The role of dynamic infrared imaging in melanoma diagnosis.

Cila Herman
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引用次数: 49

Abstract

Melanoma incidence and the lifetime risk are increasing at an alarming rate in the United States and worldwide. In order to improve survival rates, the goal is to detect melanoma at an early stage of the disease. Accurate, sensitive and reliable quantitative diagnostic tools can reduce the number of unnecessary biopsies, the associated morbidity as well as the costs of care in addition to improving survival rates. The recently introduced quantitative dynamic infrared imaging system QUAINT measures differences in the infrared emission between healthy tissue and the lesion during the thermal recovery process after the removal of a cooling stress. Results from a clinical study suggest that the temperature of cancerous lesions is higher during the first 45-60 seconds of thermal recovery than the temperature of benign pigmented lesions. This small temperature difference can be measured by modern infrared cameras and serve as an indicator for melanoma in modern quantitative melanoma detectors.

动态红外成像在黑色素瘤诊断中的作用。
在美国和世界范围内,黑色素瘤的发病率和终生风险正以惊人的速度增长。为了提高生存率,我们的目标是在黑色素瘤的早期发现它。准确、灵敏和可靠的定量诊断工具除了可以提高生存率外,还可以减少不必要的活组织检查次数、相关发病率以及护理费用。最近推出的定量动态红外成像系统古朴测量在去除冷却应力后热恢复过程中健康组织和病变组织之间红外发射的差异。一项临床研究结果表明,在热恢复的前45-60秒,癌性病变的温度高于良性色素病变的温度。这种微小的温差可以被现代红外摄像机测量,并在现代定量黑色素瘤检测器中作为黑色素瘤的指标。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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