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1.
正Conference on Three Dimensional Image Acquisition and Display Technology,2016(3DIADT 2016)http://www.csoe.org.cn/DIADT2016/2016年10月31日-11月2日浙江金华中国光学工程学会联合多家单位将举办首届"国际三维图像获取与显示技术:感知与应用研讨会",通过探讨三维图像获取、显示及相关领域理论与技术的进步和创新,加速三维影视技术成果的产业化进程,助力文化与科  相似文献   

2.
种晴  曹益平  陈雨婷 《光学学报》2019,39(8):183-191
为了实现高速旋转工件的在线三维面形检测,提出一种高速旋转物体频闪在线相位测量轮廓术(PMP)三维测量方法。利用圆形正弦光栅替代线形正弦光栅,采用高密度二元编码光栅替代灰度编码光栅,设计专用频闪同步控制单元同时触发投影系统频闪投射相移光栅和图像采集单元同步获取图像,获得物体在同一"冻结"位置下的相移变形条纹后,采用静态PMP相移算法重建物体的三维面形信息。实验结果表明,该方法具备可行性和实用性,可有效避免工件离线检测时多次装夹不一致引入的加工误差,能够提高工件的检测效率和加工效率,可用于其他高速旋转物体的三维面形重建。  相似文献   

3.
基于锥束CT序列图像的三维缺陷检测方法   总被引:1,自引:0,他引:1  
根据锥束CT序列图像各向同性及缺陷实体在序列图像层间位移和变化较小的特点,提出了一种适合锥束CT序列图像的三维缺陷检测方法。首先结合多目标跟踪思想,利用三维连通区域标记算法提取三维缺陷实体,并建立缺陷对应关系哈希表,以解决缺陷检测中目标轨迹的分叉;然后根据噪声目标的固有特性,对虚假缺陷信息进行有效删除,最终可获得真实缺陷目标实体,缺陷提取精度可达到像素。通过对空心涡轮叶片蜡模锥束CT图像进行实验,结果表明。该方法能准确地提取有较强噪声影响的序列图像的三维缺陷。  相似文献   

4.
提取骨架是计算机断层扫描(CT)三维(3D)血管图像定量分析中的关键步骤,通常耗费数小时,直接制约了图像分析的定量研究。分析串行骨架细化算法各步骤中包含的可并行化操作,对其进行并行化设计,提出的算法通过Open MP多线程技术实现,并采用不同大小的三维CT血管图像进行分析和测试。根据测试结果,改进后的算法获取到的骨架准确可靠,对于1.95 GB大小的三维血管图像,使用16个线程进行并行运算时,可将运算时间由176min缩短到13 min,时间消耗上降低了一个数量级。因此,提出的方法可实现大型血管骨架的准确、高效提取,解决了大型三维图像分析问题中运算效率低这一瓶颈问题。  相似文献   

5.
一种三维全息图的数字化实现方法   总被引:2,自引:1,他引:1  
提出一种实现三维显示的新方法,从两步法彩虹全息基本原理出发,通过分区域分幅的方式对多视角图形的波前进行数字化编码,获得夫琅和费光场分布,在位相型硅基液晶空间光调制器上按视角顺序输入该信息,利用透镜的傅里叶变换特性再现多视角子图像,干涉法逐区域拼接获得完整三维图像.最后通过实验获得了三维图像样品,验证了该方法.本方法可成为三维显示的重要技术手段.  相似文献   

6.
提出一种实现三维显示的新方法,从两步法彩虹全息基本原理出发,通过分区域分幅的方式对多视角图形的波前进行数字化编码,获得夫琅和费光场分布,在位相型硅基液晶空间光调制器上按视角顺序输入该信息,利用透镜的傅里叶变换特性再现多视角子图像,干涉法逐区域拼接获得完整三维图像.最后通过实验获得了三维图像样品,验证了该方法.本方法可成为三维显示的重要技术手段.  相似文献   

7.
提出了用一个摄像机重建三维发光体辐射场分布的方法。连续的三维发光体可以看成若干个互相平行的二维发光断层的组合。对发光体某断层进行聚焦摄象,得到的图像是该断层的高斯像和其他断层分别聚焦摄像,可得到组辐射图像,再用图像反汪算法,即可重建各断层的辐射场。实验模拟了具有我断层的三维发光体,获得了初步结果。  相似文献   

8.
利用亚微米荧光示踪粒子的离焦微细观测时的衍射图样,可以分析确定荧光粒子垂直于图像平面的轴向的位置, 实现对示踪粒子的三维定位.再结合应用于二维流畅测速领域的PIV技术,可利用全息荧光粒子图像测速技术实现流体速度分布的三维测量。  相似文献   

9.
提出一种基于三维分数阶微分增强的三维边缘曲面重构算法,可重构出更多的三维不规则目标的细节结构信息,克服了原边缘曲面重构算法重构细节信息不充分的缺点.根据分数阶微分傅里叶变换的可分离性原理,将二维分数阶微分算子推广至三维并推导出三维分数阶离散滤波模板,利用三维分数阶微分对图像具有非线性增强作用的特性,对三维切片数据场进行三维分数阶微分增强.与传统三维边缘曲面重构算法相比,经过三维分数阶微分增强且采用分数阶梯度追踪细节改进的重构算法,能够重构出更丰富的三维目标细节结构信息.算法运用于神经元细胞的共焦显微图像中三维不规则目标的边缘曲面重构,实验结果验证了该算法的正确性和高效性,可推广应用至生物医学领域的三维可视化研究.  相似文献   

10.
为快速获取空间不连续三维物体表面的绝对相位,提出了一种基于编码光栅的相位展开方法。该方法只需投射一幅带有编码信息的光栅条纹图像,即可获取相位展开所必需的条纹级数信息,从而得到整个被测表面的绝对相位信息。根据相位-深度关系,可获得整个被测表面的三维信息。与基于格雷码的相位展开方法相比,该方法不依赖被测物体的灰度信息,抗噪声性能更好。该方法只需额外投射一幅编码条纹图像,更适用于对实时性要求比较高的三维测量。通过实验证明了该方法的有效性和可行性。  相似文献   

11.
三维显微图像复原及点扩散函数的研究   总被引:2,自引:1,他引:1  
陈华  金伟其  王霞  苏秉华  张楠 《光学技术》2006,32(3):434-436
三维显微图像去卷积计算量巨大,运算时间长。评价和分析了三维点扩散函数、散焦像、光学切片以及不同三维点扩散函数去卷积的复原图像,进一步证明了散焦光信息对焦面像的干扰,主要来自于焦面像两侧附近的散焦像。提出了折中选择三维PSF的空间大小,可以获得良好的复原效果,并且减少运行时间。提出了频谱图均值的新概念,作为评价图像清晰及模糊程度的标准,并运用于散焦像、光学切片以及复原结果图的评价。  相似文献   

12.
The 3D fast asymmetric spin echo (FASE) method combines the half-Fourier technique and 3D fast spin echo (FSE) sequence. The advantage of this method is that it maintains the same spatial resolution as FSE while markedly reducing the imaging time. The purpose of the present study was to evaluate the usefulness of the 3D FASE technique in displaying the inner ear structure using phantom and volunteer studies. 3D FSE sequence images were obtained for comparison, and the optimum 3D FASE sequence was investigated on a 1.5T MR scanner. The results of phantom experiments showed increased signal-to-noise ratio (SNR) with prolonging repetition time (TR) on both 3D FASE and 3D FSE sequences. Although the SNR of 3D FASE images was 20-25% lower than that of 3D FSE images with the same TR, the SNR per minute with 3D FASE was about twice that with 3D FSE. On 3D FASE images, a higher spatial resolution was obtained with 2- or 4-shot images than with single-shot images. However, no significant difference was observed between 2-shot and 4-shot images. In the volunteer study, 3D FASE images using a TR of 5000 ms and an effective echo time (TEeff) of 250 ms showed a high SNR and spatial resolution and provided excellent contrast between cerebrospinal fluid and nerves in the internal auditory canal. The highest contrast was achieved in the 2-shot/2 number of excitations sequence. 3D FASE provides the same image quality as 3D FSE with a significant reducing in imaging time, and gives strong T2-weighted images. This method enables detailed visualization of the tiny structures of the inner ear.  相似文献   

13.
能够反映孔隙介质内部真实复杂结构的CT图像经常被用于模拟研究中并能取得较好的结果. 但是,在很多情况下缺少三维CT图像或者其分辨率受限,此时,更易于获取的二维薄片图像被用于构建三维的孔隙结构图像. 假定孔隙介质各向同性,基于二维图像,使用多点统计方法可以构建岩石的三维孔隙结构. 基于数字图像,采用随机游走方法模拟得到核磁共振响应,然后由模拟得到的回波串反演得到T2分布. 研究表明,岩石重构图像中的模拟结果与CT图像中的模拟结果有较好的一致性. 基于数字图像的核磁共振响应模拟为分析不同孔隙结构的核磁共振响应提供了便利,同时,模拟结果也为验证孔隙结构的重构效果提供了依据.  相似文献   

14.
The purpose of this study was to compare the diagnostic efficacy of a newly developed T(1)-weighted three-dimensional segmented echo planar imaging (3D EPI) sequence versus a conventional T(1)-weighted three dimensional spoiled gradient echo (3D GRE) sequence in the evaluation of brain tumors. Forty-four patients with cerebral tumors and infections were examined on a 1.0 T MR unit with 23 mT/m gradient strength. The total scan time for the T(1) 3D EPI sequence was 2 min 12 s, and for a conventional 3D GRE sequence it was 4 min 59 s. Both sequences were performed after administration of a contrast agent. The images were analyzed by three radiologists. Image assessment criteria included lesion conspicuity, contrast between different types of normal tissue, and image artifacts. In addition, signal-to-noise and contrast-to-noise-ratio (C/N) were calculated. The gray-white differentiation and C/N ratio of 3D EPI were found to be inferior to conventional 3D GRE images, but the difference was not statistically significant. In the qualitative comparison, lesion detection and conspicuity of 3D EPI images and conventional 3D GRE images were similar, but a tow-fold reduction of the scanning time was obtained. With the 3D EPI technique, a 50% scan time reduction could be achieved with acceptable image quality compared to conventional 3D GRE. Thus, the 3D EPI technique could replace conventional 3D GRE in the preoperative imaging of brain.  相似文献   

15.
张飞飞  彭雷  袁韬 《应用光学》2021,42(6):1034-1039
为了提升光电系统对于目标的探测识别能力,实现单光子探测三维点云数据和二维可见光图像的融合处理,提出了单光子探测成像系统的融合处理算法,采用直接线性变换方法并利用同名特征点的选取和间接平差算法解决了融合处理过程中的参数标定问题。通过实验数据进行融合处理算法验证,实现了分辨率1024×768像素单光子探测三维点云和二维可见光图像的像素级融合处理。实验结果表明,提出的融合处理算法能够有效实现三维、二维图像的融合。  相似文献   

16.
We present a method for controlling the depth of three-dimensional (3D) images reconstructed by integral photography. Incoherent light is reflected from 3D objects, propagates through a lens array, and is captured as the first elemental images by a capturing device. The second elemental images of the 3D images are generated by numerical processing from the first elemental images in accordance with the desired depth. The optical reconstruction of 3D images at the desired depth by the second elemental images is confirmed experimentally.  相似文献   

17.
Evaluation of 3D images is an important part of 3D display developments. In this paper, we propose an evaluation method which can reflect the characteristics of the stereoscopic 3D images in the depth direction. Perception of the depth planes is verified using a subjective evaluation method. Resolution of the stereoscopic 3D images which represents the distribution of the 3D images in the depth direction quantitatively is calculated and analyzed.  相似文献   

18.
We have proposed a method to recognize partially occluded three-dimensional (3D) objects by using 3D volumetric reconstruction integral imaging (II). An II system captures multiple perspectives of occluded objects by using a microlens array. The reconstruction of the occluded 3D scene and target recognition are done digitally to reduce the effects of the occlusion. To verify system performance, we have implemented an optimum filter for object recognition. Both two-dimensional (2D) images and 3D II volumetric reconstructed images are considered. The correlation results of occluded 3D images for volumetric reconstruction show substantial improvements compared with those for conventional 2D imaging of occluded images.  相似文献   

19.
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   

20.
In this Letter, we propose a three-dimensional(3D) free view reconstruction technique in axially distributed image sensing(ADS). In typical integral imaging, free view reconstructed images can be obtained by tilting all elemental images or tilting the reconstruction plane due to large lateral perspectives for 3D objects. In conventional ADS, the reconstructed images at only a front view can be generated since the sensor is moved along with its optical axis so that it has small lateral perspectives for 3D objects. However, the reconstructed 3D images at any viewing point may be obtained because the virtual viewing camera may capture these slightly different perspectives for 3D objects. Therefore, in this Letter, we employ the virtual viewing camera to visualize the 3D images at the arbitrary viewing point. To support our proposed method, we show the experimental results.  相似文献   

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