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在光声显微镜的反投影方案中,使用空间可变滤波对空间脉冲响应进行全频率校正。

Full-frequency correction of spatial impulse response in back-projection scheme using space-variant filtering for optoacoustic mesoscopy.

作者信息

Lu Tong, Wang Yihan, Li Jiao, Prakash Jaya, Gao Feng, Ntziachristos Vasilis

机构信息

College of Precision Instrument and Optoelectronics Engineering, Tianjin University, Tianjin, 300072, China.

School of Life Science and Technology, Xidian University, Xi'an, 710071, China.

出版信息

Photoacoustics. 2020 May 21;19:100193. doi: 10.1016/j.pacs.2020.100193. eCollection 2020 Sep.

Abstract

The fidelity and quality of reconstructed images in optoacoustic mesoscopy (OPAM) can be significantly improved by considering the spatial impulse response (SIR) of the employed focused transducer into reconstruction. However, the traditional method fully taking the SIR into account can hardly meet the data-intensive requirements of high resolution OPAM because of excessive memory and time consumption. Herein, a modified back-projection method using a space-variant filter for full-frequency correction of the SIR is presented, and applied to the OPAM system with a sphere-focused transducer. The proposed method can readily manage the large datasets of the OPAM and effectively reduce the extra time consumption. The performance of the proposed method is showcased by simulations and experiments of phantoms and biological tissue. The results demonstrate that the modified back-projection method exhibits better image fidelity, resolution and contrast compared to the common and weighted back-projection methods that are not or not fully accounting for the SIR.

摘要

通过在重建过程中考虑所使用的聚焦换能器的空间脉冲响应(SIR),可以显著提高光声显微术(OPAM)中重建图像的保真度和质量。然而,由于内存和时间消耗过大,传统的充分考虑SIR的方法很难满足高分辨率OPAM的数据密集型要求。在此,提出了一种使用空间可变滤波器对SIR进行全频校正的改进型反投影方法,并将其应用于带有球形聚焦换能器的OPAM系统。该方法可以轻松处理OPAM的大数据集,并有效减少额外的时间消耗。通过对体模和生物组织的模拟和实验展示了该方法的性能。结果表明,与未考虑或未充分考虑SIR的普通反投影方法和加权反投影方法相比,改进型反投影方法具有更好的图像保真度、分辨率和对比度。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/a669/7264078/2926a84a86da/gr1.jpg

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