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一种用于扩展焦域光声显微镜的椭球聚焦超声换能器。

An Ellipsoidal Focused Ultrasound Transducer for Extend-Focus Photoacoustic Microscopy.

出版信息

IEEE Trans Biomed Eng. 2021 Dec;68(12):3748-3752. doi: 10.1109/TBME.2021.3078729. Epub 2021 Nov 19.

Abstract

OBJECTIVE

Limited by spherical focused ultrasound transducer (SUT) with a high acoustic numerical aperture, photoacoustic microscopy (PAM) suffers a rapidly degrading sensitivity and lateral resolution as increased depth. In this study, an ellipsoidal focused ultrasound transducer (EUT) was developed to address the above restriction via providing high sensitivity and lateral resolution over a large depth of field (DOF).

METHODS

To fabricate the EUT, the piezoelectric element was laminated onto a curved steel surface for self-focusing (the ellipsoidal continuous-focus geometry was employed instead of the spherical single-focus one). Additionally, phantoms and in vivo animal experiments were performed by an extend-focus PAM equipped with EUT to characterize its performance.

RESULTS

The EUT involved over 30 MHz center frequency and -6 dB bandwidth of 124% with a resolution-invariant focal depth of 1.39 mm, more than 3 times the DOF of the SUT.

CONCLUSION

The in vivo imaging results demonstrated that the EUT was capable of extending the focal depth to get rid of the restriction of the visual field, while the DOF of the SUT was limited by the nature of spherical geometry.

SIGNIFICANCE

The EUT markedly enhances the image quality at different imaging depths, which has great potential for promoting the biomedical development of in vivo rapid-noninvasive PAM.

摘要

目的

由于球形聚焦超声换能器(SUT)的声数值孔径较高,光声显微镜(PAM)的灵敏度和横向分辨率随着深度的增加而迅速降低。在这项研究中,开发了一种椭球形聚焦超声换能器(EUT),通过在大景深(DOF)内提供高灵敏度和高横向分辨率来解决上述限制。

方法

为了制造 EUT,将压电元件层压到弯曲的钢表面上以实现自聚焦(采用了椭球连续聚焦几何形状,而不是球形单焦点形状)。此外,通过配备 EUT 的扩展焦点 PAM 进行了 phantom 和体内动物实验,以表征其性能。

结果

EUT 的中心频率超过 30 MHz,-6 dB 带宽为 124%,分辨率不变的焦深为 1.39mm,是 SUT 的景深的 3 倍以上。

结论

体内成像结果表明,EUT 能够扩展焦点深度,摆脱视场的限制,而 SUT 的 DOF 则受到球形几何形状的限制。

意义

EUT 显著提高了不同成像深度的图像质量,这对于促进体内快速无创 PAM 的生物医学发展具有很大的潜力。

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