Suppr超能文献

浑浊介质的透射和荧光角域光学投影断层成像

Transmission and fluorescence angular domain optical projection tomography of turbid media.

作者信息

Vasefi Fartash, Ng Eldon, Kaminska Bozena, Chapman Glenn H, Jordan Kevin, Carson Jeffery J L

机构信息

The School of Engineering Science, Simon Fraser University, Burnaby, British Columbia, Canada.

出版信息

Appl Opt. 2009 Nov 20;48(33):6448-57. doi: 10.1364/AO.48.006448.

Abstract

When imaging through turbid media, objects are often blurred by scattered light. An optical collimator (i.e., an angular filter array) improves images by accepting only photons propagating within a narrow solid angle about the direction of the incident light. These photons are expected to participate in a limited number of small-angle scattering events, maintaining their original propagation direction and, finally, contributing to the development of a faithful image of an object within a turbid medium. The collimation method, also referred to as angular domain imaging (ADI), applies to a see-through configuration where the incident collimated light beam can be aligned with the collimator in a transillumination mode of operation. In this paper, we present angular domain optical projection tomography (ADOPT), a method that can extract depth information of optical contrast in turbid media with high longitudinal resolution based on ADI technology. The resolution of the ADI system has been tested over various depths in a 5 cm optical cuvette using a resolution target suspended in a homogeneous turbid medium. The ADOPT system reconstructed images from a series of angular domain projections collected at angular intervals. The system was used to measure the attenuation of an absorbing target in transmission mode (t-ADOPT) and to measure the light emitting from a fluorescent target (f-ADOPT). Tissue-mimicking phantoms were used to validate the performance of the method. In the t-ADOPT configuration, a background scattered light estimation and subtraction methodology was introduced to improve the imaging contrast. A target consisting of two graphite rods (0.9 mm diameter) was suspended in the cuvette by a rotation stage. An Indocyanine Green-filled glass rod was used as an imaging target in the f-ADOPT arrangement. The target was placed in a manner such that the line of laser light was perpendicular to the longitudinal axis of the rods. Several projections were collected at increments of 1.8 degrees and compiled into a sinogram. A transverse image was reconstructed from the sinogram by using filtered backprojection and image contrast was improved by experimental scatter measurements using a wedge prism and an image processing algorithm. The submillimeter target embedded in a 2 cm thick scattering medium (reduced scattering coefficient < or = 2.4 cm(-1)) was discernable in both the sinograms and the reconstructed images. In the f-ADOPT system, fluorescent line targets <1 cm in diameter embedded in a 2 cm thick scattering medium (reduced scattering coefficient < or = 0.8 cm(-1)) were discernable in both the sinograms and the reconstructed images. The proposed method could be used as the basis to construct an optical tomographic scanner for simultaneous absorption and fluorescence-based imaging of biological specimens (i.e., up to 7 mm across).

摘要

当通过浑浊介质进行成像时,物体常常会被散射光模糊。光学准直器(即角滤波器阵列)通过仅接收在围绕入射光方向的狭窄立体角内传播的光子来改善图像。这些光子预计会参与数量有限的小角度散射事件,保持其原始传播方向,并最终有助于在浑浊介质中形成物体的真实图像。这种准直方法,也称为角域成像(ADI),适用于一种透视配置,在这种配置中,入射的准直光束可以在透射操作模式下与准直器对齐。在本文中,我们提出了角域光学投影断层扫描(ADOPT),这是一种基于ADI技术能够以高纵向分辨率提取浑浊介质中光学对比度深度信息的方法。ADI系统的分辨率已在一个5厘米的光学比色皿中的不同深度处进行测试,使用悬浮在均匀浑浊介质中的分辨率靶标。ADOPT系统从以角度间隔收集的一系列角域投影重建图像。该系统用于在透射模式下测量吸收靶标的衰减(t - ADOPT)以及测量荧光靶标发出的光(f - ADOPT)。使用组织模拟体模来验证该方法的性能。在t - ADOPT配置中,引入了背景散射光估计和减法方法以提高成像对比度。由两根石墨棒(直径0.9毫米)组成的靶标通过旋转台悬浮在比色皿中。在f - ADOPT配置中,使用填充吲哚菁绿的玻璃棒作为成像靶标。靶标的放置方式使得激光线与棒的纵向轴垂直。以1.8度的增量收集了几个投影并汇编成一个正弦图。通过使用滤波反投影从正弦图重建横向图像,并通过使用楔形棱镜的实验散射测量和图像处理算法提高图像对比度。嵌入在2厘米厚散射介质(约化散射系数≤2.4厘米⁻¹)中的亚毫米级靶标在正弦图和重建图像中均清晰可辨。在f - ADOPT系统中,嵌入在2厘米厚散射介质(约化散射系数≤0.8厘米⁻¹)中的直径小于1厘米的荧光线靶标在正弦图和重建图像中也清晰可辨。所提出的方法可作为构建用于对生物标本(即直径达7毫米)进行同时吸收和基于荧光成像的光学断层扫描仪的基础。

文献AI研究员

20分钟写一篇综述,助力文献阅读效率提升50倍。

立即体验

用中文搜PubMed

大模型驱动的PubMed中文搜索引擎

马上搜索

文档翻译

学术文献翻译模型,支持多种主流文档格式。

立即体验