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基于结构光照的超分辨率光声显微镜

Super-Resolution Photoacoustic Microscopy Using Structured-Illumination.

出版信息

IEEE Trans Med Imaging. 2021 Sep;40(9):2197-2207. doi: 10.1109/TMI.2021.3073555. Epub 2021 Aug 31.

Abstract

A novel super-resolution volumetric photoacoustic microscopy, based on the theory of structured-illumination, is proposed in this paper. The structured-illumination will be introduced in order to surpass the diffraction limit in a photoacoustic microscopy (PAM) structure. Through optical excitation of the targeted object with a sinusoidal spatial fringe pattern, the object's frequency spectrum is forced to shift in the spatial frequency domain. The shifting in the desired direction leads to the passage of the high-frequency contents of the object through the passband of the acoustic diffraction frequency response. Finally, combining the low-frequency image with the high-frequency parts in four regular orientations in the spatial frequency domain is equivalent to imaging the targeted object with an imaging system of two-fold bandwidth and thus half lateral resolution. In order to obtain the image of out-of-focus regions and improve the lateral resolution outside the focal region of a PAM imaging system, Fourier-domain reconstruction algorithm based on the synthetic aperture focusing technique (SAFT) using the virtual detector concept is utilized for reduction in the required computational load and time. The performance of the proposed imaging system is validated with in vivo and ex vivo targets. The experimental results obtained from several tungsten filaments in the depth range of 1.2 mm, show an improvement of -6 dB lateral resolution from 55- [Formula: see text] to 25- [Formula: see text] and also an improvement of signal-to-noise ratio (SNR) from 16-22 dB to 27-33 dB in the proposed system.

摘要

本文提出了一种基于结构照明理论的新型超分辨率体积光声显微镜。结构照明将被引入以超越光声显微镜(PAM)结构中的衍射极限。通过用正弦空间条纹图案对目标进行光学激发,迫使物体的频谱在空间频率域中移动。在期望方向上的移动导致物体的高频内容通过声衍射频率响应的通带。最后,将低频图像与空间频率域中四个规则方向的高频部分相结合,相当于用两倍带宽的成像系统对目标进行成像,从而实现了一半的横向分辨率。为了获得离焦区域的图像并提高 PAM 成像系统焦外区域的横向分辨率,利用基于虚拟探测器概念的合成孔径聚焦技术(SAFT)的频域重建算法来降低所需的计算负载和时间。利用体内和离体目标验证了所提出的成像系统的性能。从深度范围为 1.2mm 的几个钨丝中获得的实验结果表明,横向分辨率从 55- [Formula: see text] 提高到 25- [Formula: see text],并且在提出的系统中 SNR 从 16-22dB 提高到 27-33dB。

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