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Measuring aberrations in the rat brain by coherence-gated wavefront sensing using a Linnik interferometer

机译:使用Linnik干涉仪通过相干门控波前传感测量大鼠大脑中的像差

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Aberrations limit the resolution, signal intensity and achievable imaging depth in microscopy. Coherence-gated wavefront sensing (CGWS) allows the fast measurement of aberrations in scattering samples and therefore the implementation of adaptive corrections. However, CGWS has been demonstrated so far only in weakly scattering samples. We designed a new CGWS scheme based on a Linnik interferometer and a SLED light source, which is able to compensate dispersion automatically and can be implemented on any microscope. In the highly scattering rat brain tissue, where multiply scattered photons falling within the temporal gate of the CGWS can no longer be neglected, we have measured known defocus and spherical aberrations up to a depth of 400 µm.
机译:像差限制了显微镜的分辨率,信号强度和可达到的成像深度。相干门控波前传感(CGWS)可以快速测量散射样本中的像差,因此可以实现自适应校正。但是,到目前为止,仅在弱散射样本中证明了CGWS。我们基于Linnik干涉仪和SLED光源设计了一种新的CGWS方案,该方案能够自动补偿色散,并且可以在任何显微镜上实现。在高度散射的大鼠脑组织中,不再可以忽略掉落在CGWS颞门内的多个散射光子,我们测量了已知的离焦和球面像差,深度达400 µm。

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