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[交流] 用于监测腰肌健康和腰椎疾病早期检测的柔性生物电子表面肌电信号传感器

西交利物浦大学博士招生

项目: flexible bioelectronic semg sensors for monitoring lumbar muscle health and early detection of lumbar spine disorders
用于监测腰肌健康和腰椎疾病早期检测的柔性生物电子表面肌电信号传感器

Project code 项目编号 sfxjtu2617


brief introduction of the three supervisors  三校导师简介

dr. qifeng lu serving as an associate professor and director of education and research and development institute (erdi) at the school of chips at xi'an jiaotong-liverpool university. he is a senior member of ieee and a senior member of the chinese society of micro-nano technology. his research interest focuses on flexible sensors. dr. lu have published over 50 papers such as infomat, nano research and npj flexible electronics. qifeng lu have served as the lead for a sub-task of a national key r&d program is leading several provincial and ministerial-level research projects, including the national natural science foundation of china and the jiangsu provincial natural science foundation. he won the 2023 microsystems & nanoengineering young scientist award, the 2022-2023 academic year all-round academic excellence award at xi'an jiaotong-liverpool university, entrepreneur college (taicang). his research achievements have been featured in media outlets such as scientific chinese and china high-tech.

陆骐峰现任职于西交利物浦大学芯片学院,副教授,教育研发院主任。ieee高级会员、苏州市科协薪火计划导师,主要研究方向为柔性传感器。目前已在infomat、nano research、npj flexible electronics等国内外期刊和会议发表论文50余篇,多篇被选为封面文章。曾担任国家重点研发计划子任务负责人,主持国家自然然科学基金、江苏省自然科学基金等多项省部级以上科研项目。获2023年microsystems & nanoengineering 青年科学家奖、2022-2023学年西交利物浦大学太仓校区all round academic excellent award,研究成果受到《科学中国人》、《中国高新科技》等媒体报道。


dr. liang tian is a professor and doctoral supervisor at xi’an jiaotong university, recognized as a class a young top talent. he has published over 20 papers as first or corresponding author in high-level journals such as matter, acta materialia, flexmat, energy & environmental materials, ecomat, and scripta materialia, with an h-index of 21. his research outcomes have been reported by internationally media including advanced science news. he has independently developed two computational materials software packages and participated in four key major projects. his research interests include the development of conductive composite electrode materials and their cutting-edge applications in photovoltaics, flexible electronics, capacitors, batteries, and integrated circuits. he has served as co-chair or executive chair of international and domestic academic conferences four times, session chair or organizer for over 20 sessions, and delivered four keynote lectures and more than 30 invited talks. he is the vice chairman of the expert committee of the advanced materials and device innovation platform, a member of youth editorial board of flexmat and ai & materials, and a reviewer for science. he also received include the scientist medal from the international association of advanced materials (iaam).


田亮,西安交通大学教授、博士生导师,青年拔尖人才a类。已在matter、acta materialia、flexmat、energy&environmental materials、ecomat、scripta materialia等材料领域高水平期刊以一作/通讯发表论文20余篇,h指数21,成果获advanced science news、美国能源部等国际权威媒体报道。自主开发2项计算材料软件,主持多项科研项目,参与美国能源部重点重大项目4项。研究方向:1.  导电复合电极材料研发及其在光伏、柔性电子、电容器、电池、集成电路等场景的前沿应用;2.  导电复合纳米材料的制备、力电性能及其在人机智能传感中的前沿应用;“自上而下”与“自下而上”制备微米与纳米的金属基导电复合材料。担任国内外学术会议大会共同/执行主席4次,分论坛主席20余次,国内外学术会议主题报告4次,邀请报告30余次。担任先进材料与器件创新平台专家委员会副理事长、flexmat、ai&materials青年编委、science期刊审稿人。荣获国际先进材料学会的科学家奖章等奖项。

dr. yinchao zhao is an assistant professor at the school of chips, xi’an jiaotong-liverpool university, and serves as the programme director of the mres in advanced microelectronic technology and materials. she received her ph.d. from the university of liverpool. her research focuses on high-performance anode materials for lithium-ion batteries and mxene-based nanocomposite materials. she holds multiple invention patents and has published papers in journals including electrochimica acta.

赵胤超,博士,西交利物浦大学芯片学院助理教授,并担任“先进微电子技术与材料”硕士专业负责人。英国利物浦大学博士毕业,研究方向为高性能锂电池负极材料及mxene基纳米复合材料。拥有多项发明专利,在《electrochimica acta》等期刊发表论文。

dr simon maher is an associate professor in electrical engineering and electronics at the university of liverpool. led by dr simon maher, the mass spectrometry and instrumentation research group (msirg) is one of the uk's leading academic centres for analytical instrumentation, with a research heritage stretching back to the pioneering work of professor harry leck in the 1960s. the msirg houses dedicated electronic and mechanical fabrication facilities alongside advanced analytical capability. the group takes a holistic systems approach to sensing and chemical measurement, with inventions spanning sample preparation, novel spectrometric and spectroscopic instrumentation and new materials. the group’s expertise sits at the interface between engineering and analytical science covering theory, modelling, simulation, design, fabrication, control electronics, automation, miniaturisation, method development, validation and spectral data analysis. the group benefits from strong collaborations across academia, nhs (healthcare) and industry, delivering real impact in clinical diagnostics, environmental monitoring, security and defence.

simon maher为利物浦大学电气工程与电子系副教授。由他领导的质谱与仪器研究组(msirg)是英国领先的分析仪器学术中心之一,其研究传统可追溯至20世纪60年代harry leck的开创性工作。该研究组配备了专用的电子与机械加工设施,并拥有先进的分析能力。团队采取整体的系统方法来处理传感与化学测量问题,其发明涵盖样品前处理、新型质谱与光谱仪器以及新材料,专注于工程学与分析科学的交叉领域,涉及理论、建模、仿真、设计、制造、控制电子、自动化、小型化、方法开发、方法验证以及光谱数据分析。该研究组得益于与学术界、英国国家医疗服务体系(nhs)及工业界的紧密合作,在临床诊断、环境监测、安全与国防等领域产生了切实的影响。

key aspect/summary of your research project项目简介

lumbar spine disorders associated with prolonged sedentary behavior have become a major global health concern. however, current clinical diagnosis mainly relies on imaging technologies after symptoms appear, which limits early intervention and preventive treatment. emg offers a promising approach for the early detection of physiological changes related to lumbar spine disorders. nevertheless, conventional emg systems often suffer from insufficient interface stability and poor signal quality during long-term monitoring. this research aims to develop flexible bioelectronic sensing systems for semg-based monitoring of lumbar health. by integrating flexible electronic structures with conductive hydrogel, the project seeks to enhance electrode-skin interface stability and improve signal quality in long-term semg monitoring. the proposed research will enable reliable wearable systems for continuous monitoring of lumbar muscle activity and early detection of lumbar spine disorders.

长时间久坐行为所引发的腰椎疾病已成为全球性的重大健康问题。然而,目前的临床诊断主要依赖症状出现后的影像学技术,这限制了早期干预和预防性治疗的实施。肌电图(emg)为早期检测与腰椎疾病相关的生理变化提供了一种有前景的方法,但传统的emg系统在长时间监测过程中往往面临电极-皮肤界面稳定性不足和信号质量欠佳的问题。本研究旨在开发基于表面肌电图(semg)的柔性生物电子传感系统,用于腰椎健康监测。通过将柔性电子结构与导电水凝胶相结合,该项目力求增强电极-皮肤界面的稳定性,并提升长时间semg监测中的信号质量。所提出的研究有望实现可靠的可穿戴系统,用于腰椎肌肉活动的连续监测以及腰椎疾病的早期发现。

有意者请将个人简历及其他有助于申请的材料发送至 qifeng.lu@xjtlu.edu.cn

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