Vacas-Jacques Paulino, Strojnik Marija, Paez Gonzalo
Centro de Investigaciones en Optica, Leon, Guanajuato, Mexico.
J Opt Soc Am A Opt Image Sci Vis. 2009 Mar;26(3):602-12. doi: 10.1364/josaa.26.000602.
Recently, we have introduced a transillumination technique for biomedical diagnosis. The technique, pass-through photon-based transillumination, relies on interferometric measurements to recover the information of interest. In this work, we present the forward-calculated analytical interferograms that describe the behavior of the system. Stochastic modeling of radiation interacting with tissue enables determination of amplitude and phase parameters, indispensable for computation of the interferograms. Sample variability is assessed by studying tissue phantoms similar to those used in the experimental verification of the technique and that are representative of (abnormal) dental tissues. For tissue characterization, perfect recovery of the integrated attenuation ensues by employing spatially compact radiation sources. For tissue imaging, spatially extended sources with broad bandwidth are superior due to the implicit longitudinal coherence filter. For both applications, sample variability issues may be neutralized by permitting spatial divergence of scattered photons.
最近,我们引入了一种用于生物医学诊断的透照技术。该技术即基于穿透光子的透照技术,依靠干涉测量来恢复感兴趣的信息。在这项工作中,我们展示了描述系统行为的正向计算分析干涉图。对与组织相互作用的辐射进行随机建模能够确定干涉图计算所必需的幅度和相位参数。通过研究与该技术实验验证中使用的类似且代表(异常)牙齿组织的组织模型来评估样本变异性。对于组织表征,通过使用空间紧凑的辐射源可实现积分衰减的完美恢复。对于组织成像,由于隐含的纵向相干滤波器,具有宽带宽的空间扩展源更具优势。对于这两种应用,通过允许散射光子的空间发散,样本变异性问题可能得以消除。