Author Affiliations
Abstract
1 School of Physical Science and Technology, Xinjiang University, Urumqi 830046, China
2 Affiliated Tumor Hospital of Xinjiang Medical University, Urumqi 830000, China
3 Department of Engineering, China University of Petroleum-Beijing, Keramayi 834000, China
4 School of Information Science and Engineering, Xinjiang University, Urumqi 830046, China
5 School of Electronic Engineering, Beijing University of Posts and Telecommunications, Beijing 100876, China
6 Quality of Products Supervision and Inspection Institute, Urumqi 830011, China
In this Letter, the surface-enhanced Raman scattering (SERS) signal of early breast cancer (BRC) patient serum is obtained by a composite silver nanoparticles (Ag NPs) PSi Bragg reflector SERS substrate. Based on these advantages, the serum SERS signals of 30 normal people and 30 early BRC patients were detected by this substrate. After a baseline correction of the experimental data, principal component analysis and linear discriminant analysis were used to complete the data processing. The results showed that the diagnostic accuracy, specificity, and sensitivity of the composite Ag NPs PSi Bragg reflector SERS substrate were 95%, 96.7%, and 93.3%, respectively. The results of this exploratory study prove that the detection of early BRC serum based on a composite Ag NPs PSi Bragg reflector SERS substrate is with a stable strong SERS signal, and an unmarked and noninvasive BRC diagnosis technology. In the future, this technology can serve as a noninvasive clinical tool to detect cancer diseases and have a considerable impact on clinical medical detection.
porous silicon Bragg reflector surface-enhanced Raman scattering breast cancer detection principal component analysis linear discriminant analysis 
Chinese Optics Letters
2020, 18(5): 051701
作者单位
摘要
美国宾夕法尼亚大学物质结构研究实验室, 费城 PA-19104, 美国
在乳腺癌成像、大脑的功能激活及临床研究、癌症治疗监测和肌肉疾病的研究等各种医疗解决方案中,功能性扩散光学成像和组织的光谱学技术逐渐成为一种重要的诊断方法。在简要介绍扩散光学的概念后,回顾了实验室多项近期的临床研究,特别是那些针对乳腺癌和脑功能的研究。乳腺癌研究的核心在于试点性的临床试验,目前已经进展到了对扩散光的定量评估,以用于肿瘤的检测和表征,也有助于癌症治疗检测等衍生问题的解决。扩散光学方法的第二个重要应用是在脑功能和生理学研究领域,这个领域中,组织氧消耗、维管联结和调节效应之间的相互作用甚少为人所知。这一方法在脑研究中的应用将会以多个示例介绍,包括临床上对急性缺血性脑卒中病人的看护等。
近红外光学成像 大脑成像 扩散光学断层成像 乳腺癌症检测 荧光分子断层成像 near-infrared imaging brain imaging diffuse optical tomography breast cancer detection fluorescence molecular tomography 
光学与光电技术
2015, 13(3): 1

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