School of Physics and Astronomy, University of Exeter, Streatham Campus, EX4 4QL, Exeter, UK.
Analyst. 2016 Oct 21;141(20):5738-5746. doi: 10.1039/c6an00490c. Epub 2016 Jul 27.
The aim of this research was to find the optimal Raman excitation wavelength to attain the largest possible sensitivity in deep Raman spectroscopy of breast tissue. This involved careful consideration of factors such as tissue absorption, scattering, fluorescence and instrument response function. The study examined the tissue absorption profile combined with Raman scattering and detection sensitivity at seven different, laser excitation wavelengths in the near infrared region of the spectrum. Several key scenarios in regards to the sample position within the tissue were examined. The highest Raman band visibility over the background ratio in respect to biological tissue provides the necessary information for determining the optimum laser excitation wavelength for deep tissue analysis using transmission Raman spectroscopy, including detection of breast calcifications. For thick tissues with a mix of protein and fat, such as breast tissue, 790-810 nm is concluded to be the optimum excitation wavelength for deep Raman measurements.
本研究旨在寻找最佳的拉曼激发波长,以实现乳腺组织深层拉曼光谱分析的最大灵敏度。这需要仔细考虑组织吸收、散射、荧光和仪器响应函数等因素。本研究在光谱近红外区域的七个不同激光激发波长下,结合组织吸收谱、拉曼散射和检测灵敏度,对组织进行了检查。还检查了关于组织内样本位置的几个关键情况。相对于生物组织,最高的拉曼带可见度与背景比提供了必要的信息,用于确定使用透射拉曼光谱学进行深层组织分析的最佳激光激发波长,包括对乳腺钙化的检测。对于富含蛋白质和脂肪的厚组织(如乳腺组织),结论是 790-810nm 是深层拉曼测量的最佳激发波长。