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Rapid 3D imaging of a seizure model in zebrafish using an electrically tunable lens with adaptive optics correction

机译:使用具有自适应光学校正的电动可调谐镜头斑马鱼癫痫发作模型的快速3D成像

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Light Sheet Microscopy has many advantages for imaging living model organisms. Its optical sectioning capability and high volumetric imaging speed over a large field of view make it especially favorable for recording highly dynamic biological events, such as neural signaling. The combination of an electrical tunable lens (ETL) and a scanning light sheet allows us to record image stacks at high speed without moving the sample or the detection objective. The performance of the light sheet microscope is affected by aberrations from the sample mounting and the sample itself as well as aberrations introduced by The ETL which limit the usable field of view and focusing range of the system. Here, we present the development of a light sheet microscope optimized for volumetric imaging of zebrafish larvae with adaptive optics correction for extended focusing range and increased image quality at a speed of 0.6Hz over 400 × 400 × 100 μm~3 using an electrical tunable lens.
机译:灯纸显微镜具有成像生活模型生物的优点。 其光学切片能力和高容量成像速度在大型视场上使其特别有利于记录高动态的生物事件,例如神经信号。 电动可调谐透镜(ETL)和扫描光片的组合允许我们以高速记录图像堆叠而不移动样品或检测目标。 光片显微镜的性能受到样品安装和样品本身的像差以及由ETL引入的像差,这限制了系统的可用视野和聚焦范围。 在这里,我们介绍了针对斑马鱼幼鼠幼虫容积成像的轻薄片显微镜的开发,具有用于扩展聚焦范围的自适应光学校正,并使用电动可调镜头以0.6Hz的速度提高图像质量。 。

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