Terahertz Spectroscopy

太赫兹光谱学
  • 文章类型: Journal Article
    草药(HM),来源于各种治疗植物,因其在治疗疾病方面的非凡功效而引起了相当大的关注。然而,包括改良品种选择在内的许多问题,危险残留物检测,和混合物管理会影响整个生产过程中的草药质量。因此,一个实用的,快速,无损检测技术是很有必要的。太赫兹(THz)光谱,低能量,穿透力,和指纹特征,成为草药质量评价的首选方法。我们的审查有三个部分。THz技术,数据处理,和建模方法在第一部分中进行了介绍。三个主要应用(真实性,组合物和活性成分,和原产地检测)在工业加工和销售中的药用植物质量检测中的THz在第二部分中进行了详细介绍。第三部分介绍了该领域众所周知的应用和进步的全面调查和展望。本文旨在为深入THz在中草药植物中的应用研究带来新的启示。
    Herbal medicine (HM), derived from various therapeutic plants, has garnered considerable attention for its remarkable effectiveness in treating diseases. However, numerous issues including improved varieties selection, hazardous residue detection, and concoction management affect herb quality throughout the manufacturing process. Therefore, a practical, rapid, nondestructive detection technology is necessary. Terahertz (THz) spectroscopy, with low energy, penetration, and fingerprint features, becomes preferable method for herb quality appraisal. There are three parts in our review. THz techniques, data processing, and modeling methods were introduced in Part I. Three primary applications (authenticity, composition and active ingredients, and origin detection) of THz in medicinal plants quality detection in industrial processing and marketing were detailed in Part II. A thorough investigation and outlook on the well-known applications and advancements of this field were presented in Part III. This review aims to bring new enlightenment to the in-depth THz application research in herbal medicinal plants.
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  • 文章类型: Journal Article
    传染病是对现代社会最严重的威胁之一。当前基于基因组测试的病毒感染检测方法需要试剂和专门的实验室。新的病毒检测方法的理想特征是非侵入性,实现的简单性,实时,低成本和无标签检测。分子生物标记物的检测和分析有两组方法:(i)样品物理分离成单个分子组分及其鉴定,和(ii)通过激光光谱法进行样品含量分析。光谱数据的变化通常较小。它需要使用复杂的分析方法,如机器学习。这篇综述探讨了激光光谱学和机器学习方法在病毒感染检测应用中的当前技术水平。
    Infectious diseases are among the most severe threats to modern society. Current methods of virus infection detection based on genome tests need reagents and specialized laboratories. The desired characteristics of new virus detection methods are noninvasiveness, simplicity of implementation, real-time, low cost and label-free detection. There are two groups of methods for molecular biomarkers\' detection and analysis: (i) a sample physical separation into individual molecular components and their identification, and (ii) sample content analysis by laser spectroscopy. Variations in the spectral data are typically minor. It requires the use of sophisticated analytical methods like machine learning. This review examines the current technological level of laser spectroscopy and machine learning methods in applications for virus infection detection.
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  • 文章类型: Journal Article
    病毒流行如埃博拉病毒,寨卡病毒,MERS-冠状病毒,在过去的十年中,其他人对人类造成了严重破坏。此外,一种冠状病毒(SARS-CoV-2)大流行及其不断进化的突变体已经变得如此致命,以至于它们迫使医疗保健的整个技术进步陷入危险。检测这些病毒的传统方法在某种程度上已经取得了成功,但是它们很贵,耗时,需要专门的人力资源。基于太赫兹的生物传感器有可能引领低成本、非侵入性,和快速病毒检测。本文综述了基于太赫兹技术的病毒生物传感器的最新进展,病毒颗粒,和抗原检测,以及该领域即将到来的研究方向。
    Virus epidemics such as Ebola virus, Zika virus, MERS-coronavirus, and others have wreaked havoc on humanity in the last decade. In addition, a coronavirus (SARS-CoV-2) pandemic and its continuously evolving mutants have become so deadly that they have forced the entire technical advancement of healthcare into peril. Traditional ways of detecting these viruses have been successful to some extent, but they are costly, time-consuming, and require specialized human resources. Terahertz-based biosensors have the potential to lead the way for low-cost, non-invasive, and rapid virus detection. This review explores the latest progresses in terahertz technology-based biosensors for the virus, viral particle, and antigen detection, as well as upcoming research directions in the field.
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  • 文章类型: Journal Article
    THz辐射的非电离和非侵入性,结合其对水的高敏感性,多年来,THz成像和光谱学对体内生物医学应用非常有吸引力。其中,由于生物样品中水的高衰减引起的THz波的穿透深度短,因此主要研究皮肤。然而,仍然需要描述THz-皮肤相互作用的完整皮肤模型。这对于从测量的THz光谱揭示皮肤的光学特性也是至关重要的。使用正确的模型至关重要,不仅仅是为了确保不同作品之间的兼容性,但更重要的是保证数据和结论的可靠性。因此,在这次审查中,我们总结了应用于太赫兹系统中皮肤的模型,我们比较它们的适应性,准确度,和限制。我们表明,大多数模型都试图提取皮肤内部的水合作用,而各向异性模型也显示了角质层中皮肤结构的变化。
    The non-ionizing and non-invasive nature of THz radiation, combined with its high sensitivity to water, has made THz imaging and spectroscopy highly attractive for in vivo biomedical applications for many years. Among them, the skin is primarily investigated due to the short penetration depth of THz waves caused by the high attenuation by water in biological samples. However, a complete model of skin describing the THz-skin interaction is still needed. This is also fundamental to reveal the optical properties of the skin from the measured THz spectrum. It is crucial that the correct model is used, not just to ensure compatibility between different works, but more importantly to ensure the reliability of the data and conclusions. Therefore, in this review, we summarize the models applied to skin used in the THz regime, and we compare their adaptability, accuracy, and limitations. We show that most of the models attempt to extract the hydration profile inside the skin while there is also the anisotropic model that displays skin structural changes in the stratum corneum.
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  • 文章类型: Journal Article
    Terahertz (THz) radiation has demonstrated a great potential in biomedical applications over the past three decades, mainly due to its non-invasive and label-free nature. Among all biological specimens, skin tissue is an optimal sample for the application of THz-based methods because it allows for overcoming some intrinsic limitations of the technique, such as a small penetration depth (0.1 to 0.3 mm for the skin, on average).
    We summarize the modern research results achieved when THz technology was applied to the skin, considering applications in both imaging/detection and treatment/modulation of the skin constituents.
    We perform a review of literature and analyze the recent research achievements in THz applications for skin diagnosis and investigation.
    The reviewed results demonstrate the possibilities of THz spectroscopy and imaging, both pulsed and continuous, for diagnosis of skin melanoma and non-melanoma cancer, dysplasia, scars, and diabetic condition, mainly based on the analysis of THz optical properties. The possibility of modulating cell activity and treatment of various diseases by THz-wave exposure is shown as well.
    The rapid development of THz technologies and the obtained research results for skin tissue highlight the potential of THz waves as a research and therapeutic instrument. The perspectives on the use of THz radiation are related to both non-invasive diagnostics and stimulation and control of different processes in a living skin tissue for regeneration and cancer treatment.
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  • 文章类型: Journal Article
    药物片剂生产过程中不可避免地会产生毛孔,这极大地影响了一系列的片剂性能,如硬度,脆性,抗拉强度,解体,溶出度,以及最终口服片剂的生物利用度。在药物片剂中检测孔的速度和非破坏性的追求最近引入了太赫兹(THz)技术的使用。本文简要介绍了片剂中孔的形成机理和传统的检测方法。主要是将THz技术应用于片剂中毛孔检测的相关研究工作,包括孔隙率的定量检测和多孔微观结构的分析。讨论了THz技术在片剂毛孔检测中面临的挑战和未来的发展方向。
    Pores are inevitably produced during the production of pharmaceutical tablets, which greatly affects a range of tablet properties such as hardness, friability, tensile strength, disintegration, dissolution, and ultimately the bioavailability of an orally administered tablet. The pursuit of speed and non-destructiveness in detection of pores in pharmaceutical tablets has recently ushered in the use of terahertz (THz) techniques. This review briefly introduces the mechanism of the formation of the pores in tablets and the traditional methods of detecting them. The main focus is the relevant research work of THz technology applied to the detection of the pores in tablets, including the quantitative detection of porosity and analysis of porous microstructure. It also discusses the challenges and the future development directions of THz technology in the detection of pores in tablets.
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  • 文章类型: Journal Article
    Refractive index is an important optical parameter that can be used to characterize the physicochemical properties of pharmaceutical solids. The complexity of most drugs and solid oral dosage systems introduces challenges for refractive index measurement methods. These challenges are highlighted, and different types of measurement methods are discussed in this review article. These measurements provide pharmaceutical scientists the opportunity to improve the drug-development process and enhance product quality. Pharmaceutical applications range from identification and quantification of drug crystallinity and polymorphism to mechanical strength assessment of tablets. This review article surveys the literature and evaluates the current and potential future characterization of pharmaceutical solids using refractive index measurements.
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  • 文章类型: Journal Article
    Traditionally, the development of a new solid dosage form is formulation-driven and less focus is put on the design of a specific microstructure for the drug delivery system. However, the compaction process particularly impacts the microstructure, or more precisely, the pore architecture in a pharmaceutical tablet. Besides the formulation, the pore structure is a major contributor to the overall performance of oral solid dosage forms as it directly affects the liquid uptake rate, which is the very first step of the dissolution process. In future, additive manufacturing is a potential game changer to design the inner structures and realise a tailor-made pore structure. In pharmaceutical development the pore structure is most commonly only described by the total porosity of the tablet matrix. Yet it is of great importance to consider other parameters to fully resolve the interplay between microstructure and dosage form performance. Specifically, tortuosity, connectivity, as well as pore shape, size and orientation all impact the flow paths and play an important role in describing the fluid flow in a pharmaceutical tablet. This review presents the key properties of the pore structures in solid dosage forms and it discusses how to measure these properties. In particular, the principles, advantages and limitations of helium pycnometry, mercury porosimetry, terahertz time-domain spectroscopy, nuclear magnetic resonance and X-ray computed microtomography are discussed.
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  • 文章类型: Journal Article
    近年来,光学无损检测(NDT)技术越来越受到重视,主要是因为其具有较高的无损成像精度和灵敏度的特点。本文综述了主要的光学无损检测技术,包括光纤,电子散斑,红外热成像,内窥镜和太赫兹技术。其中,光纤具有易于集成和嵌入,电子散斑专注于全场高精度检测,红外热成像在组合材料测试中具有独特的优势,内窥镜技术直接提供物体内表面的图像,而太赫兹技术因其对大部分非金属材料的良好穿透能力,为内部无损检测开辟了新的方向。说明了这些技术的典型工程应用,简要介绍了历史和最近的进展。
    Optical non-destructive testing (NDT) has gained more and more attention in recent years, mainly because of its non-destructive imaging characteristics with high precision and sensitivity. This paper provides a review of the main optical NDT technologies, including fibre optics, electronic speckle, infrared thermography, endoscopic and terahertz technology. Among them, fibre optics features easy integration and embedding, electronic speckle focuses on whole-field high precision detection, infrared thermography has unique advantages for tests of combined materials, endoscopic technology provides images of the internal surface of the object directly, and terahertz technology opens a new direction of internal NDT because of its excellent penetration capability to most of non-metallic materials. Typical engineering applications of these technologies are illustrated, with a brief introduction of the history and discussion of recent progress.
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  • 文章类型: Journal Article
    The terahertz region of the electromagnetic spectrum spans the frequency range between the infrared and the microwave. Traditionally the exploitation of this spectral region has been difficult owing to the lack of suitable source and detector. Over the last ten years or so, terahertz technology has advanced considerably with both terahertz pulsed spectroscopy (TPS) and terahertz pulsed imaging (TPI) instruments now commercially available. This review outlines some of the recent pharmaceutical applications of terahertz pulsed spectroscopy and imaging. The following application areas are highlighted: (1) discrimination and quantification of polymorphs/hydrates, (2) analysis of solid form transformation dynamics, (3) quantitative characterisation of tablet coatings: off-line and on-line, (4) tablet coating and dissolution, (5) spectroscopic imaging and chemical mapping. This review does not attempt to offer an exhaustive assessment of all anticipated pharmaceutical applications; rather it is an attempt to raise the awareness of the emerging opportunities and usefulness offered by this exciting technology.
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