Research and Business Development Division, CYBERDYNE INC., Stationsplein 45, A4.004, 3013 AK Rotterdam, The Netherlands.
School of Biomedical Engineering& Imaging Sciences, King's College London, King's Health Partners, St Thomas' Hospital, London SE1 7EH, UK.
Sensors (Basel). 2020 Oct 29;20(21):6173. doi: 10.3390/s20216173.
Photoacoustic imaging is a hybrid imaging modality that offers the advantages of optical (spectroscopic contrast) and ultrasound imaging (scalable spatial resolution and imaging depth). This promising modality has shown excellent potential in a wide range of preclinical and clinical imaging and sensing applications. Even though photoacoustic imaging technology has matured in research settings, its clinical translation is not happening at the expected pace. One of the main reasons for this is the requirement of bulky and expensive pulsed lasers for excitation. To accelerate the clinical translation of photoacoustic imaging and explore its potential in resource-limited settings, it is of paramount importance to develop portable and affordable light sources that can be used as the excitation light source. In this review, we focus on the following aspects: (1) the basic theory of photoacoustic imaging; (2) inexpensive light sources and different implementations; and (3) important preclinical and clinical applications, demonstrated using affordable light source-based photoacoustics. The main focus will be on laser diodes and light-emitting diodes as they have demonstrated promise in photoacoustic tomography-the key technological developments in these areas will be thoroughly reviewed. We believe that this review will be a useful opus for both the beginners and experts in the field of biomedical photoacoustic imaging.
光声成像是一种混合成像模式,结合了光学(光谱对比度)和超声成像(可扩展的空间分辨率和成像深度)的优势。这种很有前途的模式在广泛的临床前和临床成像和传感应用中显示出了极好的潜力。尽管光声成像技术在研究环境中已经成熟,但它的临床转化并没有按照预期的速度进行。造成这种情况的一个主要原因是需要体积庞大且昂贵的脉冲激光器来激发。为了加速光声成像的临床转化并探索其在资源有限环境中的潜力,开发便携式和经济实惠的光源作为激发光源至关重要。在这篇综述中,我们重点介绍以下几个方面:(1)光声成像的基本理论;(2)廉价光源和不同的实现方式;(3)使用经济实惠光源的重要临床前和临床应用。重点将放在激光二极管和发光二极管上,因为它们在光声断层扫描中显示出了前景——这些领域的关键技术发展将得到彻底审查。我们相信,这篇综述将对生物医学光声成像领域的初学者和专家都有帮助。