Opt Lett. 2019 Jun 15;44(12):3006-3009. doi: 10.1364/OL.44.003006.
Light scattering by tissues limits performance in biological sensing or stimulation. Here we present a photoacoustic technique that increases light transmittance by one order of magnitude and enables light localization in deep tissue. Laser-induced nonlinear acoustic waves are utilized to produce a high refractive index contrast in scattering medium without high-intensity pressure. The size of guiding area is around 60 μm, which is equivalent or smaller than the diameter of multimode fibers. To show potential use in biomedical fields, we performed light guiding and imaging of fluorescence, through swine tissues with thickness more than 1 mm.
组织的光散射限制了生物传感或刺激的性能。在这里,我们提出了一种光声技术,可将光透过率提高一个数量级,并实现深层组织中的光定位。激光诱导的非线性声波用于在不产生高强度压力的情况下在散射介质中产生高折射率对比度。导向区域的大小约为 60 μm,与多模光纤的直径相当或更小。为了展示在生物医学领域的潜在用途,我们通过厚度超过 1 毫米的猪组织进行了荧光的导向和成像。