体内反射太赫兹成像用于非侵入性皮肤诊断:局部回顾。

IF 1.6 Q3 RADIOLOGY, NUCLEAR MEDICINE & MEDICAL IMAGING
Naveen Sharma, Swetha Duvuri, Ashu Rastogi, Sarbhjeet Singh Singh, Neerja Garg, Virendra Kumar
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引用次数: 0

摘要

医学成像已经彻底改变了疾病检测和病人护理;然而,传统的方式,如磁共振成像(MRI)、计算机断层扫描(CT)、超声和光学成像在灵敏度、穿透深度和安全性方面存在固有的局限性。太赫兹(THz)成像是一种新兴的非电离技术,对含水量和分子组成具有高灵敏度,特别适用于皮肤诊断。本文对透射模式和反射模式太赫兹成像进行了比较分析,重点介绍了两种主要的反射技术——太赫兹脉冲成像(THz- pi)和连续波太赫兹成像(CW-THz)。对其工作原理、益处、局限性和临床相关性进行了批判性评估。反射模式太赫兹成像显示了生物组织分析的强大潜力,为检测皮肤恶性肿瘤、评估水合水平、监测伤口愈合和评估经皮药物传递提供高对比度。尽管在穿透深度和实时成像方面仍面临挑战,但基于人工智能的分析、多模态集成和系统小型化方面的进步正在逐步增强其临床适用性。本综述为旨在将太赫兹成像整合到皮肤诊断中的研究人员和临床医生提供了全面的资源。它突出了太赫兹技术在促进早期疾病检测、实现个性化治疗策略和推进生物医学成像未来方面的变革潜力。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
In-Vivo Reflection Terahertz Imaging for Non-Invasive Skin Diagnostics: A Topical Review.

Medical imaging has revolutionized disease detection and patient care; however, conventional modalities such as Magnetic Resonance Imaging (MRI), Computed Tomography (CT), ultrasound, and optical imaging have inherent limitations in sensitivity, penetration depth, and safety. Terahertz (THz) imaging is an emerging, non-ionizing technique that offers high sensitivity to water content and molecular composition, making it particularly suitable for skin diagnostics. This review provides a comparative analysis of transmission and reflection-mode THz imaging, with a detailed focus on the two primary reflection techniques-Terahertz Pulsed Imaging (THz-PI) and Continuous-Wave Terahertz Imaging (CW-THz). Their working principles, benefits, limitations, and clinical relevance are critically evaluated. Reflection-mode THz imaging shows strong potential for biological tissue analysis, offering high contrast for detecting skin malignancies, assessing hydration levels, monitoring wound healing, and evaluating transdermal drug delivery. Despite ongoing challenges in penetration depth and real-time imaging, advancements in AI-based analysis, multimodal integration, and system miniaturization are progressively enhancing its clinical applicability. This review serves as a comprehensive resource for researchers and clinicians aiming to integrate THz imaging into skin diagnostics. It highlights the transformative potential of THz technology in facilitating early disease detection, enabling personalized treatment strategies, and advancing the future of biomedical imaging.

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来源期刊
Biomedical Physics & Engineering Express
Biomedical Physics & Engineering Express RADIOLOGY, NUCLEAR MEDICINE & MEDICAL IMAGING-
CiteScore
2.80
自引率
0.00%
发文量
153
期刊介绍: BPEX is an inclusive, international, multidisciplinary journal devoted to publishing new research on any application of physics and/or engineering in medicine and/or biology. Characterized by a broad geographical coverage and a fast-track peer-review process, relevant topics include all aspects of biophysics, medical physics and biomedical engineering. Papers that are almost entirely clinical or biological in their focus are not suitable. The journal has an emphasis on publishing interdisciplinary work and bringing research fields together, encompassing experimental, theoretical and computational work.
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