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使用手持式光学设备的二维快速表面成像:体外和体内荧光研究。

Two-dimensional Fast Surface Imaging Using a Handheld Optical Device: In Vitro and In Vivo Fluorescence Studies.

机构信息

Department of Biomedical Engineering, Florida International University, Miami, FL 33174, USA.

出版信息

Transl Oncol. 2010 Feb;3(1):16-22. doi: 10.1593/tlo.09157.

Abstract

Near-infrared (NIR) optical imaging is a noninvasive and nonionizing modality that is emerging as a diagnostic tool for breast cancer. The handheld optical devices developed to date using the NIR technology are predominantly developed for spectroscopic applications. A novel handheld probe-based optical imaging device has been recently developed toward area imaging and tomography applications. The three-dimensional (3D) tomographic imaging capabilities of the device have been demonstrated from previous fluorescence studies on tissue phantoms. In the current work, fluorescence imaging studies are performed on tissue phantoms, in vitro, and in vivo tissue models to demonstrate the fast two-dimensional (2D) surface imaging capabilities of this flexible handheld-based optical imaging device, toward clinical breast imaging studies. Preliminary experiments were performed using target(s) of varying volume (0.23 and 0.45 cm(3)) and depth (1-2 cm), using indocyanine green as the fluorescence contrast agent in liquid phantom, in vitro, and in vivo tissue models. The feasibility of fast 2D surface imaging ( approximately 5 seconds) over large surface areas of 36 cm(2) was demonstrated from various tissue models. The surface images could differentiate the target(s) from the background, allowing a rough estimate of the target's location before extensive 3D tomographic analysis (future studies).

摘要

近红外(NIR)光学成像是一种非侵入性和非电离的方式,正在成为乳腺癌的一种诊断工具。迄今为止,使用 NIR 技术开发的手持式光学设备主要用于光谱应用。最近,已经开发出一种新型的基于手持式探头的光学成像设备,用于区域成像和层析成像应用。该设备的三维(3D)层析成像能力已在组织体模的荧光研究中得到证明。在当前的工作中,在组织体模、离体和体内组织模型上进行荧光成像研究,以证明这种灵活的基于手持式的光学成像设备在临床乳房成像研究中的快速二维(2D)表面成像能力。使用不同体积(0.23 和 0.45 cm(3)) 和深度(1-2 cm)的目标进行了初步实验,在液体体模、离体和体内组织模型中使用吲哚菁绿作为荧光对比剂。从各种组织模型中证明了在 36 cm(2) 的大面积上进行快速 2D 表面成像(约 5 秒)的可行性。表面图像可以区分目标与背景,允许在进行广泛的 3D 层析分析(未来的研究)之前粗略估计目标的位置。

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