Opt Express. 2022 Aug 1;30(16):29128-29147. doi: 10.1364/OE.463553.
Optical aberrations affect the quality of light propagating through a turbid medium, where refractive index is spatially inhomogeneous. In multiphoton optical applications, such as two-photon excitation fluorescence imaging and optogenetics, aberrations non-linearly impair the efficiency of excitation. We demonstrate a sensorless adaptive optics technique to compensate aberrations in holograms projected into turbid media. We use a spatial light modulator to project custom three dimensional holographic patterns and to correct for local (anisoplanatic) distortions. The method is tested on both synthetic and biological samples to counteract aberrations arising respectively from misalignment of the optical system and from samples inhomogeneities. In both cases the anisoplanatic correction improves the intensity of the stimulation pattern at least two-fold.
光学像差会影响光在混浊介质中的传播质量,因为混浊介质中的折射率是空间不均匀的。在多光子光学应用中,如双光子激发荧光成像和光遗传学,像差会非线性地降低激发效率。我们展示了一种无传感器自适应光学技术,用于补偿混浊介质中投影的全息图的像差。我们使用空间光调制器来投影定制的三维全息图,并对局部(各向异性)失真进行校正。该方法在合成和生物样本上进行了测试,以抵消分别由光学系统失准和样本不均匀性引起的像差。在这两种情况下,各向异性校正都将刺激模式的强度至少提高了两倍。