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Ultra-fast 3D scanning and holographic illumination in non-linear microscopy using acousto-optic deflectors

机译:使用声光偏转器的非线性显微镜中的超快速3D扫描和全息照明

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Decoding of information in the brain requires the imaging of large neuronal networks using e.g. two-photon microscopy (TPM). Fast control of the focus in 3D can be achieved with phase shaping of the light beam using acousto-optic deflectors (AODs). However, beam shaping using AODs is not straightforward because of non-stationary of acousto-optic diffraction. Here, we demonstrated a new stable AOD-based phase modulator, which operates at a rate of up to about hundred kHz. It provides opportunity for 3D scanning in TPM with the possibility to correct aberrations independently for every focus position or to achieve refocusing of scattered photons in rapidly decorrelating tissues.
机译:大脑中信息的解码需要使用例如大型神经元网络的成像。双光子显微镜(TPM)。使用声光偏转器(AOD)的光束的相位成形,可以实现对3D的焦点的快速控制。然而,由于声光衍射的非静止,使用AOD的光束形状并不直接。在这里,我们展示了一种新的基于稳定的AOD的相位调制器,其以高达约大约一百KHz的速率运行。它为TPM提供了3D扫描的机会,可以针对每个焦点位置独立校正像差或在快速去相关组织中实现分散的光子的重新剖足。

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