Science Medical Center, Saratov State University, 83 Astrakhanskaya Str., Saratov, Russia, 410012.
Laboratory of Laser Molecular Imaging and Machine Learning, Tomsk State University, 36 Lenin's Av., Tomsk, Russia, 634050.
Sci Rep. 2023 Jan 19;13(1):1073. doi: 10.1038/s41598-022-25012-9.
Adipose tissue (AT) optical properties for physiological temperatures and in vivo conditions are still insufficiently studied. The AT is composed mainly of packed cells close to spherical shape. It is a possible reason that AT demonstrates a very complicated spatial structure of reflected or transmitted light. It was shown with a cellular tissue phantom, is split into a fan of narrow tracks, originating from the insertion point and representing filament-like light distribution. The development of suitable approaches for describing light propagation in a AT is urgently needed. A mathematical model of the propagation of light through the layers of fat cells is proposed. It has been shown that the sharp local focusing of optical radiation (light localized near the shadow surface of the cells) and its cleavage by coupling whispering gallery modes depends on the optical thickness of the cell layer. The optical coherence tomography numerical simulation and experimental studies results demonstrate the importance of sharp local focusing in AT for understanding its optical properties for physiological conditions and at AT heating.
脂肪组织(AT)在生理温度和体内条件下的光学特性仍未得到充分研究。AT 主要由接近球形的密集细胞组成。这可能是 AT 表现出非常复杂的反射或透射光空间结构的原因。通过细胞组织体模显示,它被分成从插入点开始的狭窄轨道扇区,代表线状的光分布。因此迫切需要开发合适的方法来描述 AT 中的光传播。提出了一种通过脂肪细胞层传播光的数学模型。结果表明,光学辐射的局部聚焦(光在细胞阴影表面附近局部化)及其通过 whispering gallery 模式的耦合分裂取决于细胞层的光学厚度。光学相干断层扫描数值模拟和实验研究结果表明,在生理条件下和 AT 加热时,在 AT 中进行局部聚焦对于理解其光学特性非常重要。