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Development of all-optical imaging system for studying cerebral blood flow regulation using optogenetics

机译:用光学学研究脑血流调节的全光学成像系统的开发

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We present all-optical imaging system for studying cerebral blood flow regulation. To investigate changes in blood flowin the brain, it is necessary to visualize the vascular microstructure between neurons, astrocytes, and vascular cells andmonitor changes in vessel diameter and blood flow velocity. Optogenetics is an excellent technology that can be appliedto cerebral blood flow regulation studies that require superior spatial and temporal resolution and individual control ofcellular activity. The developed optical system is a new integrated optical imaging system that can apply all of thetechniques mentioned above for cerebral blood flow regulation research. The optical system includes a dual-colorfluorescence imaging system and a laser stimulation system. The system successfully performed dual-color fluorescenceimaging with a 50 μm grid pattern in the two wavelength ranges of 515-545 nm and 608-631 nm. It also performed laserstimulation with a minimum output laser pattern size of 2 x 2 μm~2 and a maximum intensity of up to 120 mW/mm~2. Inaddition, the optical system measured the fast flow velocity of fluorescent microbeads up to 1.9 μm/ms. Experimentalresults show that the system can be a promising tool for cerebral blood flow regulation studies that require optogeneticstimulation and dual-fluorescence imaging while measuring blood flow velocity. In the future, the all-optical imagingsystem will be applied to fiber bundle-based endoscopic systems developed to study cerebral blood flow regulation usingoptogenetics in living animal brains.
机译:我们提出了用于研究脑血流调节的全光学成像系统。调查血液流动的变化在大脑中,有必要可视化神经元,星形胶质细胞和血管细胞之间的血管微观结构监测血管直径和血流速度的变化。 Optogenetics是一种可以应用的优秀技术脑血流量调节研究需要卓越的空间和时间分辨率和单独的控制细胞活性。发达的光学系统是一种新的集成光学成像系统,可以应用所有的用于脑血流量调节研究的上述技术。光学系统包括双色荧光成像系统和激光刺激系统。该系统成功地进行了双色荧光以515-545nm和608-631nm的两个波长范围内的50μm网格图案成像。它还进行了激光刺激最小输出激光图案尺寸为2×2μm〜2,最大强度高达120 mW / mm〜2。在此外,光学系统测量荧光微珠的快速流速高达1.9μm/ ms。实验结果表明,该系统可以是需要近代的脑血流调节研究的有希望的工具刺激和双荧光成像,同时测量血流速度。在未来,全光学成像系统将应用于基于光纤束的内窥镜系统,用于研究脑血流调节活性动物大脑中的光学学。

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