Forward Sarah, Gribble Adam, Alali Sanaz, Lindenmaier Andras A, Vitkin I Alex
University of Toronto, Department of Medical Biophysics, Toronto, ON, M5G 1L7, Canada.
ASML Wilton, Wilton, CT, 06897, USA.
Sci Rep. 2017 Sep 20;7(1):11958. doi: 10.1038/s41598-017-12099-8.
Polarimetry is a noninvasive method that uses polarised light to assess biophysical characteristics of tissues. A series of incident polarisation states illuminates a biological sample, and analysis of sample-altered polarisation states enables polarimetric tissue assessment. The resultant information can, for example, help quantitatively differentiate healthy from pathologic tissue. However, most bio-polarimetric assessments are performed using free-space optics with bulky optical components. Extension to flexible fibre-based systems is clinically desirable, but is challenging due to polarisation-altering properties of optical fibres. Here, we propose a flexible fibre-based polarimetric solution, and describe its design, fabrication, calibration, and initial feasibility demonstration in ex vivo tissue. The design is based on a flexible fibre bundle of six multimode optical fibres, each terminated with a distal polariser that ensures pre-determined output polarisation states. The resultant probe enables linear 3 × 3 Mueller matrix characterization of distal tissue. Potential in vivo Mueller matrix polarimetric tissue examinations in various directly-inaccessible body cavities are envisioned.
偏振测定法是一种非侵入性方法,它利用偏振光来评估组织的生物物理特性。一系列入射偏振态照射生物样本,对样本改变后的偏振态进行分析可实现偏振组织评估。例如,所得信息有助于定量区分健康组织和病理组织。然而,大多数生物偏振评估是使用带有笨重光学组件的自由空间光学系统进行的。扩展到基于柔性光纤的系统在临床上是可取的,但由于光纤的偏振改变特性而具有挑战性。在此,我们提出一种基于柔性光纤的偏振解决方案,并描述其在离体组织中的设计、制造、校准和初步可行性演示。该设计基于由六根多模光纤组成的柔性光纤束,每根光纤末端都有一个远端偏振器,可确保预定的输出偏振态。所得探头能够对远端组织进行线性3×3穆勒矩阵表征。设想了在各种无法直接进入的体腔中进行体内穆勒矩阵偏振组织检查的潜力。