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Fluorescence depth estimation from wide-field optical imaging data for guiding brain tumor resection: a multi-inclusion phantom study

机译:从广角光学成像数据估算荧光深度以指导脑肿瘤切除:多包涵体模型研究

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摘要

Studies have shown that fluorescent agents demarcate tumor from surrounding brain tissue and offer intraoperative guidance during resection. However, visualization of fluorescence signal from tumor below the surgical surface or through the appearance of blood in the surgical field is challenging. We have previously described red light imaging techniques for estimating fluorescent depths in turbid media. In this study, we evaluate these methods over a broader range of fluorophore concentrations, and investigate the ability to resolve multiple fluorescent emissions in the same plane or at different depths along the axis of imaging. A tungsten halogen lamp is used as a broadband white light source for reflectance imaging. Fluorescence from Alexa Fluor 647 is excited with a 635 nm diode laser. Reflectance and fluorescence spectral data are gathered between 670 and 720 nm with the use of a liquid crystal tunable filter and recorded on a sCMOS camera. Results show that two fluorescent emissions can be resolved within 2 mm if they are in the same plane or within 3 mm if they are at different depths along the axis of imaging up to 6 mm below the surface.
机译:研究表明,荧光剂可从周围的脑组织中划出肿瘤,并在切除过程中提供术中指导。然而,使来自手术表面以下的肿瘤或通过手术区域中的血液出现的荧光信号的可视化具有挑战性。先前我们已经描述了用于估计混浊介质中荧光深度的红光成像技术。在这项研究中,我们评估了更广泛范围内的荧光团浓度的这些方法,并研究了在同一平面或沿成像轴的不同深度处解析多种荧光发射的能力。卤素钨灯用作反射成像的宽带白光源。来自Alexa Fluor 647的荧光由635 nm二极管激光器激发。使用液晶可调滤光片在670至720 nm之间收集反射率和荧光光谱数据,并将其记录在sCMOS相机上。结果表明,如果两个荧光发射在同一平面内,则可以在2 mm内分辨出两个荧光发射;如果它们沿成像轴的深度不同,则可以在3 mm内分辨出最下表面6 mm。

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