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First-in-human clinical study of novel technique to diagnose malignant melanoma via thermal conductivity measurements

机译:通过热导率测量诊断恶性黑色素瘤的新技术的首次人类临床研究

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摘要

Melanoma is an aggressive skin cancer that originates from melanocytes and, especially in the case of early-stage melanoma, is distributed adjacent to the epidermis and superficial dermis. Although early-stage melanoma can be distinguished from benign nevus via a dermoscopy, it is difficult to distinguish invasive melanoma in its early stages from in situ melanoma. Because invasive melanoma must undergo a sentinel lymph node biopsy to be diagnosed, a non-invasive method to detect the micro-invasion of early-stage melanoma is needed for dermato-oncologists. This paper proposes a novel quantitative melanoma identification method based on accurate measurements of thermal conductivity using a pen-shaped device. This method requires skin temperature data for one minute to determine the effective thermal conductivity of the skin, allowing it to distinguish melanoma lesions from healthy skin. Results suggest that effective thermal conductivity was negative for in situ melanoma. However, in accordance with tumour progression, effective thermal conductivity was larger in invasive melanoma. The proposed thermal conductivity measurement is a novel tool that detects the micro-invasion of melanoma.
机译:黑色素瘤是一种侵袭性皮肤癌,起源于黑色素细胞,尤其是在早期黑色素瘤的情况下,分布在表皮和浅层真皮附近。尽管可以通过皮肤镜检查将早期黑色素瘤与良性痣区分开,但是很难将早期的浸润性黑色素瘤与原位黑色素瘤区分开。由于侵袭性黑色素瘤必须经过前哨淋巴结活检才能被诊断,因此皮肤肿瘤医师需要一种非侵入性的方法来检测早期黑色素瘤的微侵袭。本文提出了一种新颖的定量黑色素瘤鉴定方法,该方法基于使用笔形装置精确测量导热系数的方法。此方法需要一分钟的皮肤温度数据来确定皮肤的有效导热率,从而可以将黑素瘤病变与健康皮肤区分开。结果表明,原位黑素瘤的有效导热系数为负。然而,根据肿瘤的进展,浸润性黑色素瘤的有效导热系数较大。提议的热导率测量是一种检测黑素瘤微侵袭的新颖工具。

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