discrete frequencies, without any damage to the sample. Tailoring the generating optical distribution using computer-generated holograms allows us to both focus the acoustic waves (increasing their amplitude) and to spread the optical power over the sample surface (preventing damage). Accurate quantitative amplitude and phase (velocity) measurements and unique acoustic contrast mechanisms are possible with our instrument based on this technology due to the non-perturbing nature and the instrument geometries.However, the complexity of the optical generation profile leads to a strong dependence on material properties such as the SAW velocity and material anisotropy. We address these issues in this paper, and demonstrate how a spatial light modulator may be used to adapt the generating optical distribution to compensate for the material properties. This facilitates simpler alignment and velocity matching, and, combined with an acoustic wavefront sensor, will allow real-time adjustment of the generating source to enable imaging on anisotropic materials.  相似文献   

11.
王玲  丁志华 《光子学报》2008,37(2):351-355
提出利用快速扫描光学延迟线(Rapid Scanning Optical Delay Line,RSOD)作为光学相干层析成像(Optical Coherence Tomography,OCT)系统的相位调制器,并采用正弦驱动方式(谐振扫描)来提高扫描频率,进而实现高频相位调制的方法.介绍了基于RSOD相位调制器的干涉信号包络解调方法,分析了大振镜低频率线性驱动、小振镜高频线性驱动和大振镜高速正弦驱动三种实施方案对OCT性能的影响,并针对谐振扫描方案中轴向扫描的非线性提出了图像畸变定量校正的方法.结果表明:RSOD大振镜谐振扫描的模式能够兼顾系统成像速度、成像范围以及系统信噪比的要求,是一种行之有效的相位调制方法.  相似文献   

12.
光折变相位型波带片   总被引:2,自引:2,他引:0  
利用成象方法和光折变效应,在LiNbO3:Fe晶体中成功地写入了光折变相位型波带片.其衍射效率可达到21%.该制作方法具有实时、简便等优点.在集成光学和光学信息处理中具有重要的应用前景.  相似文献   

13.
Diffuse optical tomography is a novel imaging technique that resolves and quantifies the optical properties of objects buried in turbid media. Typically, numerical solutions of the diffusion equation are employed to construct the tomographic problem when media of complex geometries are investigated. Numerical methods offer implementation simplicity but also significant computation burden, especially when large three-dimensional reconstructions are involved. We present an alternative method of performing tomography of diffuse media of arbitrary geometries by means of an analytical approach, the Kirchhoff approximation. We show that the method is extremely efficient in computation times and consider its potential as a real-time three-dimensional imaging tool.  相似文献   

14.
利用频域信息重构的散焦宽场成像测量了Poly[2,7-(9,9-dioctylfluorene)-alt-4,7-bis(thiophen-2-yl)benzo-2,1,3-thiadiazole](PFO-DBT)共轭聚合物单分子发色团的吸收与发射特性及其动态演变过程.通过调制用于激发共轭聚合物单分子的超短脉冲对的相对相位,对单分子荧光进行傅里叶变换的频域测量,跟踪发色团吸收偶极取向变化;通过测量散焦荧光成像光斑探测发色团发射偶极取向变化.研究发现, PFO-DBT共轭聚合物单分子发色团存在吸收和发射偶极取向均保持不变、其中之一变化以及两者同时变化三种情况.这种对共轭聚合物单分子发色团吸收和发射偶极取向演化过程的实时测量可用于分析共轭聚合物构象变化及其对能量转移过程的影响.  相似文献   

15.
首次采用光纤Bragg光栅实时测量浇注炸药在固化成型过程中固化剂与粘结剂的反应放热量。为了实时、准确的测量出浇注炸药在固化过程中的温度值,设计了基于光纤布拉格光栅的组网式温度监测系统。鉴于炸药成分的危险性、以及浇注炸药固化过程时间长、对条件要求恒温的特殊性,直接的实时监测一直未找到合适的测量方法。近年来,光纤布拉格光栅由于其优越的特点,在通信和传感领域得到广泛应用。利用光纤光栅与温度之间的线性关系,将采集的光栅反射波长值换算为温度实时显示。通过波分复用技术在两根光纤上写入7个光栅点同时测量,多点分布式测量可以将炸药内部温度的分布趋势显示出来。封装的光栅传感器采用90°弯曲设计,不仅改进了传感器与跳线的连接,同时有利于装入烘箱内。Origin软件将txt数据绘制成曲线图形式,将固化过程温度的变化直观明了的显示出来。结果表明,该方法操作简单,精确度高,满足炸药固化过程中对温度的测试需求。  相似文献   

16.
分析了光谱光学相干层成像的基本原理,并基于ARM9内核的嵌入式微处理器S3C2443和当前主流嵌入式的WINCE实时多任务操作系统,提出了一套用于检测人体胃肠道病变的光谱光学相干层内窥成像系统的研制方案。从硬件和软件两个方面,详细介绍了系统的搭建过程,给出了整个系统框架图和软件运行流程图,并通过旋转扫描实验获得三层盖玻片的实物图,实验结果表明该嵌入式光学相干层成像系统是可行的。  相似文献   

17.
叶新威  马卫东  黄晓东  赵建宜 《光子学报》2014,40(12):1789-1792
报道了由两个N×N三维多模干涉耦合器和一段阵列相移波导组成的三维光开关.首先利用导模传输法分析了三维多模干涉耦合器的一般成像原理,并推导出了其成像位置以及相位矩阵.在此基础上,通过场传输矩阵法建立了光开关的传输方程.利用该传输方程计算得到了光开关工作时,阵列相移波导的相位条件,并通过三维有限差分光束传输法进行仿真验证,给出了光开关工作时的插损、串扰指标,以及光开关输出功率随相移波导相位变化的关系.  相似文献   

18.
As a revolutionary observation tool in life science, biomedical, and material science, optical microscopy allows imaging of samples with high spatial resolution and a wide field of view. However, conventional microscopy methods are limited to single imaging and cannot accomplish real-time image processing. The edge detection, image enhancement and phase visualization schemes have attracted great interest with the rapid development of optical analog computing. The two main physical mechanisms that enable optical analog computing originate from two geometric phases: the spin-redirection Rytov-Vlasimirskii-Berry (RVB) phase and the Pancharatnam-Berry (PB) phase. Here, we review the basic principles and recent research progress of the RVB phase and PB phase based optical differentiators. Then we focus on the innovative and emerging applications of optical analog computing in microscopic imaging. Optical analog computing is accelerating the transformation of information processing from classical imaging to quantum techniques. Its intersection with optical microscopy opens opportunities for the development of versatile and compact optical microscopy systems.  相似文献   

19.
为实时恢复天文或空间目标的湍流退化成像,提出一种适应大气湍流动态变化的多通道自适应光学图像恢复方法.以自适应光学校正后不同时刻的目标成像作为多个通道,建立求解系统点扩散函数的线性方程,根据解出的点扩散函数利用超拉普拉斯算法,求解待观测目标的估计值.结果表明:不同时刻的点扩散函数之间存在互质关系,满足多通道盲识别的理论要求.利用建立的线性方程求解出的点扩散函数与原点扩散函数的均方误差在10^-30~10^-27量级,采用超拉普拉斯算法恢复出的目标成像与原始目标之间的均方误差在10^-5~10^-4量级.本文研究为湍流退化图像的实时恢复提供了理论基础.  相似文献   

20.
贾辉  罗秀娟  张羽  兰富洋  刘辉  陈明徕 《物理学报》2018,67(22):224202-224202
光散射是限制光传输以及降低和破坏光学成像性能的主要因素,透过复杂散射介质对运动目标的全光成像是光学领域极具挑战性的技术之一.本文提出一种利用散斑差值自相关透过散射介质对运动目标进行实时追踪的方法.采用赝热光照明,基于光学记忆效应理论,通过对运动目标采集的两帧散斑做差值,然后做自相关运算,计算目标移动的距离,实现对目标的实时追踪,并且利用相位恢复算法进行简单处理就可以重建隐藏目标.对该方法进行了实验验证,成功地对隐藏的运动目标实现了成像与追踪.这种透过散射介质对运动目标的全光成像及实时追踪技术,在生物医学等领域具有重要应用潜力.  相似文献   

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