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Enhancing Image Quality of Photoacoustic Tomography Using Sub-Pitch Array Translation Approach: Simulation and Experimental Validation

机译:使用子间距阵列转换方法提高光声层析成像的图像质量:仿真和实验验证

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Objective: The purpose of this paper is to present a more convenient and practical alternate way of increasing the lateral discrete array sampling while using a typical. pitch linear array transducer at receive for photoacoustic tomography (PAT) application. Methods: We have employed a linear translation-based approach, in which the array transducer is translated by sub-pitch amount to create an augmented RF frame data having denser lateral spatial sampling. The denser lambda/2 and lambda/4 pitch data were reconstructed and compared against conventional. pitch reconstructed PAT image using simulation and tissue mimicking phantom experiments in terms of improvements in resolution and contrast. Results: The results from experiments demonstrate a 34.48% improvement in lateral resolution (LR), measured in terms of full-width at half-maximum of the lateral profile of point spread function, and a maximum of 7-dB improvement in contrast is achieved while using a lambda/2-pitch configuration when compared to the conventional lambda-pitch configuration. Conclusion: It was demonstrated that lambda/2- and lambda/4-pitch configurations result in better LR and contrast than lambda-pitch configuration. Significance: Based on the results obtained, the proposed method has the potential to serve as an easy-to-integrate and simple way of achieving better image quality without requiring to increase the system complexity with existing transducer array probe technology in regular clinical scanners.
机译:目的:本文的目的是提出一种使用常规样本时增加横向离散阵列采样的更方便实用的替代方法。接收器上的节距线性阵列换能器,用于光声层析成像(PAT)应用。方法:我们采用了基于线性平移的方法,其中将阵列换能器按子螺距量进行平移,以创建具有更密集的横向空间采样的增强RF帧数据。重构了更密集的λ/ 2和λ/ 4音高数据,并与常规数据进行了比较。利用模拟和组织模拟体模实验进行音高重建的PAT图像,以提高分辨率和对比度。结果:实验结果表明,以点扩散函数的横向轮廓的半最大值的全角宽度衡量,横向分辨率(LR)改善了34.48%,并且对比度最大提高了7 dB与传统的lambda-pitch配置相比,则使用lambda / 2-pitch配置。结论:已经证明,λ/ 2和λ/ 4间距配置比λ间距配置具有更好的LR和对比度。启示:基于获得的结果,所提出的方法有可能作为一种易于集成和简单的方式来获得更好的图像质量,而无需使用常规临床扫描仪中的现有换能器阵列探针技术来增加系统复杂性。

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