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高数值孔径光声显微镜,灵敏度提高。

High acoustic numerical aperture photoacoustic microscopy with improved sensitivity.

出版信息

Opt Lett. 2020 Feb 1;45(3):628-631. doi: 10.1364/OL.384691.

Abstract

Limited by the numerical aperture of ultrasonic detection, optical resolution photoacoustic microscopy (OR-PAM) has not achieved optimal sensitivity. To address this problem, we have developed a high acoustic numerical aperture ($ {\sim} 0.74 $∼0.74) OR-PAM (HNA-OR-PAM). Via engineering the acoustic lens, we implement the highest acoustic numerical aperture that a spherical concave lens can achieve. The sensitivity of HNA-OR-PAM is improved to around 160%-the state-of-the-art OR-PAM. Without averaging, the new system can image oxygen saturation in vivo with only 10-nJ pulse energy. The improved sensitivity allows us to image weaker absorbers, penetrate deeper, and reduce nonlinear effects induced by high pulse energy. Moreover, the photoacoustic view angle is augmented to 51.8 deg and makes tilted features more visible. We validate the improved view angle in both a phantom study and brain imaging.

摘要

受超声检测数值孔径的限制,光学分辨率光声显微镜(OR-PAM)尚未达到最佳灵敏度。为了解决这个问题,我们开发了一种高声波数值孔径(∼0.74)OR-PAM(HNA-OR-PAM)。通过对声透镜进行工程设计,我们实现了球形凹透镜所能达到的最高声波数值孔径。HNA-OR-PAM 的灵敏度提高到了 160%左右,是目前最先进的 OR-PAM。在不进行平均的情况下,新系统仅用 10-nJ 脉冲能量即可对体内氧饱和度进行成像。灵敏度的提高使我们能够对较弱的吸收体进行成像,穿透更深,并减少由高脉冲能量引起的非线性效应。此外,光声视角增加到 51.8 度,使倾斜特征更加明显。我们在体模研究和大脑成像中验证了改进的视角。

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