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Spectral biopsy for skin cancer diagnosis: initial clinical results

机译:皮肤癌诊断的光谱活组织检查:初始临床结果

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Skin cancer is the most common form of cancer in the United States and is a recognized public health issue. Diagnosis of skin cancer involves biopsy of the suspicious lesion followed by histopathology. Biopsies, which involve excision of the lesion, are invasive, at times unnecessary, and are costly procedures (~$2.8B/year in the US). An unmet critical need exists to develop a non-invasive and inexpensive screening method that can eliminate the need for unnecessary biopsies. To address this need, our group has reported on the continued development of a noninvasive method that utilizes multimodal spectroscopy towards the goal of a "spectral biopsy" of skin. Our approach combines Raman spectroscopy, fluorescence spectroscopy, and diffuse reflectance spectroscopy to collect comprehensive optical property information from suspicious skin lesions. We previously described an updated spectral biopsy system that allows acquisition of all three forms of spectroscopy through a single fiber optic probe and is composed of off-the-shelf OEM components that are smaller, cheaper, and enable a more clinic-friendly system. We present initial patient data acquired with the spectral biopsy system, the first from an extensive clinical study (n = 250) to characterize its performance in identifying skin cancers (basal cell carcinoma, squamous cell carcinoma, and melanoma). We also present our first attempts at analyzing this initial set of clinical data using statistical-based models, and with models currently being developed to extract biophysical information from the collected spectra, all towards the goal of noninvasive skin cancer diagnosis.
机译:皮肤癌是美国最常见的癌症形式,是公认的公共卫生问题。皮肤癌的诊断涉及可疑病变的活组织检查,然后是组织病理学。涉及切除病变的活组织检查是侵入性的,有时是不必要的,并且是昂贵的程序(美国〜2.8亿美元/年)。存在未致密的危急,以开发一种无侵入性和廉价的筛选方法,可以消除不必要的活组织检查。为了解决这一需求,我们的小组报告了不持续发展的非侵入性方法,该方法利用多模式光谱朝向皮肤的“光谱活检”的目标。我们的方法将拉曼光谱,荧光光谱和漫射反射光谱组合在一起,从可疑皮肤病变收集综合光学性质信息。我们之前描述了一种更新的光谱活检系统,其允许通过单个光纤探针获取所有三种形式的光谱学,并由较小,更便宜的搁板OEM组件组成,并且能够更具临床友好的系统。我们呈现利用光谱活检系统获得的初始患者数据,首先是广泛的临床研究(n = 250),以表征其在鉴定皮肤癌症(基底细胞癌,鳞状细胞癌和黑色素瘤)中的性能。我们还使用基于统计的模型分析本初始临床数据的第一次尝试,并使用目前正在开发的模型从收集的光谱中提取生物物理信息,全部朝向非侵入性皮肤癌诊断的目标。

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