Robert Guggenberger
Papers
5
Total Citations
101
H-Index
5
About
Robert Guggenberger is a leading researcher in neurorehabilitation and brain-machine interfaces, whose work focuses on restoring motor function after neurological injury. His primary research areas include corticospinal connectivity, sensorimotor desynchronization, and oscillatory neurofeedback networks. Guggenberger's major contributions center on developing innovative brain stimulation protocols to enhance neural plasticity. His most influential work, "Recruitment of Additional Corticospinal Pathways in the Human Brain with State-Dependent Paired Associative Stimulation" (2018, 45 citations), demonstrates how targeted stimulation can recruit supplementary neural pathways to compensate for corticospinal tract damage. He has also pioneered the integration of neurofeedback with robotics and electrical stimulation for post-stroke rehabilitation, as highlighted in his 2020 paper "Brain-Machine Neurofeedback: Robotics or Electrical Stimulation?" (11 citations). His 2022 study on oscillatory neurofeedback networks (7 citations) identifies critical biomarkers for predicting rehabilitative potential in severely impaired stroke patients, offering hope for those previously considered beyond recovery. Guggenberger's work bridges fundamental neuroscience and clinical application, advancing our understanding of how the brain reorganizes after injury and paving the way for more effective neurorehabilitation technologies.
Research Focus
Key Achievements
Top Papers
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- 4Brain-Machine Neurofeedback: Robotics or Electrical Stimulation?11 citations · 2020
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