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Flexible Ultrasonic Transducers for Wearable Biomedical Applications: A Review on Advanced Materials, Structural Designs, and Future Prospects | |
2023 | |
发表期刊 | IEEE TRANSACTIONS ON ULTRASONICS, FERROELECTRICS, AND FREQUENCY CONTROL (IF:3.0[JCR-2023],2.9[5-Year]) |
ISSN | 0885-3010 |
EISSN | 1525-8955 |
卷号 | 71期号:7页码:1-1 |
发表状态 | 已发表 |
DOI | 10.1109/TUFFC.2023.3333318 |
摘要 | Due to the rapid developments in materials science and fabrication techniques, wearable devices have recently received increased attention for biomedical applications, particularly in medical ultrasound imaging, sensing, and therapy. Ultrasound is ubiquitous in biomedical applications because of its non-invasive nature, nonionic radiating, high precision, and real-time capabilities. While conventional ultrasound transducers are rigid and bulky, flexible transducers can be conformed to curved body areas for continuous sensing without restricting tissue movement or transducer shifting. This article comprehensively reviews the application of flexible ultrasound transducers in the field of biomedical imaging, sensing, and therapy. First, we review the background of flexible ultrasound transducers. Following that, we discuss advanced materials and fabrication techniques for flexible ultrasound transducers and their enabling technology status. Lastly, we highlight and summarize some promising preliminary data with recent applications of flexible ultrasound transducers in biomedical imaging, sensing, and therapy. We also provide technical barriers, challenges, and future perspectives for further research and development. IEEE |
关键词 | Flexible electronics Medical applications Medical imaging Structural design Ultrasonic transducers Wearable technology Advanced materials Biomedical applications Biomedical imaging Biomedical monitoring Biomedical sensing Biomedical therapy Flexible ultrasound Flexible ultrasound transducers Ultrasound transducers |
URL | 查看原文 |
收录类别 | EI ; SCI |
语种 | 英语 |
资助项目 | National Institutes of Health (NIH)[R21EB032059] ; National Science Foundation (NSF)[2124017] ; American Heart Association/American Stroke Association (Innovative Project Award)[20IPA35360039] |
WOS研究方向 | Acoustics ; Engineering |
WOS类目 | Acoustics ; Engineering, Electrical & Electronic |
WOS记录号 | WOS:001266361500014 |
出版者 | Institute of Electrical and Electronics Engineers Inc. |
EI入藏号 | 20234815121148 |
EI主题词 | Ultrasonic imaging |
EI分类号 | 408.1 Structural Design, General ; 461.1 Biomedical Engineering ; 715 Electronic Equipment, General Purpose and Industrial ; 746 Imaging Techniques ; 753.2 Ultrasonic Devices |
原始文献类型 | Article in Press |
来源库 | IEEE |
引用统计 | 正在获取...
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文献类型 | 期刊论文 |
条目标识符 | https://kms.shanghaitech.edu.cn/handle/2MSLDSTB/348686 |
专题 | 生物医学工程学院_PI研究组_彭畅组 |
通讯作者 | Jiang, Xiaoning |
作者单位 | 1.Joint Department of Biomedical Engineering, North Carolina State University, Raleigh, NC, USA 2.Department of Mechanical and Aerospace Engineering, North Carolina State University, Raleigh, NC, USA 3.Department of Neurology, Duke University School of Medicine, Durham, NC, USA 4.Korea Military Academy, Seoul, South Korea 5.School of Biomedical Engineering, Shanghai Tech University, Shanghai, China |
推荐引用方式 GB/T 7714 | Xue, Xiangming,Wu, Huaiyu,Cai, Qianqian,et al. Flexible Ultrasonic Transducers for Wearable Biomedical Applications: A Review on Advanced Materials, Structural Designs, and Future Prospects[J]. IEEE TRANSACTIONS ON ULTRASONICS, FERROELECTRICS, AND FREQUENCY CONTROL,2023,71(7):1-1. |
APA | Xue, Xiangming.,Wu, Huaiyu.,Cai, Qianqian.,Chen, Mengyue.,Moon, Sunho.,...&Jiang, Xiaoning.(2023).Flexible Ultrasonic Transducers for Wearable Biomedical Applications: A Review on Advanced Materials, Structural Designs, and Future Prospects.IEEE TRANSACTIONS ON ULTRASONICS, FERROELECTRICS, AND FREQUENCY CONTROL,71(7),1-1. |
MLA | Xue, Xiangming,et al."Flexible Ultrasonic Transducers for Wearable Biomedical Applications: A Review on Advanced Materials, Structural Designs, and Future Prospects".IEEE TRANSACTIONS ON ULTRASONICS, FERROELECTRICS, AND FREQUENCY CONTROL 71.7(2023):1-1. |
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