Assessment of a Single-Element Scanning System for Enhanced Photoacoustic Imaging of Brain Hemorrhage.

Juliana Benavides Lara, Ravi Prakash, Kamran Avanaki
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Abstract

The use of photoacoustic brain imaging for hemorrhage detection holds significant clinical importance. This study focuses on the performance of sensitivity and detection capabilities of a single-element scanning system, considering the remarkable signal-to-noise ratio of photoacoustic signals generated by a single-element transducer. By employing blood vessel-like phantoms and ex vivo brain phantoms, we demonstrated the superior efficacy of the single-element scanning method over the transducer array system in the context of brain hemorrhage detection. This research highlights the potential for enhancing hemorrhage detection sensitivity through careful design and optimization of the proposed method, thereby increasing its viability for clinical application.

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评估用于脑出血增强光声成像的单元素扫描系统
光声脑成像在出血检测中的应用具有重要的临床意义。考虑到单元件换能器产生的光声信号具有显著的信噪比,本研究重点研究了单元件扫描系统的灵敏度和检测能力。通过使用血管样幻象和离体脑幻象,我们证明了单元素扫描方法在脑出血检测方面优于传感器阵列系统。本研究强调了通过精心设计和优化所提出的方法来提高出血检测灵敏度的潜力,从而提高了其临床应用的可行性。
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