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Adaptive wavefront correction in two-photon microscopy using coherence-gated wavefront sensing

机译:相干门控波前传感在双光子显微镜中的自适应波前校正

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摘要

The image quality of a two-photon microscope is often degraded by wavefront aberrations induced by the specimen. We demonstrate here that resolution and signal size in two-photon microcopy can be substantially improved, even in living biological specimens, by adaptive wavefront correction based on sensing the wavefront of coherence-gated backscattered light (coherence-gated wavefront sensing, CGWS) and wavefront control by a deformable mirror. A nearly diffraction-limited focus can be restored even for strong aberrations. CGWS-based wavefront correction should be applicable to samples with a wide range of scattering properties and it should be possible to perform real-time pixel-by-pixel correction even at fast scan speeds.
机译:样品引起的波前像差通常会降低两光子显微镜的图像质量。我们在这里证明,通过基于相干门控背向散射光的波前(相干门控波前传感,CGWS)和波前的自适应波前校正,即使在活的生物样本中,双光子显微镜的分辨率和信号大小也可以得到显着改善由变形镜控制。即使是强像差,也可以恢复近衍射极限的焦点。基于CGWS的波前校正应适用于具有广泛散射特性的样本,并且即使在快速扫描速度下,也应有可能执行实时逐像素校正。

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