Advanced Electrode Design Principles for Enhanced Neural Interface Performance in SCS and DBS Applications
Part of Advanced Engineering Principles in Neuromodulation: Next-Generation SCS and DBS Technologies
Details
- Date
- Thursday, January 21, 2027
- Time
- 8:40 AM – 9:10 AM
- Session type
- Pre-Conference Session
- Schedule
- See this day
About
This course provides a deep dive into the advanced engineering behind next-generation spinal cord stimulation (SCS) and deep brain stimulation (DBS) technologies. The morning session spotlights academic leaders sharing foundational concepts critical to innovation in neuromodulation, covering topics such as implantable pulse generator design, electrode technology, novel stimulation paradigms, neural sensing, clinical testing strategies, and the integration of artificial intelligence. During the afternoon, you'll gain insider perspectives from engineers at top companies, as they present cutting-edge technologies recently launched or in active development. This unique structure bridges theory and application, empowering attendees with unparalleled insight into both the scientific fundamentals and real-world breakthroughs propelling neuromodulation forward. Each session features a dedicated faculty Q&A, offering direct engagement with experts. The course is tailored for a broad audience: neural engineers, clinicians, industry professionals, and researchers invested in advancing neuromodulation therapies. Attendees will explore the intricate engineering challenges of modern devices, discover emerging solutions and technologies, and understand how academic and industry innovators are shaping the future of patient care. Focused on the most relevant technological advancements and ongoing innovations, this course delivers practical knowledge that can immediately inform clinical decision-making, inspire new research directions, and support technology development in neuromodulation.
Presenters
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Eric Głowacki is a professor of biomedical engineering at the Brno University of Technology in the Czech Republic, and leads the Laboratory for Bioelectronic Materials and Devices at the Central European Institute of Technology, CEITEC, Brno. His background is in physical chemistry (MSc 2009 University of Rochester, USA), (PhD 2013, Johannes Kepler University in Linz, Austria) During postdocs in Linz (2013-2016), his research interest shifted into the field of electrophysiology, bioelectrochemistry, and neuromodulation. In 2016, he moved to set up and independent group at Linköping University in Sweden, within the Wallenberg Center for Molecular Medicine, working on wireless neurostimulation devices. In 2020, he was awarded the ERC Starting Grant, with which he moved his group to CEITEC. His group conducts fundamental research, as well as applied collaborations with companies. The research is dedicated to neural interface technologies and bioelectronic medicine and fundamental exploration in neuromodulation and reactive oxygen species in physiology, and specializes in the use of electrochemical methods to study neurostimulation electrode interface phenomena.