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首页> 外文期刊>Applied Spectroscopy: Society for Applied Spectroscopy >Perturbation Factors in the Clinical Handling of a Fiber-Coupled Raman Probe for Cutaneous In Vivo Diagnostic Raman Spectroscopy
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Perturbation Factors in the Clinical Handling of a Fiber-Coupled Raman Probe for Cutaneous In Vivo Diagnostic Raman Spectroscopy

机译:皮肤超声诊断拉曼光谱的纤维耦合拉曼探针临床处理中的干扰因素

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The application of fiber-coupled Raman probes for the discrimination of cancerous and normal skin has the advantage of a non-invasive in vivo application, easy clinical handling, and access to the majority of body sites, which would otherwise be limited by stationary Raman microscopes. Nevertheless, including optical fibers and miniaturizing optical components, as well as measuring in vivo, involves the sensibility to external perturbation factors that could introduce artifacts to the acquired Raman spectra and thereby potentially reduce classification performance. In this study, typical perturbation factors of Raman measurements with a Raman fiber probe, optimized for clinical in vivo discrimination of skin cancer, were investigated experimentally. Measurements were performed under standardized conditions in clinical settings in vivo on human skin, as well as ex vivo on porcine ears. Raman spectra were analyzed in the fingerprint region between 1150 and 1730 cm(-1) using principal component analysis. The largest artifacts in the Raman spectra were found in measurements performed under the influence of strong ambient light conditions as well as after miscellaneous pre-treatments to the skin, such as use of a permanent marker or a sunscreen. Minor influences were also found in measurements using H2O immersion and when varying the probe contact force. The effect of reasonable variation of the fiber-bending radius was found to be of negligible impact. The influence of measurements on hairy or sun-exposed body sites, as well as inter-subject variation, was also investigated. The presented results may serve as a guide to avoid negative effects during the process of data acquisition and so avoid misclassification in tumor discrimination.
机译:光纤耦合拉曼探针用于区分癌变皮肤和正常皮肤的优点是无创体内应用,易于临床处理以及可进入大多数身体部位,否则将受到固定拉曼显微镜的限制。然而,包括光纤和使光学部件小型化以及在体内进行测量都涉及对外部扰动因素的敏感性,这可能会将伪像引入所获取的拉曼光谱中,从而潜在地降低分类性能。在这项研究中,实验研究了拉曼纤维探针对拉曼测量的典型扰动因子,该拉曼纤维探针针对皮肤癌的临床体内鉴别进行了优化。在人皮肤上以及在猪耳朵上体内离体的临床条件下,在标准化条件下进行测量。使用主成分分析在1150和1730 cm(-1)之间的指纹区域中分析拉曼光谱。拉曼光谱中最大的伪影是在强环境光条件下以及在对皮肤进行各种预处理(例如使用永久性记号笔或防晒霜)后进行的测量中发现的。在使用H2O浸泡进行测量以及改变探头接触力时,也发现了较小的影响。发现纤维弯曲半径的合理变化的影响几乎可以忽略不计。还研究了测量对有毛或暴露于阳光下的身体部位以及受试者间变异的影响。提出的结果可作为指导,以避免在数据采集过程中产生负面影响,从而避免在肿瘤鉴别中分类错误。

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