Liu Lingling, Wan Wenbo, Qin Zhuanping, Zhang Limin, Jiang Jingying, Wang Yihan, Gao Feng, Zhao Huijuan
Opt Express. 2017 Oct 16;25(21):25295-25309. doi: 10.1364/OE.25.025295.
Interstitial determination of the tissue optical properties is important in biomedicine, especially for interstitial laser therapies. Continuous wave (CW) radiance techniques which examine light from multiple directions have been proposed as minimally invasive methods for determining the optical properties under an interstitial probe arrangement. However, both the fitting algorithm based on the P3 approximation and the analytical method based on the diffusion approximation (DA), which are currently used recovery algorithms, cannot extract the optical properties of tissue with low transport albedos accurately from radiance measurements. In this paper, we proposed an incomplete P3 approximation for the radiance, the P3 for short, which is the asymptotic part of the solution for the P3 approximation. The relative differences between the P3 and the P3 were within 0.48% over a wide range of clinically relevant optical properties for measurements at source detector separations (SDS) from 5 mm to 10 mm and angles from 0° to 160°. Based on the P3, we developed an analytical method for extracting the optical properties directly using simple expressions constructed from the radiance measurements at only two SDSs and four angles. The developed recovery algorithm was verified by simulated and experimental radiance data. The results show that both the absorption and reduced scattering coefficients were recovered accurately with relative errors within 5.28% and 3.86%, respectively, from the simulated data and with relative errors within 10.82% and 10.67%, respectively, from the experimental data over a wide range of albedos from 0.5 to 0.99. Since the developed P3-based radiance technique can obtain the optical properties rapidly from the measurements at only two SDSs and four angles, it is expected to be used for in vivo and in situ determination of the optical properties in online treatment planning during laser therapies.
组织光学特性的间质测定在生物医学中很重要,特别是对于间质激光治疗。已提出连续波(CW)辐射技术,该技术从多个方向检查光,作为在间质探针布置下确定光学特性的微创方法。然而,目前使用的恢复算法,即基于P3近似的拟合算法和基于扩散近似(DA)的解析方法,都无法从辐射测量中准确提取具有低输运反照率的组织光学特性。在本文中,我们提出了一种针对辐射的不完全P3近似,简称为P3,它是P3近似解的渐近部分。在源探测器间距(SDS)从5毫米到10毫米以及角度从0°到160°的广泛临床相关光学特性范围内,P3与完整P3之间的相对差异在0.48%以内。基于P3,我们开发了一种解析方法,可直接使用仅由两个SDS和四个角度的辐射测量构建的简单表达式来提取光学特性。所开发的恢复算法通过模拟和实验辐射数据进行了验证。结果表明,在从0.5到0.99的广泛反照率范围内,从模拟数据中分别以5.28%和3.86%以内的相对误差,从实验数据中分别以10.82%和10.67%以内的相对误差准确恢复了吸收系数和约化散射系数。由于所开发的基于P3的辐射技术仅通过两个SDS和四个角度的测量就能快速获得光学特性,因此有望用于激光治疗期间在线治疗计划中光学特性的体内和原位测定。