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国家自然科学基金(60478040)

作品数:10 被引量:51H指数:4
相关作者:丁志华张雨东史国华何梓昂孟婕更多>>
相关机构:浙江大学中国科学院杭州电子科技大学更多>>
发文基金:国家自然科学基金国家高技术研究发展计划浙江省“新世纪151人才工程”更多>>
相关领域:电子电信理学机械工程医药卫生更多>>

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10 条 记 录,以下是 1-10
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适合于内窥成像的共路型光学相干层析成像系统被引量:11
2008年
提出了一种采用光纤型迈克耳孙干涉仪进行光程补偿的菲佐型光学相干层析成像(OCT)系统。该系统的传感探头为共路干涉结构,以解决现有内窥光学相干层析成像系统中存在的探头运动导致图像失真、以及更换使用不同探头时需进行色散和偏振态调节等问题。光程补偿和振动干扰实验结果表明,光程补偿方法正确可行,系统对环境干扰不敏感。利用研制的系统对反射镜和近红外卡进行了成像实验,验证了系统的有效性。提出的方法非常适合于内窥成像,并给出了把系统扩展为内窥光学相干层析成像系统的具体实现过程。
杨亚良丁志华孟婕吴兰何梓昂吴彤陈明惠
关键词:医用光学光学相干层析
In-vivo retinal imaging by optical coherence tomography using an RSOD-based phase modulator被引量:1
2009年
Fourier-domain rapid scanning optical delay line (RSOD) was introduced for phase modulation and depth scanning in a time-domain optical coherence tomography (TD-OCT) system. Investigation of parameter optimization of RSOD was conducted. Experiments for RSOD characterization at different parameters of the groove pitch, focal length, galvomirror size, etc. were performed. By implementing the optimized RSOD in our established TD-OCT system with a broadband light source centered at 840 nm with 50 nm bandwidth, in vivo retina imaging of a rabbit was presented, demonstrating the feasibility of high-quality TD-OCT imaging using an RSOD-based phase modulator.
Ling WANGZhi-hua DINGGuo-hua SHIYu-dong ZHANG
关键词:相位调制器光学相干断层扫描视网膜时间域
Spectral calibration in spectral domain optical coherence tomography被引量:10
2008年
A novel spectral calibration method is developed for spectral domain optical coherence tomography system. The method is based on two measurements of interference spectra from two reference mirror positions.It removes the influence of dispersion mismatch,and hence accurately determines the spectral distribution on the line-scan charge-coupled device(CCD)for sequent precise interpolation.High quality imaging can be realized with this method.Elimination of the degradation effect caused by dispersion mismatch is verified experimentally,and improved two-dimensional(2D)imaging of fresh orange pulp based on the proposed spectral calibration method is demonstrated.
王凯丁志华
基于RSOD相位调制的光纤型光学相干层析系统
本文采用中心波长为840nm,带宽为50nm的宽带近红外光源,并基于低相干干涉原理和快速扫描延迟线(RSOD)位相调制的外差探测方法,建立了单模光纤型光学相干层析成像系统,依此构筑了自然状态下活体组织的二维横断面成像图像...
王玲丁志华史国华张雨东
关键词:位相调制分辨率灵敏度
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光纤型光学相干层析技术系统的眼科成像被引量:17
2008年
建立了一套单模光纤型光学相干层析(OCT)成像系统,开展了动物眼睛的成像实验,实现了高信噪比、高分辨率、大成像深度的层析图像的获取。系统纵向分辨率达到9μm,横向分辨率为10μm,最大层析成像深度可达3.4 mm。实验图像和商业蔡氏三代光学相干层析技术成像的对比结果表明,研制的OCT系统已经能展示视网膜的基本分层结构,而且能分辨脉络膜的分层结构和脉络膜血管,后者是蔡氏三代OCT系统所无法实现的。
史国华丁志华戴云饶学军张雨东
关键词:医用光学与生物技术光学相干层析
All-fiber ring-cavity based frequency swept laser source for frequency domain OCT被引量:2
2010年
We develop a high-speed tunable,quasi-continuous-wave laser source for frequency domain(FD) optical coherence tomography(OCT).The laser resonance is realized within a unidirectional all-fiber ring cavity consisting of a fiber coupler,two fiber isolators,a semiconductor optical amplifier(SOA),and a fiber FabryPerot tunable filter(FFP-TF) for frequency tuning.Light output from the coupler is further amplified and spectral shaped by a booster SOA terminated at both ends with two isolators.The developed laser source provides up to 8000 sweeps per second over a full-width wavelength tuning range of 120 nm at center wavelength of 1320 nm with an average power of 9 mW,yielding an axial resolution of 13.6μm in air and a maximum sensitivity of about 112 dB for OCT imaging.The instantaneous linewidth is about 0.08 nm,enabling OCT imaging over an axial range of 3.4 mm in air.For optimization consideration based on this custom-built swept laser,experimental study on imaging quality relevant parameters of the swept laser with sine and ramp driving waveforms to the FFP-TF is conducted,and investigation of the swept laser on the cavity length is done.Implementing the laser source in our established swept source based OCT(SS-OCT) system,real-time structural imaging of biological tissue is demonstrated.
陈明惠丁志华徐磊吴彤王川史国华张雨东
关键词:光纤环形腔激光器OCT半导体光放大器扫频源可调谐滤波器
Tissue scattering parameter estimation through scattering phase function measurements by goniometer被引量:3
2007年
An automated optical system is built up to perform goniometric measurement of scattering phase function. Measurements of typical samples including monodisperse polystyrene micro-spheres solution,and mutlidis- perse polystyrene micro-spheres solution are carried out in a dark room.The possibility of estimating the average particle size of phantom through analyzing its scattering phase function is demonstrated.
朱瑛丁志华Martial Geisert
关键词:参数估计
光学多普勒层析术在脑微循环研究中的应用被引量:1
2007年
光学多普勒层析(optical Doppler tomography,简称ODT)技术为检测微米级血管的血流速度提供了一种新的手段.以颅脑开窗的大鼠为实验模型,以电刺激和药物刺激为手段,基于自行研制的ODT系统实时检测大鼠脑部感觉皮层细动脉的血流速度变化.实验结果表明,利用ODT可以观察到血流速度在刺激组和对照组之间的显著变化,因而证明了ODT用于脑微循环研究的可行性.较传统的超声多普勒技术,ODT具有更高的空间分辨率,在脑微循环研究尤其是微米级血管的血流速度观察方面,具有重要的应用前景.
丁志华杨勇孟婕
关键词:脑微循环血流速度电刺激药物刺激
基于快速扫描延迟线相位调制的光纤型光学相干层析系统被引量:8
2008年
采用中心波长为840 nm,带宽为50 nm的宽带近红外光源,基于低相干干涉原理和快速扫描延迟线(RSOD)相位调制的外差探测方法,建立了单模光纤型光学相干层析(OCT)成像系统,依此获得自然状态下活体组织的二维纵向截面成像图像。实验结果表明,系统的轴向分辨率为6.7μm,接近理论分辨率,纵向成像范围高达3 mm,横向分辨率为4.7μm;入射到样品的光功率低于300μW,系统探测灵敏度大于88 dB。在保证样品入射光功率相同的情况下,与中心波长为1310 nm,带宽为65 nm的单模光纤型光学相干层析成像系统对含水量高的新鲜橙子果肉的成像结果进行对比,验证了该系统用于眼后段组织成像的优越性,给出了活体动物视网膜的成像结果。
王玲丁志华史国华张雨东朱瑛黄刚何梓昂
关键词:医用光学与生物技术相位调制分辨率
DEVELOPMENT OF HIGH-SPEED SWEPT-SOURCE OPTICAL COHERENCE TOMOGRAPHY SYSTEM AT 1320 nm
2009年
A swept-source optical coherence tomography(SSOCT)system based on a high-speed scanning laser source at center wavelength of 1320 nm and scanning rate of 20 kHz is developed.The axial resolution is enhanced to 8.3μm by reshaping the spectrum in frequency domain using a window function and a wave number calibration method based on a Mach-Zender Interferometer(MZI)integrated in the SSOCT system.The imaging speed and depth range are 0.04 s per frame and 3.9 mm,respectively.The peak sensitivity of the SSOCT system is calibrated to be 112 dB.With the developed SSOCT system,optical coherence tomography(OCT)images of human finger tissue are obtained which enable us to view the sweat duct(SD),stratum corneum(SC)and epidermis(ED),demonstrating the feasibility of the SSOCT system for in vivo biomedical imaging.
TONG WUZHIHUA DINGMINGHUI CHENLEI XUGUOHUA SHIYUDONG ZHANG
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