用于测量聚焦区域浓度变化的多波长聚焦超声光学系统

Triana M. Rahayu, Mohammadreza Omidali, Zuomin Zhao, T. Myllylä
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引用次数: 0

摘要

正在开发的多波长聚焦超声(FUS)-光学技术旨在为实时测量聚焦区域的组织特性提供空间精确测量应用。但是,由于多种因素的影响,例如不同光源的集成、光束和声束在模型上的定位以及同步等,建立这样一个系统是相当具有挑战性的。在本报告中,我们将介绍设计多波长 FUS 光学系统的第一步,该系统可测量聚焦区域内与波长相关的变化。作为测试物质,我们使用了内脂溶液、牛奶和不同浓度的混合物。由于光吸收率与波长有关,不同波长的标记光子强度的预期信号峰高部分取决于浓度。此外,检测到的 FUS 调制振幅与聚焦区域的样品浓度有关。本研究的目的是描述不同波长的 FUS 光学信号峰高与不同水平的样品浓度之间的关系。
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Multiwavelength focused ultrasound-optics system for measuring concentration changes in the focused area
The multiwavelength focused ultrasound (FUS)-optic technique in development aims to provide application for spatially accurate measurements of tissue properties in the focus area in real-time. But setting up such a system is quite challenging due to several factors, for instance the integration of different optical sources, positioning of the optical and acoustic beams on the phantom, and synchronization. In this presentation, we present first steps towards designing a multiwavelength FUS-optic system that measures wavelength dependent changes in the focus area. As a test substance, we used intralipid solution, milk, and the mixture with different levels of concentration. The expected signal peak heights of tagged photons intensities of different wavelengths are partly dependent on the concentration due to the wavelength-dependent optical absorbance. Furthermore, detected FUS modulated amplitudes are in relation with the concentration of sample in focus area. The aim of this study is to characterize the relationship between FUS-optic signal peak heights and the different levels of sample concentration at different wavelengths.
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