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联合多波长光声和平面波超声成像用于探测动态相变化造影剂。

Combined Multiwavelength Photoacoustic and Plane-Wave Ultrasound Imaging for Probing Dynamic Phase-Change Contrast Agents.

出版信息

IEEE Trans Biomed Eng. 2019 Feb;66(2):595-598. doi: 10.1109/TBME.2018.2849077. Epub 2018 Jun 20.

Abstract

OBJECTIVE

The purpose of this study was to introduce combined multiwavelength photoacoustic (PA) and plane-wave ultrasound (US) imaging referred to as mwPA/pwUS imaging capable of probing the rapid dynamic behavior of optically activated phase-change contrast agents.

METHODS

A dedicated mwPA/pwUS imaging sequence was developed based on a programmable US system synchronized with a tunable laser to irradiate tissue with laser pulses at desired optical wavelengths and to acquire post laser pulse PA images followed by ultrafast plane-wave US images. To evaluate the mwPA/pwUS imaging, a capillary filled with optically responsive perfluorohexane nanodroplets (PFHnDs) containing a dye with the peak absorption at 760 nm was imaged with optical wavelengths ranging from 700 to 940 nm. The differences between post-laser ultrafast US images [i.e., differential US (ΔUS)] were taken to visualize the recondensation dynamics of PFHnDs at each wavelength.

RESULTS

The PA images of PFHnDs showed higher contrast near 760 nm wavelength, corresponding to the peak absorption of the dye encapsulated in the PFHnDs. Moreover, the ΔUS signals immediately after 760-nm pulsed laser irradiation were also high due to the increased US contrast associated with vaporized PFHnDs.

CONCLUSION

The mwPA/pwUS imaging allowed for the US-based optical spectroscopic characterization of PFHnDs and their dynamics.

SIGNIFICANCE

The introduced mwPA/pwUS imaging sequence can be used in various clinical applications where both spectroscopic PA imaging of endogenous and/or exogenous chromophores and ultrafast US imaging of phase-change nanodroplets are desired.

摘要

目的

本研究旨在介绍一种称为多波长光声(PA)和平面波超声(US)组合成像(mwPA/pwUS 成像)的方法,该方法能够探测光激活相变型造影剂的快速动态行为。

方法

基于与可调谐激光器同步的可编程 US 系统,开发了一种专用的 mwPA/pwUS 成像序列,以在所需的光学波长下用激光脉冲照射组织,并在激光脉冲后获取 PA 图像,随后获取超快平面波 US 图像。为了评估 mwPA/pwUS 成像,用光学波长范围从 700nm 至 940nm 对充满对光响应的全氟己烷纳米液滴(PFHnDs)的毛细管进行成像,该液滴中含有在 760nm 处具有最大吸收峰的染料。在每个波长下,通过获取激光后超快 US 图像的差异(即差分 US(ΔUS))来可视化 PFHnDs 的再冷凝动力学。

结果

PFHnDs 的 PA 图像在接近 760nm 波长处显示出更高的对比度,这对应于包裹在 PFHnDs 中的染料的最大吸收峰。此外,由于与蒸发的 PFHnDs 相关的 US 对比度增加,在 760nm 脉冲激光照射后立即获得的 ΔUS 信号也很高。

结论

mwPA/pwUS 成像允许对 PFHnDs 及其动力学进行基于 US 的光学光谱特征分析。

意义

所介绍的 mwPA/pwUS 成像序列可用于各种临床应用,其中需要对内源性和/或外源性色团进行光谱 PA 成像,以及对相变型纳米液滴进行超快 US 成像。

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