Working Time: 9:30-18:00
2026 The 11th International Conference on Integrated Circuits and Microsystems
    Email: icicm_conf@vip.163.com
    Secretary: Ms. Carrie Lim (林老师)

Track 21: Biomedical Microelectronic Systems

Track 21: 生物医学微电子系统

Organizers / 组织者

Organizer / 组织者
Lou Pengyu 娄鹏宇
Hohai University
河海大学

Abstract / 论坛简介

English: Biomedical microelectronic systems are a frontier interdisciplinary field where integrated-circuit technology and life/health sciences are deeply integrated, driving a paradigm shift toward precision medicine and personalized health monitoring. This session aims to bring together academic and industrial experts from home and abroad to discuss innovative miniaturized and intelligent electronic system designs for clinical and daily health management. The forum will feature in-depth exchanges on hot topics including implantable/wearable biosensors, neuromodulation and brain-computer-interface chips, lab-on-chip, medical-AI acceleration chips, low-power wireless body-area-network communication, and biocompatible packaging and energy supply, to promote cross-disciplinary collaboration and technology transfer, and to advance smart healthcare and the life-health industry.

中文: 生物医学微电子系统是集成电路技术与生命健康科学深度融合的前沿交叉领域,正推动精准医疗与个性化健康监测的范式变革。本分论坛旨在汇聚国内外学术界与产业界专家,探讨面向临床与日常健康管理的微型化、智能化电子系统创新设计。论坛将围绕植入式/可穿戴生物传感器、神经调控与脑机接口芯片、片上实验室(Lab-on-Chip)、医疗AI加速芯片、低功耗无线体域网通信、生物兼容封装与能源供给等热点方向展开深入交流,促进跨学科协作与成果转化,助力智慧医疗与生命健康产业升级。

Topics / 讨论主题

植入式与可穿戴生物传感芯片:面向连续生理参数监测(血糖、血氧、心电、脑电、生化标志物等)的超低功耗传感前端、多模态信号采集与片上集成技术。
Implantable and wearable biosensing chips: ultra-low-power sensing front-ends, multimodal signal acquisition, and on-chip integration for continuous physiological-parameter monitoring (glucose, blood oxygen, ECG, EEG, biochemical markers, etc.)
神经接口与脑机接口(BCI)集成电路:高密度神经信号记录/刺激电极阵列、神经信号处理与编解码芯片、闭环神经调控系统、侵入式与非侵入式接口电子学设计。
Neural-interface and brain-computer-interface (BCI) ICs: high-density neural recording/stimulation electrode arrays, neural-signal processing and encoding/decoding chips, closed-loop neuromodulation systems, and invasive/non-invasive interface electronics design.
片上实验室(Lab-on-Chip)与微流控集成:基于CMOS或微纳加工技术的微型化诊断平台、单细胞分析芯片、数字微流控、即时检测(POCT)微系统。
Lab-on-chip and microfluidic integration: miniaturized diagnostic platforms based on CMOS or micro/nano fabrication, single-cell analysis chips, digital microfluidics, and point-of-care-testing (POCT) microsystems.
医疗AI加速与边缘智能芯片:面向医学影像、病理诊断、生理信号分析的可重构/专用AI加速器、存算一体架构、联邦学习硬件安全与隐私保护。
Medical-AI acceleration and edge-intelligence chips: reconfigurable/dedicated AI accelerators for medical imaging, pathology diagnosis, and physiological-signal analysis; in-memory computing architectures; federated-learning hardware security and privacy protection.
无线体域网(WBAN)与体内通信:低功耗蓝牙/UWB/毫米波医疗通信、体内遥测与能量传输、近场耦合通信、电磁兼容与生物安全性设计。
Wireless body area networks (WBAN) and in-body communication: low-power Bluetooth/UWB/mmWave medical communication, in-body telemetry and energy transfer, near-field coupling communication, and EMC/biosafety design.
生物能源与自供能微系统:生物燃料电池、热电/压电/摩擦电能量收集、无线充电与管理电路、长寿命植入式电源解决方案。
Bio-energy and self-powered microsystems: biofuel cells, thermoelectric/piezoelectric/triboelectric energy harvesting, wireless charging and management circuits, and long-life implantable power solutions.
柔性、可拉伸与可降解电子:有机/无机混合电子、可拉伸传感器与电路、瞬态电子、生物可吸收封装材料与工艺。
Flexible, stretchable, and degradable electronics: organic/inorganic hybrid electronics, stretchable sensors and circuits, transient electronics, and bioresorbable packaging materials and processes.
闭环治疗与智能给药系统:药物释放控制芯片、人工胰腺/人工耳蜗等治疗微系统、感知-决策-治疗一体化智能诊疗电子。
Closed-loop therapy and intelligent drug-delivery systems: drug-release control chips, therapeutic microsystems such as artificial pancreas/cochlear implant, and sense-decide-treat integrated smart diagnosis-and-treatment electronics.
生物兼容封装、可靠性与安全性:长期植入封装技术、生物相容性评估、失效机制与可靠性建模、网络安全与医疗数据保护。
Biocompatible packaging, reliability, and security: long-term implantable packaging, biocompatibility assessment, failure mechanisms and reliability modeling, and cybersecurity/medical-data protection.
数字疗法与远程健康监测平台:居家慢病管理终端、数字孪生生理系统、多源异构数据融合、人机交互与用户体验设计。
Digital therapeutics and remote health-monitoring platforms: home chronic-disease-management terminals, digital-twin physiological systems, multi-source heterogeneous data fusion, and human-computer interaction/user-experience design.