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Newly-Engineered Materials for Bio-Imaging Technology: A Focus on the Hybrid System of Ultrasound and Fluorescence

机译:用于生物成像技术的新型工程材料:聚焦于超声和荧光的混合系统

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摘要

As an emerging technique, ultrasound-modulated fluorescence (UMF), or ultrasound switchable fluorescence (USF) bioimaging has shown promising features to produce deep-tissue and high-resolution fluorescence imaging for biomedical research and health diagnosis. The success of UMF or USF heavily relies on the design of their contrast agents (CAs). We herein surveyed recent advances in the development of such unique CAs, including configuration, mechanism, stability, sensitivity, and selectivity. Meanwhile, UMF or USF instrumentation has emerged as developmental breakthrough technologies to existing bio-imaging techniques. The best performance of UMF or USF bio-imaging requires an interactive response between CAs and the instrument. In this review, the description of UMF or USF instrumentation are also included for clarification and better understanding. Finally, the UMF and USF's performance in bioimaging is evaluated based on signal-to-noise ratio, resolution, imaging depth and speed, using photoacoustic imaging (PAI) as a standard, a well-developed technique of hybrid bio-imaging. Unlike PAI, UMF or USF is still in its early stage. Although results demonstrated a proof-of-concept landmark being reached, significant efforts are needed to improve the performance of UMF or USF.
机译:作为一种新兴技术,超声调制荧光(UMF)或超声可切换荧光(USF)生物成像已显示出有希望的特征,可产生用于生物医学研究和健康诊断的深层组织和高分辨率荧光成像。 UMF或USF的成功很大程度上取决于其造影剂(CA)的设计。我们在此调查了此类独特CA开发的最新进展,包括配置,机制,稳定性,灵敏度和选择性。同时,UMF或USF仪器已经成为现有生物成像技术的发展突破性技术。 UMF或USF生物成像的最佳性能需要CA与仪器之间的交互响应。在此审查中,还包括了UMF或USF仪器的描述,以使您更清楚和更好地理解。最后,以光声成像(PAI)为标准,基于发达的混合生物成像技术,基于信噪比,分辨率,成像深度和速度评估了UMF和USF在生物成像方面的性能。与PAI不同,UMF或USF仍处于早期阶段。尽管结果表明已达到概念验证的里程碑,但仍需要做出巨大的努力来提高UMF或USF的性能。

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