...
首页> 外文期刊>Applied optics >Influence of fiber optic probe geometry on the applicability of inverse models of tissue reflectance spectroscopy: computational models and experimental measurements
【24h】

Influence of fiber optic probe geometry on the applicability of inverse models of tissue reflectance spectroscopy: computational models and experimental measurements

机译:光纤探头几何形状对组织反射光谱反模型的适用性的影响:计算模型和实验测量

获取原文
获取原文并翻译 | 示例

摘要

Accurate recovery of tissue optical properties from in vivo spectral measurements is crucial for improving the clinical utility of optical spectroscopic techniques. The performance of inversion algorithms can be optimized for the specific fiber optic probe illumination-collection geometry. A diffusion-theory-based inversion method has been developed for the extraction of tissue optical properties from the shape of normalized tissue diffusion reflectance spectra, specifically tuned for a fiber probe that comprises seven hexagonally close-packed fibers. The central fiber of the probe goes to the spectrometer as the detecting fiber, and the surrounding six outer fibers are connected to the white-light source as illumination fibers. The accuracy of the diffusion-based inversion algorithm has been systematically assessed against Monte Carlo (MC) simulation as a function of probe geometry and tissue optical property combinations. By use of this algorithm, the spectral absorption and scattering coefficients of normal and cancerous tissue are efficiently retrieved. Although there are significant differences between the diffusion approximation and the MC simulation at short source-detector (SD) separations, we show that with our algorithm the tissue optical properties are well retrieved within the SD separation of 0.5-3 mm that is compatible with endoscopic specifications. The presented inversion method is computationally efficient for eventual real-time in vivo tissue diagnostics application.
机译:从体内光谱测量中准确恢复组织的光学特性对于提高光谱技术的临床实用性至关重要。可以针对特定的光纤探头照明收集几何形状优化反演算法的性能。已开发出一种基于扩散理论的反演方法,用于从归一化的组织扩散反射光谱的形状中提取组织的光学特性,特别是针对包含七个六边形密堆积纤维的光纤探针进行了调整。探针的中心光纤作为检测光纤到达光谱仪,周围的六个外部光纤作为照明光纤连接到白光源。基于扩散的反演算法的准确性已根据蒙特卡洛(MC)模拟系统评估,该模拟是探针几何形状和组织光学特性组合的函数。通过使用该算法,可以有效地检索正常和癌性组织的光谱吸收和散射系数。尽管在短距离源检测器(SD)分离下扩散近似与MC模拟之间存在显着差异,但我们表明使用我们的算法可以在0.5-3 mm的SD分离范围内很好地恢复组织的光学特性,这与内窥镜兼容规格。所提出的反演方法对于最终的实时体内组织诊断应用具有计算效率。

著录项

相似文献

  • 外文文献
  • 中文文献
  • 专利
获取原文

客服邮箱:kefu@zhangqiaokeyan.com

京公网安备:11010802029741号 ICP备案号:京ICP备15016152号-6 六维联合信息科技 (北京) 有限公司©版权所有
  • 客服微信

  • 服务号