Iskander-Rizk Sophinese, Kruizinga Pieter, Springeling Geert, Vos Hendrik J, van der Steen Antonius F W, van Soest Gijs
Opt Lett. 2017 Jan 15;42(2):191-194. doi: 10.1364/OL.42.000191.
Photoacoustic imaging couples the chemical specificity of optical absorption with the viewing depth of ultrasound. Systems based on linear array transducers have the versatility to be applied in various (pre-) clinical scenarios but face a trade-off between viewing depth and image resolution depending on transducer frequency and aperture. We propose here a method to disentangle, with precision, small, closely spaced targets with optical spectral contrast, without impairing the imaging depth. Photoacoustic data sets were recorded at two different optical wavelengths. We accurately recovered object separation distances (mean error=2.3%±6%) from the phase difference between signals across the array, down to a spacing of 1/20th of the system's beam-formed lateral resolution. The proposed method may enable the translation of super-resolution microscopy to deep tissue imaging.
光声成像将光吸收的化学特异性与超声的成像深度相结合。基于线性阵列换能器的系统具有通用性,可应用于各种(临床前)临床场景,但根据换能器频率和孔径,在成像深度和图像分辨率之间面临权衡。我们在此提出一种方法,能够精确分辨具有光谱对比度的紧密相邻小目标,同时不影响成像深度。在两个不同的光波长下记录光声数据集。我们通过阵列上信号之间的相位差准确恢复了物体的分离距离(平均误差 = 2.3%±6%),最小间距可达系统波束形成横向分辨率的 1/20。所提出的方法可能使超分辨率显微镜技术能够应用于深部组织成像。