Lee Bo-Ram, Joo Kyung-Il, Choi Eun Sook, Jahng Junghoon, Kim Hyunmin, Kim Eunjoo
Companion Diagnostics and Medical Technology Research Group, DGIST, Daegu, Republic of Korea.
School of Electronics Engineering, Kyungpook National University, Daegu, Republic of Korea.
PLoS One. 2017 Oct 19;12(10):e0185519. doi: 10.1371/journal.pone.0185519. eCollection 2017.
We performed dye-enhanced imaging of mouse brain microvessels using spectral focusing coherent anti-Stokes Raman scattering (SF-CARS) microscopy. The resonant signals from C-H stretching in forward CARS usually show high background intensity in tissues, which makes CARS imaging of microvessels difficult. In this study, epi-detection of back-scattered SF-CARS signals showed a negligible background, but the overall intensity of resonant CARS signals was too low to observe the network of brain microvessels. Therefore, Evans blue (EB) dye was used as contrasting agent to enhance the back-scattered SF-CARS signals. Breakdown of brain microvessels by inducing hemorrhage in a mouse was clearly visualized using backward SF-CARS signals, following intravenous injection of EB. The improved visualization of brain microvessels with EB enhanced the sensitivity of SF-CARS, detecting not only the blood vessels themselves but their integrity as well in the brain vasculature.
我们使用光谱聚焦相干反斯托克斯拉曼散射(SF-CARS)显微镜对小鼠脑微血管进行了染料增强成像。正向CARS中C-H伸缩振动的共振信号在组织中通常显示出高背景强度,这使得微血管的CARS成像变得困难。在本研究中,背向散射SF-CARS信号的落射检测显示背景可忽略不计,但共振CARS信号的整体强度过低,无法观察到脑微血管网络。因此,伊文思蓝(EB)染料被用作造影剂以增强背向散射的SF-CARS信号。静脉注射EB后,使用反向SF-CARS信号可清晰地观察到因诱导小鼠出血而导致的脑微血管破裂。EB增强了脑微血管的可视化效果,提高了SF-CARS的灵敏度,不仅能检测血管本身,还能检测脑血管系统的完整性。