用于临床前研究的双光声/超声技术:现状和未来趋势。

IF 3.3 3区 医学 Q2 ENGINEERING, BIOMEDICAL
Mailyn Pérez-Liva, María Alonso de Leciñana, María Gutiérrez-Fernández, Jorge Camacho Sosa Dias, Jorge F Cruza, Jorge Rodríguez-Pardo, Iván García-Suárez, Fernando Laso-García, Joaquin L Herraiz, Luis Elvira Segura
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引用次数: 0

摘要

光声成像(PAI)通过集成光学和超声模式,将高空间分辨率与深层组织穿透相结合,使其成为生物医学研究中的变革性工具。本文综述了光声/超声双成像(PA/US)技术的现状,重点介绍了其在临床前研究中的应用。它详细介绍了光激发策略的进展,包括层析成像和微观模式,脉冲激光和替代光源的创新,以及超声仪器。该综述进一步探讨了临床前方法,包括专用仪器、信号处理和PA/US系统必不可少的数据分析技术。讨论的主要应用包括血管、微循环和组织灌注的可视化;炎症的诊断和监测;评估感染、动脉粥样硬化、烧伤、愈合和疤痕形成;评估肝脏和肾脏疾病;监测癫痫和神经退行性疾病;脑病与子痫前期的研究细胞治疗监测;以及肿瘤检测、分期和复发监测。分析了与成像深度、分辨率、成本和造影剂转化到临床实践相关的挑战,以及高速采集、人工智能驱动的重建和创新的光传递方法的进步。虽然临床翻译仍然很复杂,但这篇综述强调了临床前研究在解决基本生物医学问题和评估新成像策略方面的关键作用。最后,本综述深入探讨了双PA/US成像的未来趋势,强调了其在临床前发现与临床应用之间的桥梁潜力,并推动了诊断、治疗监测和个性化医疗的进步。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Dual photoacoustic/ultrasound technologies for preclinical research: current status and future trends.

Photoacoustic (PA) imaging, by integrating optical and ultrasound (US) modalities, combines high spatial resolution with deep tissue penetration, making it a transformative tool in biomedical research. This review presents a comprehensive analysis of the current status of dual PA/US imaging technologies, emphasising their applications in preclinical research. It details advancements in light excitation strategies, including tomographic and microscopic modalities, innovations in pulsed laser and alternative light sources, and US instrumentation. The review further explores preclinical methodologies, encompassing dedicated instrumentation, signal processing, and data analysis techniques essential for PA/US systems. Key applications discussed include the visualisation of blood vessels, micro-circulation, and tissue perfusion; diagnosis and monitoring of inflammation; evaluation of infections, atherosclerosis, burn injuries, healing, and scar formation; assessment of liver and renal diseases; monitoring of epilepsy and neurodegenerative conditions; studies on brain disorders and preeclampsia; cell therapy monitoring; and tumour detection, staging, and recurrence monitoring. Challenges related to imaging depth, resolution, cost, and the translation of contrast agents to clinical practice are analysed, alongside advancements in high-speed acquisition, artificial intelligence-driven reconstruction, and innovative light-delivery methods. While clinical translation remains complex, this review underscores the crucial role of preclinical studies in unravelling fundamental biomedical questions and assessing novel imaging strategies. Ultimately, this review delves into the future trends of dual PA/US imaging, highlighting its potential to bridge preclinical discoveries with clinical applications and drive advances in diagnostics, therapeutic monitoring, and personalised medicine.

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来源期刊
Physics in medicine and biology
Physics in medicine and biology 医学-工程:生物医学
CiteScore
6.50
自引率
14.30%
发文量
409
审稿时长
2 months
期刊介绍: The development and application of theoretical, computational and experimental physics to medicine, physiology and biology. Topics covered are: therapy physics (including ionizing and non-ionizing radiation); biomedical imaging (e.g. x-ray, magnetic resonance, ultrasound, optical and nuclear imaging); image-guided interventions; image reconstruction and analysis (including kinetic modelling); artificial intelligence in biomedical physics and analysis; nanoparticles in imaging and therapy; radiobiology; radiation protection and patient dose monitoring; radiation dosimetry
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