针刺力学机制的综合研究与跨学科创新。

IF 2.9 4区 医学 Q3 ENGINEERING, BIOMEDICAL
Liang Yunshan, Xu Chengli, Zhang Peiming, Quan Haocheng, Liang Xudong, Lu Liming
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引用次数: 0

摘要

针刺作为一种传统的治疗方法,受益于现代生物力学,通过研究生物组织和细胞在受力、变形和运动下的力学特性,为理解其机制提供了独特的视角。本文综述了针刺生物力学研究的最新进展,重点从针刺的力学效应、针刺信号的传递机制、针刺治疗的个性化和精准化三个方面进行了综述。首先,综述了针灸相关组织的结构基础;分析从针头插入到穴位激活的皮肤、真皮层和皮下组织的机械反应;并讨论了这些反应对针灸疗效的影响。其次,详细讨论了针刺过程中的机械耦合现象,特别是结缔组织的作用,包括胶原纤维的包裹和自锁,针刺引发的细胞骨架重塑和线粒体功能的调节。第三,本文探讨了针刺过程中机械信号传递的机制,解释了机械敏感离子通道如何在针刺过程中被激活,并随后启动一系列生化反应。最后,综述重点介绍了针刺数值模拟方法的应用,包括皮肤组织的力学建模、针刺力学机制的探索以及针刺过程的可视化研究。通过整合多学科研究成果,深入研究针刺从透皮到穴位刺激的整个力学过程,并分析组织反应,为针刺的科学研究提供坚实的理论基础。此外,还提出了进一步完善针灸临床应用的研究方向。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Integrative research on the mechanisms of acupuncture mechanics and interdisciplinary innovation.

As a traditional therapeutic approach, acupuncture benefits from modern biomechanics, which offers a unique perspective for understanding its mechanisms by investigating the mechanical properties of biological tissues and cells under force, deformation, and movement. This review summarizes recent advancements in the biomechanics of acupuncture, focusing on three main areas: the mechanical effects of acupuncture, the transmission mechanisms of mechanical signals, and the personalization and precision of acupuncture treatments. First, the review introduces the structural basis of the tissues involved in acupuncture; analyzes the mechanical responses of the skin, dermis, and subcutaneous tissues from needle insertion to point activation; and discusses how these responses impact acupuncture efficacy. Second, the phenomenon of mechanical coupling during acupuncture is discussed in detail, especially the role of connective tissues, including the wrapping and self-locking of collagen fibers, the remodeling of the cytoskeleton and the regulation of mitochondrial function triggered by acupuncture. Third, this article examines the mechanisms of mechanical signal transmission in acupuncture, explaining how mechanosensitive ion channels are activated during the procedure and subsequently initiate a cascade of biochemical responses. Finally, the review highlights the numerical simulation methods used in acupuncture, including the mechanical modeling of skin tissues, the exploration of the mechanical mechanisms of acupuncture, and visualization studies of the needling process. By integrating multidisciplinary research findings, this paper delves into the entire mechanical process of acupuncture, from skin penetration to point stimulation, and analyzes tissue responses to provide a solid theoretical foundation for the scientific study of acupuncture. In addition, directions for future research to further refine acupuncture techniques for clinical applications are proposed.

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来源期刊
BioMedical Engineering OnLine
BioMedical Engineering OnLine 工程技术-工程:生物医学
CiteScore
6.70
自引率
2.60%
发文量
79
审稿时长
1 months
期刊介绍: BioMedical Engineering OnLine is an open access, peer-reviewed journal that is dedicated to publishing research in all areas of biomedical engineering. BioMedical Engineering OnLine is aimed at readers and authors throughout the world, with an interest in using tools of the physical and data sciences and techniques in engineering to understand and solve problems in the biological and medical sciences. Topical areas include, but are not limited to: Bioinformatics- Bioinstrumentation- Biomechanics- Biomedical Devices & Instrumentation- Biomedical Signal Processing- Healthcare Information Systems- Human Dynamics- Neural Engineering- Rehabilitation Engineering- Biomaterials- Biomedical Imaging & Image Processing- BioMEMS and On-Chip Devices- Bio-Micro/Nano Technologies- Biomolecular Engineering- Biosensors- Cardiovascular Systems Engineering- Cellular Engineering- Clinical Engineering- Computational Biology- Drug Delivery Technologies- Modeling Methodologies- Nanomaterials and Nanotechnology in Biomedicine- Respiratory Systems Engineering- Robotics in Medicine- Systems and Synthetic Biology- Systems Biology- Telemedicine/Smartphone Applications in Medicine- Therapeutic Systems, Devices and Technologies- Tissue Engineering
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