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使用功能性纳米颗粒的光声成像的潜在应用:全面概述。

Potential applications for photoacoustic imaging using functional nanoparticles: A comprehensive overview.

作者信息

Neelamraju Pavan Mohan, Gundepudi Karthikay, Sanki Pradyut Kumar, Busi Kumar Babu, Mistri Tapan Kumar, Sangaraju Sambasivam, Dalapati Goutam Kumar, Ghosh Krishna Kanta, Ghosh Siddhartha, Ball Writoban Basu, Chakrabortty Sabyasachi

机构信息

Department of Electronics and Communication Engineering, SRM University AP Andhra Pradesh, Andhra Pradesh, 522240, India.

Department of Chemistry, SRM University AP Andhra Pradesh, Andhra Pradesh, 522240, India.

出版信息

Heliyon. 2024 Jul 17;10(15):e34654. doi: 10.1016/j.heliyon.2024.e34654. eCollection 2024 Aug 15.

Abstract

This paper presents a comprehensive overview of the potential applications for Photo-Acoustic (PA) imaging employing functional nanoparticles. The exploration begins with an introduction to nanotechnology and nanomaterials, highlighting the advancements in these fields and their crucial role in shaping the future. A detailed discussion of the various types of nanomaterials and their functional properties sets the stage for a thorough examination of the fundamentals of the PA effect. This includes a thorough chronological review of advancements, experimental methodologies, and the intricacies of the source and detection of PA signals. The utilization of amplitude and frequency modulation, design of PA cells, pressure sensor-based signal detection, and quantification methods are explored in-depth, along with additional mechanisms induced by PA signals. The paper then delves into the versatile applications of photoacoustic imaging facilitated by functional nanomaterials. It investigates the influence of nanomaterial shape, size variation, and the role of composition, alloys, and hybrid materials in harnessing the potential of PA imaging. The paper culminates with an insightful discussion on the future scope of this field, focusing specifically on the potential applications of photoacoustic (PA) effect in the domain of biomedical imaging and nanomedicine. Finally, by providing the comprehensive overview, the current work provides a valuable resource underscoring the transformative potential of PA imaging technique in biomedical research and clinical practice.

摘要

本文全面概述了采用功能性纳米颗粒的光声(PA)成像的潜在应用。探索始于对纳米技术和纳米材料的介绍,突出了这些领域的进展及其在塑造未来方面的关键作用。对各种类型的纳米材料及其功能特性的详细讨论为深入研究PA效应的基本原理奠定了基础。这包括对进展、实验方法以及PA信号的源和检测的复杂性进行全面的按时间顺序的回顾。深入探讨了幅度和频率调制的利用、PA细胞的设计、基于压力传感器的信号检测和量化方法,以及PA信号诱导的其他机制。然后,本文深入研究了功能性纳米材料促进的光声成像的多种应用。研究了纳米材料形状、尺寸变化的影响,以及成分、合金和混合材料在利用PA成像潜力方面的作用。本文最后对该领域的未来范围进行了有见地的讨论,特别关注光声(PA)效应在生物医学成像和纳米医学领域的潜在应用。最后,通过提供全面的概述,当前的工作提供了一份宝贵的资源,强调了PA成像技术在生物医学研究和临床实践中的变革潜力。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/86f9/11334826/c7913dd2a35f/ga1.jpg

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