Wu Tengfei, Zhang Yixuan, Blochet Baptiste, Arjmand Payvand, Berto Pascal, Guillon Marc
Saints-Pères Paris Institute for the Neurosciences, CNRS UMR 8003, Université Paris Cité, 45 rue des Saints-Pères, Paris 75006, France.
Sorbonne Université, CNRS, INSERM, Institut de la Vision, 17 Rue Moreau, Paris 75012, France.
Sci Adv. 2024 Jan 19;10(3):eadi1120. doi: 10.1126/sciadv.adi1120.
Aberrations and multiple scattering in biological tissues critically distort light beams into highly complex speckle patterns. In this regard, digital optical phase conjugation (DOPC) is a promising technique enabling in-depth focusing. However, DOPC becomes challenging when using fluorescent guide stars for four main reasons: the low photon budget available, the large spectral bandwidth of the fluorescent signal, the Stokes shift between the emission and the excitation wavelength, and the absence of reference beam preventing holographic measurement. Here, we demonstrate the possibility to focus a laser beam through multiple-scattering samples by measuring speckle fields in a single acquisition step with a reference-free, high-resolution wavefront sensor. By taking advantage of the large spectral bandwidth of forward multiply scattering samples, digital fluorescence phase conjugation is achieved to focus a laser beam at the excitation wavelength while measuring the broadband speckle field arising from a micrometer-sized fluorescent bead.
生物组织中的像差和多次散射会严重地将光束扭曲成高度复杂的散斑图案。在这方面,数字光学相位共轭(DOPC)是一种有前景的实现深度聚焦的技术。然而,由于四个主要原因,在使用荧光导星时DOPC变得具有挑战性:可用的光子预算低、荧光信号的光谱带宽大、发射波长和激发波长之间的斯托克斯频移,以及缺乏用于全息测量的参考光束。在这里,我们展示了通过使用无参考的高分辨率波前传感器在单个采集步骤中测量散斑场来使激光束聚焦穿过多次散射样本的可能性。通过利用前向多次散射样本的大光谱带宽,实现了数字荧光相位共轭,以便在测量由微米级荧光珠产生的宽带散斑场时,将激光束聚焦在激发波长处。