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Optimization of multimodal spectral imaging for assessment of resection margins during Mohs micrographic surgery for basal cell carcinoma

机译:多峰光谱成像的优化以评估基底细胞癌的Mohs显微外科手术切除范围

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摘要

Multimodal spectral imaging (MSI) based on auto-fluorescence imaging and Raman micro-spectroscopy was used to detect basal cell carcinoma (BCC) in tissue specimens excised during Mohs micrographic surgery. In this study, the MSI algorithm was optimized to maximize the diagnosis accuracy while minimizing the number of Raman spectra: the segmentation of the auto-fluorescence images was optimized according to the type of BCC, sampling points for Raman spectroscopy were generated based on auto-fluorescence intensity variance and segment area, additional Raman spectra were acquired when performance of the segmentation algorithm was sub-optimal. The results indicate that accurate diagnosis can be achieved with a sampling density of ~2,000 Raman spectra/cm2, based on sampling points generated by the MSI algorithms. The key benefit of MSI is that diagnosis of BCC is obtained based on intrinsic chemical contrast of the tissue, within time scales similar to frozen-section histopathology, but without requiring laborious sample preparation and subjective interpretation of stained frozen-sections.
机译:基于自动荧光成像和拉曼显微光谱的多峰光谱成像(MSI)被用于检测在Mohs显微外科手术中切除的组织标本中的基底细胞癌(BCC)。在这项研究中,对MSI算法进行了优化,以最大程度地提高诊断准确性,同时最大程度地减少了拉曼光谱:根据BCC的类型对自发荧光图像的分割进行了优化,并基于自动检测生成了拉曼光谱的采样点当分割算法的性能欠佳时,获得了荧光强度方差和片段面积,以及其他拉曼光谱。结果表明,基于MSI算法生成的采样点,以〜2,000拉曼光谱/ cm 2 的采样密度可以实现准确的诊断。 MSI的主要好处是,在类似于冷冻切片组织病理学的时间范围内,可根据组织的固有化学对比来获得BCC的诊断,而无需费力的样品制备和对染色的冷冻切片的主观解释。

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