论文标题
纳米级结构检测和通过光学相干断层扫描对肿瘤生长的监测
Nanoscale structure detection and monitoring of tumour growth with optical coherence tomography
论文作者
论文摘要
大约90%的癌症起源于上皮组织,这导致上皮增厚,但是超微结构的变化和基础结构鲜为人知。需要深度分辨出纳米级组织形态的自由可视化,以揭示潜在组织中超微结构变化的程度和分布,但使用现有的成像方式很难实现。我们开发了一种纳米敏感的光学相干断层扫描(NSOCT)方法,以基于优势轴向结构的优势进行成像,具有一些纳米检测精度。 NSOCT映射轴向结构大小的分布比系统的轴向分辨率小。我们通过通过数值模拟检测合成轴向结构来验证NSOCT方法。随后,我们通过从商业化样品中检测已知结构来实验验证了NSOCT技术。 NSOCT揭示了与癌相关的主张亚微米结构变化的不同深度的缩放,这可能使疾病的起源,其进展并改善诊断。
Approximately 90% of cancers have their origins in epithelial tissues and this leads to epithelial thickening, but the ultrastructural changes and underlying architecture is less well known. Depth resolved label free visualization of nanoscale tissue morphology is required to reveal the extent and distribution of ultrastructural changes in underlying tissue, but is difficult to achieve with existing imaging modalities. We developed a nanosensitive optical coherence tomography (nsOCT) approach to provide such imaging based on dominant axial structure with a few nanometre detection accuracy. nsOCT maps the distribution of axial structural sizes an order of magnitude smaller than the axial resolution of the system. We validated nsOCT methodology by detecting synthetic axial structure via numerical simulations. Subsequently, we validated the nsOCT technique experimentally by detecting known structures from a commercially fabricated sample. nsOCT reveals scaling with different depth of dominant submicron structural changes associated with carcinoma which may inform the origins of the disease, its progression and improve diagnosis.