【SLAI Seminar】19th Session:Low-field portable MRI, AI, and how they would change the Future Healthcare 低场便携式磁共振、人工智能如何改变未来医疗保健 (Dec 31, 10:00)
SLAI Seminar 19th Session will be discussing the topic on "Low-field portable MRI, AI, and how they would change the Future Healthcare", from 10am to 11:30am, December 31st (Wednesday) at B411 Lecture Hall, online participation is welcome (Tencent Meeting ID: 983-872-224)
报告主题:低场便携式磁共振、人工智能如何改变未来医疗保健
时间:2025年12月31日(周三)上午10点-11点30
地点: 深圳河套学院B411阶梯教室
线上参与:腾讯会议号 983-872-224
About the Speaker:
Shaoying HUANG is an associate professor in Singapore University of Technology and Design. She holds a Ph.D., MS, and BE degree in Electrical and Electronic Engineering from Nanyang Technological University, Singapore. She is pioneering the innovations and open-source efforts for portable MRI. She successfully organized the first MRI hackathon, ezyMRI NerdFest, in Asia. She is the co-chair of ISMRM (International Society of Magnetic Resonance in Medicine) Singapore Chapter. She serves the ISMRM Annual Meeting Program Committee 2023 – 2025, IEEE AP/MTT Singapore Chapter since 2025, and the editorial boards of IEEE Transaction on AP and IEEE Journal of Electromagnetics, RF and Microwaves in Medicine and Biology since 2020. She owns 10 patents and contribute to more than 70 refereed journal papers and 160+ international conference presentations and invited talks. Her current research focuses are low-field portable MRI (hardware & AI), non-linear MRI image reconstructions, MR electrical property tomography (MREPT), human-involved wireless power transfer, radiofrequency (RF)/microwave noninvasive/contactless vital sign sensing.
Shaoying Huang是新加坡科技设计大学副教授,拥有新加坡南洋理工大学电气与电子工程专业的博士学位、硕士学位及学士学位。Prof. Huang是便携式核磁共振技术创新与开源工作的开拓者,成功在亚洲举办了首届核磁共振编程马拉松活动"ezyMRI NerdFest"。她目前担任国际医学磁共振学会新加坡分会联合主席,并自2023年至2025年任职于国际医学磁共振学会年会程序委员会,自2025年起任职于IEEE天线与传播/微波理论与技术学会新加坡分会,自2020年起担任《IEEE天线与传播汇刊》及《IEEE生物医学电磁学、射频与微波期刊》编委。Prof. Huang持有10项专利,发表70余篇经同行评审的期刊论文,并在国际学术会议及特邀报告中完成160余次成果展示,当前研究主要集中于低场便携式核磁共振(硬件与人工智能)、非线性核磁共振图像重建、磁共振电特性断层成像、人体介入式无线能量传输,以及射频/微波非侵入式生命体征传感技术。
Abstract:
You may wonder how soon an MRI scan can be done at your convenience rather than bearing with long waiting time now. Portable and dedicated MRI search and development has been an active research area, and recently being actively commercialized. This talk will detail the recent progress on the development of low-field portable MRI, both research and commercialization, and the role of AI in this domain. The impacts of portable MRI to future healthcare will be discussed.
大众可能希望了解何时可以根据自己的时间便捷地进行核磁共振扫描,而无需忍受漫长的等待。专用便携式核磁共振的研发一直是热烈活跃的研究领域,近年更在积极推进商业化。本次报告将详细介绍低场便携式核磁共振在科研与商业化方面的最新进展,以及人工智能在该领域发挥的作用,并探讨便携式核磁共振对未来医疗健康领域的影响。