首页> 外文期刊>Journal of Biophotonics >Motion-free endoscopic system for brain imaging at variable focal depth using liquid crystal lenses
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Motion-free endoscopic system for brain imaging at variable focal depth using liquid crystal lenses

机译:使用液晶透镜的可变焦深的脑成像的无运动内窥镜系统

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摘要

We present a motion-free system for microendoscopic imaging of biological tissues at variable focal depths. Fixed gradient index and electrically tunable liquid crystal lenses (TLCL) were used to build the imaging optical probe. The design of the TLCL enables polarization-independent and relatively low-voltage operation, significantly improving the energy efficiency of the system. A focal shift of approximately 74 +/- 3 mu m could be achieved by electrically controlling the TLCL using the driving frequency at a constant voltage. The potential of the system was tested by imaging neurons and spines in thick adult mouse brain sections and in vivo, in the adult mouse brain at different focal planes. Our results indicate that the developed system may enable depth-variable imaging of morpho-functional properties of neural circuitries in freely moving animals and can be used to investigate the functioning of these circuitries under normal and pathological conditions.
机译:我们介绍了一种无运动焦深的生物组织的微安成像的无运动系统。 固定梯度指数和电可调谐液晶透镜(TLCL)用于构建成像光学探针。 TLCL的设计使得能够独立于极化和相对低的电压操作,显着提高了系统的能量效率。 通过在恒定电压下使用驱动频率电气控制TLCL,可以实现约74 +/-3μm的焦平。 通过在不同焦平面上的成人小鼠脑中成像神经元和刺的成年小鼠脑中的神经元和刺来测试系统的潜力。 我们的结果表明,发达的系统可以在自由移动的动物中能够使神经电路的Morpho功能性能的深度变量成像,并且可用于研究正常和病理条件下这些电路的功能。

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