Xie Haiyan, Xie Zhiyuan, Mousavi Monirehalsadat, Bendsoe Niels, Brydegaard Mikkel, Axelsson Johan, Andersson-Engels Stefan
Lund University, Department of Physics, P.O. Box 118, SE-221 00 Lund, Sweden.
Skåne University Hospital, Department of Dermatology and Venereology, Lasarettsgatan 15, SE-221 85 Lund, Sweden.
J Biomed Opt. 2014 Jul;19(7):71408. doi: 10.1117/1.JBO.19.7.071408.
Optical techniques for tissue diagnostics currently are experiencing tremendous growth in biomedical applications, mainly due to their noninvasive, inexpensive, and real-time functionality. Here, we demonstrate a hand-held fiber optic probe instrument based on fluorescence/reflectance spectroscopy for precise tumor delineation. It is mainly aimed for brain tumor resection guidance with clinical adaptation to minimize the disruption of the standard surgical workflow and is meant as a complement to the state-of-the-art fluorescence surgical microscopy technique. Multiple light sources with fast pulse modulation and detection enable precise quantification of protoporphyrin IX (PpIX), tissue optical properties, and ambient light suppression. Laboratory measurements show the system is insensitive to strong ambient light. Validation measurements of tissue phantoms using nonlinear least squares support vector machines (LS-SVM) regression analysis demonstrate an error of <5% for PpIX concentration ranging from 400 to 1000 nM, even in the presence of large variations in phantom optical properties. The mean error is 3% for reduced scattering coefficient and 5% for blood concentration. Diagnostic precision of 100% was obtained by LS-SVM classification for in vivo skin tumors with topically applied 5-aminolevulinic acid during photodynamic therapy. The probe could easily be generalized to other tissue types and fluorophores for therapy guidance and monitoring.
用于组织诊断的光学技术目前在生物医学应用中正在经历巨大的发展,这主要归功于其非侵入性、低成本和实时功能。在此,我们展示了一种基于荧光/反射光谱的手持式光纤探针仪器,用于精确的肿瘤勾勒。它主要旨在为脑肿瘤切除提供指导,并在临床上进行调整以尽量减少对标准手术流程的干扰,旨在作为对先进荧光手术显微镜技术的补充。具有快速脉冲调制和检测功能的多个光源能够精确量化原卟啉IX(PpIX)、组织光学特性并抑制环境光干扰影响。实验室测量表明该系统对强环境光不敏感。使用非线性最小二乘支持向量机(LS-SVM)回归分析对组织模型进行的验证测量表明,即使在模型光学特性存在很大差异的情况下,PpIX浓度在400至1000 nM范围内的误差也小于5%。对于约化散射系数,平均误差为3%,对于血液浓度,平均误差为5%。在光动力疗法期间,通过LS-SVM分类对局部应用5-氨基乙酰丙酸后的体内皮肤肿瘤获得了100%的诊断精度。该探针可以很容易地推广到其他组织类型和荧光团,用于治疗指导和监测。