论文标题

恶性引起的微妙扰动敏感的拉曼散射用于神经胶质瘤检测和分级

Malignancy Induced Subtle Perturbation Sensitive Raman Scattering for Glioma Detection and Grading

论文作者

Kaushik, Ritika, Rani, Chanchal, Neeshu, Km., Tanwar, Manushree, Pathak, Devesh K., Chaudhary, Anjali, Siraj, Fouzia, Jha, Hem C., Kumar, Rajesh

论文摘要

从恶性的人脑细胞中观察到了拉曼光谱线形的细微变化,此处探讨了其用于检测和分级的可能性。后者是由于与峰位置与脑肿瘤相比更敏感的事实,即拉曼光谱的宽度更敏感。由于癌性生长,由细胞修饰引起的扰动可能是由于在分子水平上实施的振动寿命改变而导致拉曼光谱的宽度变化。在不同频率下,已经观察到三种不同的脑细胞拉曼模式的癌症对光谱宽度的一致作用。拉曼光谱分析表明,对于癌细胞,与健康细胞相比,FWHM高达35%。已经确定了对拉曼光谱的仔细分析如何有助于轻松检测脑肿瘤。该方法通过研究相似的显微镜扰动的影响,例如Fano耦合和量子大小效应,对不同的拉曼光谱参数的影响,这也揭示了拉曼宽度是最敏感的参数。

Subtle changes in Raman spectral line-shape have been observed from malignant human brain cells and its possibility for being used in detection and grading of Glioma has been explored here. The latter has been developed as a result of the fact that the width of the Raman spectra is more sensitive, as compared to the peak position, to the brain tumors. The perturbations induced by the cell-modification, as a consequence to the cancerous growth, may be responsible for the widths variation in the Raman spectrum due to vibrational lifetime alteration enforced at the molecular levels. A consistent cancer induced effect on the spectral width has been observed for three different brain cells Raman modes at different frequencies . Raman spectral analysis reveals that for cancerous cells, the FWHM varies up to 35 % in comparison with the healthy cells. It has been established how a careful analysis of Raman spectra can help in easy detection of brain tumors. The methodology has been validated by studying the effect of similar microscopic perturbations, e.g, Fano coupling and quantum size effects, on different Raman spectral parameters which also reveals Raman width to be the most sensitive parameter.

扫码加入交流群

加入微信交流群

微信交流群二维码

扫码加入学术交流群,获取更多资源