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1.
When light travels in biological tissues,it undergoes multiple scattering and forms speckles,which seriousl.y restricts the penetration depth of optical imaging in biological tissues.With wavefront shaping method,by modulating the wavefront of incident light to compensate for the wavefront aberration,light focusing and scanning imaging through scattering media can be achieved.However,wavefront shaping must be accomplished within the speckle decorrelation time.Considering the short speckle decorrelation time of living tissues,the speed of wavefront shaping is rather essential We propose a new iterative optimization wavefront shaping method to improve the speed of wavefront shaping in which the existing parallel optimization wavefront shaping method is improved and is combined with the superpixel method.Compared with the traditional multi-frequency parallel optimization method,the modulation rate of our method is doubled.Moreover,we combine the high frame rate amplitude modulator,i.e.,the digital micromirror device(DMD),with the superpixel method to replace the traditional phase modulator(i.e.,spatial light modulator),which further increases the optimization speed.In our experiment,when the number of the optical modes is 400,light focusing is achieved with only 1000 DMD superpixel masks and the enhancement factor reaches 223.Our approach provides a new path for fast light focusing through wavefront shaping.  相似文献   

2.
We present a digital micromirror device(DMD) based superpixel method for focusing light through scattering media by modulating the complex field of incident light. Firstly, we numerically and experimentally investigate focusing light through a scattering sample using the superpixel methods with different target complex fields.Then, single-point and multiple-point focusing experiments are performed using this superpixel-based complex modulation method. In our experiment, up to 71.5% relative enhancement is realized. The use of the DMDbased superpixel method for the control of the complex field of incident light opens an avenue to improve the enhancement of focusing light through scattering media.  相似文献   

3.
This paper puts forward for the first time a combined transmission matrix(TM) method to measure the monochromatic TM of scattering media without a reference beam. This method can be named a sequential semi-definite programming method which combines the sequential algorithm and the semi-definite programming method. Firstly, each part of the TM is calculated respectively in proper sequence. Then every part of TM is combined to form a complete TM in accordance with a certain rule. The phase modulation of the incident light is achieved by using a high speed digital mirror device with the superpixel method. We have experimentally demonstrated that the incident light field is focused at the target through scattering media using the measured TM to optimize the wavefront of the incident light. Compared with the semidefinite programming method, our method takes less computational time and occupies less memory space. The sequential semi-definite programming method shows potential applications in imaging through biological tissues.  相似文献   

4.
Kong F  Silverman RH  Liu L  Chitnis PV  Lee KK  Chen YC 《Optics letters》2011,36(11):2053-2055
We demonstrate that laser beams can be converged toward a light-absorbing target through optically diffusive media by using photoacoustic-guided interferometric focusing. The convergence of light is achieved by shaping the wavefront of the incident light with a deformable mirror to maximize the photoacoustic signal, which is proportional to the scattered light intensity at the light absorber.  相似文献   

5.
Wavefront shaping technology has mainly been applied to microscopic fluorescence imaging through turbid media,with the advantages of high resolution and imaging depth beyond the ballistic regime. However, fluorescence needs to be introduced extrinsically and the field of view is limited by memory effects. Here we propose a new method for microscopic imaging light transmission through turbid media, which has the advantages of label-free and discretional field of view size, based on transmission-matrix-based wavefront shaping and the random matrix theory. We also verify that a target of absorber behind the strong scattering media can be imaged with high resolution in the experiment. Our method opens a new avenue for the research and application of wavefront shaping.  相似文献   

6.
利用近红外光激发的光声血管造影成像   总被引:2,自引:0,他引:2       下载免费PDF全文
杨思华  阴广志 《物理学报》2009,58(7):4760-4765
利用近红外光结合对应波长的光吸收增强对照剂来实现在体小鼠脑皮层血管的光声成像.近红外光在生物组织上有较深的穿透能力;而作为光吸收增强剂的外源染料吲哚菁绿注射到血液系统后则增加了血管对光的选择性吸收,从而增强了血管光声信号的强度.实验在不破坏脑头皮和头盖骨的前提下,通过静脉注射吲哚菁绿,获得小鼠脑皮层血管的光声造影成像.光声重建的血管网络与小鼠脑部解剖照片相当符合.实验结果证明近红外光结合光吸收增强剂的光声血管造影技术对于开展光声脑功能成像,光声分子成像提供了潜在的可行性. 关键词: 光声成像 光吸收增强剂 血管造影 光声信号  相似文献   

7.
彭东青  谢文明  吴淑莲  唐嘉铭  李志芳  李晖 《物理学报》2015,64(20):207801-207801
光声成像技术是一种非常有前景的前列腺早期检测与成像的新技术. 在现有前列腺光声成像技术中, 通常采用的腺体外光源辐照方式由于受外围组织的影响, 容易减弱深部前列腺组织的光能量吸收, 导致辐照范围减小, 引起光声成像深度不足, 难以实现无损前列腺癌的检测. 本文基于前列腺组织的结构特征, 依据一种以柱状弥散光纤在尿道对前列腺实施光辐照、并利用外置于直肠内的长焦区聚焦式超声换能器检测光声信号的前列腺光声扫描成像技术, 构建了光声成像实验系统, 开展了仿体实验. 测试结果表明, 系统能够实现样品中吸收体的定位和成像, 结合柱弥散光源体内辐照可使成像深度提高, 同时侧向成像范围也较大. 初步结果表明, 借助柱弥散光源进行体内光辐照的光声信号新激发方式结合长焦区超声探头在前列腺癌早期无创诊断上具有潜在的应用前景.  相似文献   

8.
This paper presents a three-dimensional visualization method of 3D objects in a scattering medium. The proposed method employs integral imaging and spectral analysis to improve the visual quality of 3D images. The images observed from 3D objects in the scattering medium such as turbid water suffer from image degradation due to scattering. The main reason is that the observed image signal is very weak compared with the scattering signal. Common image enhancement techniques including histogram equalization and contrast enhancement works improperly to overcome the problem. Thus, integral imaging that enables to integrate the weak signals from multiple images was discussed to improve image quality. In this paper, we apply spectral analysis to an integral imaging system such as the computational integral imaging reconstruction. Also, we introduce a signal model with a visibility parameter to analyze the scattering signal. The proposed method based on spectral analysis efficiently estimates the original signal and it is applied to elemental images. The visibility-enhanced elemental images are then used to reconstruct 3D images using a computational integral imaging reconstruction algorithm. To evaluate the proposed method, we perform the optical experiments for 3D objects in turbid water. The experimental results indicate that the proposed method outperforms the existing methods.  相似文献   

9.
基于声透镜成像系统的光声层析成像   总被引:4,自引:0,他引:4       下载免费PDF全文
陈湛旭  唐志列  万巍  何永恒 《物理学报》2006,55(8):4365-4370
光声成像是采用“光激发-超声波成像”的新型成像技术,它是检测强散射介质内部光吸收分布的一种有效医学影像技术.用短脉冲激光照射强散射介质(如生物组织),强散射介质由于光声效应产生超声信号,使用具有成像能力的声透镜把声压分布成像于像面上,然后利用具有空间分辨能力的阵列光声传感器,把同一像面上的光声信号强度记录下来,最后根据光声信号强度的空间分布进行图像重组.根据成像系统物像共轭原理,同一物平面的光声信号到达像面的时延相等,而不同物面的光声信号到达同一个探测器平面的时延各不相同,因此,利用BOXCAR的门控积分 关键词: 光声层析成像 声透镜 光声信号  相似文献   

10.
冯维  张福民  王惟婧  曲兴华 《物理学报》2017,66(23):234201-234201
在结构光三维扫描测量中,强反射表面因编码结构光照射后易产生局部镜面反射的特性,引起相机曝光饱和,淹没了所要检测的表面几何特征信息.为解决强反射表面的视觉成像难题,基于数字微镜器件(digital micromirror device,DMD)具有调制入射光线空间信息的特性,本文提出一种基于DMD的自适应高动态范围成像方法.设计与搭建了一套新型可编程的计算成像系统,建立其光学系统模型,并实现了DMD微镜与CMOS像素的匹配与映射;分析了基于逐像素编码曝光的高动态范围成像原理,并设计了基于DMD的光强编码控制算法,实现对入射光线强度的自适应精确调制,从而使进入成像系统中的入射光强始终处于相机的合适曝光强度内.实验表明:该方法突破了普通数字相机的动态范围限制,能够精确地控制被测强反射表面各个区域的入射光线强弱,并实现了对强反射表面的局部过曝光区域的清晰成像.该研究成果将为从根源上解决强反射表面因局部过曝光造成的三维点云缺失问题提供重要的解决方案.  相似文献   

11.
刘炎炎  杨孝全  骆清铭 《光学学报》2012,32(5):517002-191
在高分辨光声显微成像系统中,只有在有限焦深范围内的吸收体可以获得高分辨率高信噪比的成像,而实际的生物组织往往具有不规则的轮廓,导致成像结果分辨率和信噪比不均匀。提出了一种基于稀疏扫描轮廓的滑动焦点光声显微成像方法,首先在固定的焦点上稀疏扫描轮廓,人工选择轮廓点获取轮廓的稀疏矩阵,然后通过双调和(Biharmonic)插值获取完整的轮廓矩阵,并将轮廓矩阵转化为焦点位置移动矩阵,最后进行二次扫描,根据焦点位置移动矩阵在每次扫描之前调整焦点位置,使得在整个扫描过程中,样品始终处于焦深的范围,从而获得分辨率和信噪比均匀的光声显微图像。通过模型实验和在体皮下血管成像、颅下血管成像,证明了该方法可以有效地提高光声成像的质量。  相似文献   

12.
Tailoring light with a digital micromirror device   总被引:1,自引:0,他引:1       下载免费PDF全文
A digital micromirror device (DMD) is a product of micromechanics. The DMD employs numerous micromirrors as the actuating components to switch small portions of light on and off. During the past few decades, such devices have been widely applied in digital light processing technology. The expanding range of applications makes the DMD increasingly important in various research aspects. Recent advances demonstrate that the DMD is potentially better than the traditional liquid crystal spatial light modulator in speed, spectrum sensitivity, and polarization modulation. These characteristics have been verified in a series of recently reported experiments. This review summarizes the related theory, experimental techniques, and applications for wavefront shaping with DMDs in both statically shaping various spatial modes and dynamically compensating for wavefront distortion caused by the scattering medium.

  相似文献   


13.
周飞  丁天怀 《物理学报》2010,59(12):8451-8458
散射介质中层间杂质检测是一个非常重要的研究课题.改进现有的Monte Carlo方法,模拟大量光子在散射介质中的传输,得到入射光强、杂质埋藏深度、介质折射率、介质散射系数和各向异性因子对光学透反射成像法检测层间杂质效率的影响规律.结果表明,入射光强、杂质埋藏深度和介质折射率对透反射成像检测结果均有影响,且影响规律相似.增加入射光强、减小杂质埋藏深度或减小介质折射率均可提高反射光成像的检测效率;增大入射光强、减小介质折射率、减小介质散射系数或增大各向异性因子均可提高透射光成像的检测效率.这些规律对散射介质中层间杂质检测具有一定指导意义.  相似文献   

14.
余晓光  唐志列等 《物理》2002,31(2):98-100
报道了一种新的光声层析成像技术-光声傅里叶变换共焦扫描成像技术,并用该技术获得了强散射物质(生物组织)的层析图像,纵向分辨能力小于0.1mm,横向分辨率小于4mm。  相似文献   

15.
李婧  姚洁  余海群  吴大建 《声学学报》2020,45(3):433-438
采用有限元方法建立了金属纳米颗粒的光声效应模型,可计算近红外光脉冲激励下不同颗粒的声信号随时间的变化特性。文中以包裹凝胶壳的金纳米管为例,研究凝胶外壳对声压信号的影响,指出凝胶壳能够有效提高金纳米管声压信号幅度,声信号最大可增长至包裹前的6倍左右。进一步研究表明,为获取最强声信号,必须调整金纳米管的结构参数使其表面等离激元共振波长与入射脉冲激光波长相匹配。本工作可以为红外光声造影剂的设计提供参考。   相似文献   

16.
张诚  方龙杰  朱建华  左浩毅  高福华  庞霖 《物理学报》2017,66(11):114202-114202
光在不均匀介质中传播会受到散射的干扰,在这些散射材料中,例如粉末、生物组织、亚波长颗粒对入射光多次散射使得出射光无法聚焦,从而在接收平面形成散斑.本文提出四元裂解位相调制方法对入射相干光场进行调制,使其通过散射介质聚焦.此方法利用入射光场全场调制,充分考虑光场单元之间的干涉作用,从整个空间光调制器的调制面开始,逐层进行四元裂解及位相优化.运用此方法在实验中实现了相干光的前向散射和后向散射有效聚焦,这为生物医学领域中通过散射介质成像提供了新的思路和方法.  相似文献   

17.
基于代数重建算法的有限角度扫描的光声成像   总被引:6,自引:0,他引:6  
杨迪武  邢达  王毅  谭毅  尹邦政 《光学学报》2005,25(6):72-776
由于滤波反投影重建算法要求对成像区域进行全方位扫描以获取完全投影数据,它需要较长时间采集大量数据,使其在医学上的应用受到限制。研究了在有限角度下采用代数重建算法进行光声成像的方法,实验用的光源为YAG激光器,波长为1064nm,重复频率20Hz,脉宽为6ns,探测器为针状的磺化聚二氟乙烯(PVDF)膜水听器,接收面积的直径为1mm,从仿真和实验结果表明该方法适用于“非完备投影数据”的光声层析成像。从图像重建效果上与滤波反投影算法相比较,该成像算法提高了重建图像的分辨率和对比度。采用代数重建算法的有限角度的光声成像方法,对临床医学的无损伤检测,具有重要的意义。  相似文献   

18.
To obtain images through scattering media, scattered light fluorescence (SLF) microscopy that utilizes the optical memory effect has been developed. However, the small field of view (FOV) of SLF microscopy limits its application. In this paper, we have introduced a re-modulation method to achieve wide-field imaging through scattering media by SLF microscopy. In the re-modulation method, to raster scan the focus across the object plane, the incident wavefront is re-modulated via a spatial light modulator (SLM) in the updated phase compensation calculated using the optimized iterative algorithm. Compared with the conventional optical memory effect method, the re-modulation method can greatly increase the FOV of a SLF microscope. With the phase compensation theoretically calculated, the process of updating the phase compensation of a high speed SLM is fast. The re-modulation method does not increase the imaging time. The re-modulation method is, therefore, expected to make SLF microscopy have much wider applications in biology, medicine and physiology.  相似文献   

19.
An adaptive photoacoustic image reconstruction technique that combines coherence factor (CF) weighting and the minimum variance (MV) method is introduced. The backprojection method is widely used to reconstruct photoacoustic tomography images. Owing to the scattering of light, the quality of the photoacoustic imaging can be degraded. CF, an adaptive weighting technique, is known to improve the lateral resolution of photoacoustic images. In addition, an MV adaptive beamforming method can further improve the image quality by suppressing signals from off-axis directions. Experimental studies are performed to quantify the spatial resolution and contrast of the adaptive photoacoustic beamforming methods.  相似文献   

20.
声透镜对多层样品的光声层析成像   总被引:1,自引:0,他引:1  
魏亚东  吴云霞  张志坚 《光学学报》2012,32(6):611002-72
由于光声效应产生光声压分布图像,所以当强散射介质中的模拟吸光组织在受到短脉冲激光照射时,该声压分布会经声透镜成像在像平面上。在像平面上利用线性超声探测器阵列获取光声信号并传递给高速数据采集卡进行数据采集,可由程序重构出光声图像。设计的光声层析成像系统可以采集记录一定深度的数据,成像时只要在所采集到的数据中选取不同列数即可同时获得强散射介质多层样品不同层面的光声图像。实验成功地获得了强散射介质内多层样品不同层面的光声层析图像。该成像方法无需进行复杂的算法重建,且可以同时实现多层样品不同切面的光声成像。  相似文献   

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