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Three-dimensional fluorescence-enhanced optical tomography using a hand-held probe based imaging system.

机译:使用基于手持式探头的成像系统进行三维荧光增强光学层析成像。

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Hand-held based optical imaging systems are a recent development towards diagnostic imaging of breast cancer. To date, all the hand-held based optical imagers are used to perform only surface mapping and target localization, but are not capable of demonstrating tomographic imaging. Herein, a novel hand-held probe based optical imager is developed towards three-dimensional (3-D) optical tomography studies. The unique features of this optical imager, which primarily consists of a hand-held probe and an intensified charge coupled device detector, are its ability to; (i) image large tissue areas (5 x 10 sq. cm) in a single scan, (ii) perform simultaneous multiple point illumination and collection, thus reducing the overall imaging time; and (iii) adapt to varying tissue curvatures, from a flexible probe head design. Experimental studies are performed in the frequency domain on large slab phantoms (approximately 650 ml) using fluorescence target(s) under perfect uptake (1:0) contrast ratios, and varying target depths (1-2 cm) and X-Y locations. The effect of implementing simultaneous over sequential multiple point illumination towards 3-D tomography is experimentally demonstrated. The feasibility of 3-D optical tomography studies has been demonstrated for the first time using a hand-held based optical imager. Preliminary fluorescence-enhanced optical tomography studies are able to reconstruct 0.45 ml target(s) located at different target depths (1-2 cm). However, the depth recovery was limited as the actual target depth increased, since only reflectance measurements were acquired. Extensive tomography studies are currently carried out to determine the resolution and performance limits of the imager on flat and curved phantoms.
机译:基于手持式的光学成像系统是乳腺癌诊断成像的最新发展。迄今为止,所有基于手持式的光学成像仪仅用于执行表面映射和目标定位,但无法演示层析成像。在本文中,一种新颖的基于手持式探针的光学成像仪被开发用于三维(3-D)光学层析成像研究。该光学成像仪的主要功能是:它包括一个手持式探头和一个增强的电荷耦合器件检测器。 (i)在单次扫描中对大组织区域(5 x 10 sq。cm)成像,(ii)同时执行多点照明和采集,从而减少了总体成像时间; (iii)通过灵活的探头设计适应变化的组织曲率。实验实验是在大型平板幻像(约650 ml)的频域中进行的,使用的荧光靶标具有理想的摄取(1:0)对比度,变化的靶标深度(1-2 cm)和X-Y位置。实验证明了对3-D断层扫描同时进行连续多点照明。使用手持式光学成像仪首次证明了3D光学层析成像研究的可行性。初步的荧光增强光学层析成像研究能够重建位于不同目标深度(1-2厘米)的0.45 ml目标。但是,由于仅获取反射率测量值,因此随着实际目标深度的增加,深度恢复受到限制。当前正在进行广泛的层析成像研究,以确定成像仪在平面和弯曲体模上的分辨率和性能极限。

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