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ReTuneIn

Podcast by CRC TRR 295 ReTune

English

Technology & science

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About ReTuneIn

Welcome to ReTuneIn, the scientific podcast all about movement disorders! We bring together reknown researchers and experienced experts to engange in some exciting discussions about innovative treatments and groundbreaking research in neurology. In each episode, we dive deep into the mechanisms that influence motor disorders, exploring how we can improve patients' lives through science. More information: www.sfb-retune.de/en

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4 episodes

episode ReTuneIn #3: Dr. Lucia Feldmann & Prof. Hagai Bergman artwork

ReTuneIn #3: Dr. Lucia Feldmann & Prof. Hagai Bergman

Today at ReTuneIn, we welcome Lucia Feldmann and Hagai Bergman, who will provide fascinating insights into their research on adaptive deep brain stimulation. Lucia Feldmann, a Neurology Resident and Clinical Scientist at Charité Berlin, explores the application of electrophysiological recordings in Parkinson’s disease, focusing on beta oscillations and their modulation during sleep. Hagai Bergman, an expert in neurophysiology, brings his extensive experience working with non-human primates to the discussion, offering a unique perspective on movement disorders and brain stimulation. Together, they dive into the challenges of distinguishing physiological signals from artifacts, the role of oscillatory changes in sleep, and the future of closed-loop stimulation systems. Tune in for an engaging conversation on how these insights are shaping the next generation of neuromodulation therapies.

8 May 2025 - 23 min
episode ReTuneIn #2: Dr. Jil Meier & Prof. Julian Neumann artwork

ReTuneIn #2: Dr. Jil Meier & Prof. Julian Neumann

Welcome to another episode of ReTuneIn! Today, we’re joined by Dr. Jil Meier and Prof. Julian Neumann, who will share insights into their research on motor control and neural circuit adaptation. Jil Meier explores how whole-brain dynamical simulations —using the open-source platform The Virtual Brain — can improve our understanding of deep brain stimulation. Her work looks at how stimulation affects distributed brain networks and how we might use these insights to develop more personalized neuromodulation therapies. Julian Neumann focuses on the plasticity of basal ganglia circuits—how these networks adapt and reorganize, and what that means for movement execution. Together, they’ll dive into the challenges of studying these complex systems and what their findings could mean for the future of neuromodulation.

11 Apr 2025 - 22 min
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