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Spatially-resolved probing of biological phantoms by point-radiancespectroscopy

机译:通过点辐射光谱法对生物体模进行空间分辨探测

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Interstitial fiber-optic based strategies for therapy monitoring and assessment rely on detecting treatment-induced changes in the light distribution in biological tissues. We present an optical technique to identify spectrally and spatially specific tissue chromophores in highly scattering turbid media. Typical optical sensors measure non-directional light intensity (i.e. fluence) and require fiber translation (i.e. 3-5 positions), which is difficult to implement clinically. Point radiance spectroscopy is based on directional light collection (i.e. radiance) at a single point with a side-firing fiber that can be rotated up to 360°. A side firing fiber accepts light within a well-defined solid angle thus potentially providing an improved spatial resolution. Experimental measurements were performed using an 800-um diameter isotropic spherical diffuser coupled to a halogen light source and a 600 |am, -43° cleaved fiber (i.e. radiance detector). The background liquid-based scattering phantom was fabricated using 1% Intralipid (i.e. scattering medium). Light was collected at 1-5° increments through 360°-segment. Gold nanoparticles, placed into a 3.5 mm diameter capillary tube were used as localized scatterers and absorbers introduced into the liquid phantom both on- and off-axis between source and detector. The localized optical inhomogeneity was detectable as an angular-resolved variation in the radiance polar plots. This technique is being investigated as a non-invasive optical modality for prostate cancer monitoring.
机译:基于间质光纤的治疗监测和评估策略依赖于检测治疗引起的生物组织中光分布的变化。我们提出一种光学技术,以识别在高度散射的混浊介质中的光谱和空间特定组织发色团。典型的光学传感器测量无方向的光强度(即能量密度)并需要光纤平移(即3-5个位置),这在临床上很难实现。点辐射光谱基于单点定向光收集(即辐射),并具有可旋转至360°的侧向发射光纤。侧面发射光纤在定义明确的立体角内接受光,因此有可能提供改善的空间分辨率。使用耦合到卤素光源和600μm-43°开裂光纤(即辐射检测器)的直径为800um的各向同性球形漫射器进行实验测量。基于背景液体的散射体模是使用1%脂质体(即散射介质)制成的。通过360°段以1-5°的增量收集光。放置在直径为3.5 mm的毛细管中的金纳米颗粒被用作局部散射体和吸收体,这些散射体和吸收体在源和检测器之间的轴上和轴外被引入到液体体模中。可以将局部光学不均匀性检测为辐射极坐标图中的角度分辨变化。这项技术正在作为前列腺癌监测的非侵入性光学手段进行研究。

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