CMEMS-UMinho, University of Minho, 4710-057 Braga, Portugal.
Sensors (Basel). 2022 Dec 6;22(23):9541. doi: 10.3390/s22239541.
The photoacoustic effect is an emerging technology that has sparked significant interest in the research field since an acoustic wave can be produced simply by the incidence of light on a material or tissue. This phenomenon has been extensively investigated, not only to perform photoacoustic imaging but also to develop highly miniaturized ultrasound probes that can provide biologically meaningful information. Therefore, this review aims to outline the materials and their fabrication process that can be employed as photoacoustic targets, both biological and non-biological, and report the main components' features to achieve a certain performance. When designing a device, it is of utmost importance to model it at an early stage for a deeper understanding and to ease the optimization process. As such, throughout this article, the different methods already implemented to model the photoacoustic effect are introduced, as well as the advantages and drawbacks inherent in each approach. However, some remaining challenges are still faced when developing such a system regarding its fabrication, modeling, and characterization, which are also discussed.
光声效应是一种新兴技术,自从光照射到材料或组织上就能产生声波以来,它在研究领域引起了极大的兴趣。人们对这一现象进行了广泛的研究,不仅用于进行光声成像,还用于开发能够提供有生物学意义信息的高度微型化超声探头。因此,本综述旨在概述可作为光声靶的材料及其制造工艺,包括生物和非生物材料,并报告主要组件的特征,以实现特定的性能。在设计设备时,早期对其进行建模对于深入理解和简化优化过程非常重要。因此,在本文中,介绍了已经实施的不同方法来模拟光声效应,以及每种方法的优点和缺点。然而,在开发这样的系统时,仍然面临着一些挑战,例如其制造、建模和特性化,这些问题也在本文中进行了讨论。