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用于骨骼特征、再生及治疗的超声成像与调控机械转导

Ultrasound imaging and regulated mechanotransduction for characteristics, regeneration, and therapeutics of bone.

作者信息

Qin Yi-Xian

机构信息

Department of Biomedical Engineering, Stony Brook University, Stony Brook, NY 11794, USA.

出版信息

Mechanobiol Med. 2025 Feb 19;3(1):100116. doi: 10.1016/j.mbm.2025.100116. eCollection 2025 Mar.

Abstract

Ultrasound imaging has been widely used in clinical diagnoses, such as B-mode and M-mode ultrasound imaging for cardiovascular, abdomen, OB-Gyn, and other soft tissue and organs in clinical diagnoses. Ultrasound imaging has traditionally been limited in its application to bone because of the high acoustic impedance and density of trabecular and cortical bone structure and density alterations, high wave reflection, absorption, scattering, and low penetration, which result in significant reflection and attenuation of ultrasonic energy in such mineral tissues. Recent advancements in quantitative ultrasound technology have opened new possibilities for noninvasive characteristics of bone quality through transmitted or backscattered signals, offering a radiation-free alternative to traditional imaging modalities like dual-energy X-ray absorptiometry (DEX), X-rays, and CT scans. In addition, low-intensity ultrasound (LIUS) has been studied and applied to promote bone regeneration and fracture healing through induced mechanotransduction in tissue and cells. The field of bone ultrasound encompasses fundamental research on the interaction of elastic waves with cortical and trabecular bone microstructures, the development of innovative imaging methodologies and medical applications such as bone health assessment for osteoporosis diagnosis, therapeutic use of LIUS, and phase aberration correction inside the skull. This work has highlighted recent developments and advancements in ultrasound diagnosis and therapeutics, induced cellular and molecular pathways, and future directions using ultrasound as a promising imaging tool and treatment method.

摘要

超声成像已广泛应用于临床诊断,例如在临床诊断中用于心血管、腹部、妇产科以及其他软组织和器官的B型和M型超声成像。传统上,由于小梁骨和皮质骨结构的高声阻抗和密度以及密度变化、高波反射、吸收、散射和低穿透性,超声成像在骨应用方面受到限制,这些因素会导致超声能量在这类矿物质组织中出现显著反射和衰减。定量超声技术的最新进展为通过透射或背向散射信号对骨质量进行无创表征开辟了新的可能性,为双能X线吸收法(DEX)、X线和CT扫描等传统成像方式提供了一种无辐射的替代方法。此外,低强度超声(LIUS)已被研究并应用于通过诱导组织和细胞中的机械转导来促进骨再生和骨折愈合。骨超声领域涵盖了弹性波与皮质骨和小梁骨微观结构相互作用的基础研究、创新成像方法的开发以及医学应用,如用于骨质疏松症诊断的骨健康评估、LIUS的治疗应用以及颅骨内的相位畸变校正。这项工作突出了超声诊断与治疗、诱导细胞和分子途径的最新发展和进步,以及将超声作为一种有前景的成像工具和治疗方法的未来方向。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/c43d/12082152/685dd43f27b1/gr1.jpg

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