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Hyperspectral Microscopic Imaging of Skin Squamous Cell Carcinoma

机译:皮肤鳞状细胞癌的高光谱显微成像

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Acousto-optic tunable filter (AOTF) is a new type of light splitter with fast tuning, stable structure andportability. In this paper, a hyperspectral microscopic imaging system is constructed by combining non-collinearAOTF with optical inverted microscopy. The feasibility of data augmentation based on hyperspectral imagesfor object detection of skin squamous cell carcinoma is studied. The hyperspectral images collected fromunstained sections of skin squamous cell carcinoma are processed into dataset. At the same time, the matureopen source object detection model is selected and trained for 20,000 times. Using the trained model to detectthe lesion area of other unstained sections, it is found that the model trained by hyperspectral image dataset hasa good ability to distinguish the non-lesion area, and there is no false detection. And the model has a relativelyaccurate detection ability for large lesion area, but the results of the model for small lesion area are not ideal.After analysis, it is considered that the number of samples can be increased firstly, especially in small lesions,and the same to the hyperspectral images. In addition, the model for lesion detection can be further optimized.By increasing the complexity of the model, the model can learn more details and information in the imageduring the training process. The preliminary results of the experiment prove that hyperspectral imaging isfeasible for data augmentation of lesion object detection dataset. This paper provides a new method for theobject detection data augmentation of skin squamous cell carcinoma.
机译:声光可调滤波器(AOTF)是一种新型的光分路器,具有快速调整,结构稳定 可移植性。在本文中,通过组合非相连的微观微观成像系统构成了高光谱微观成像系统 具有光学倒置显微镜的AOTF。基于高光谱图像的数据增强的可行性 对于对象检测皮肤鳞状细胞癌。从中收集的高光谱图像 未染色的皮肤鳞状细胞癌切割到数据集中。同时,成熟 选择开源对象检测模型并培训20,000次。使用经过培训的模型来检测 其他未染色的部分的病变区,发现由高光谱图像数据集接受训练的模型 区分非病变区域的良好能力,并且没有错误的检测。而模型相对 精确的损伤区域检测能力,但小病变区模型的结果并不理想。 在分析之后,认为可以首先增加样品的数量,特别是在小病变中, 和高光谱图像相同。另外,可以进一步优化病变检测模型。 通过提高模型的复杂性,该模型可以在图像中了解更多细节和信息 在培训过程中。实验的初步结果证明了高光谱成像是 可行的数据增强物对象检测数据集。本文为此提供了一种新方法 对象检测皮肤鳞状细胞癌的数据增强。

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