Petar Horki
Papers
1
Total Citations
17
H-Index
1
About
Petar Horki has made significant contributions to the field of brain-computer interfaces (BCIs), with a particular focus on asynchronous control systems and steady-state visual evoked potentials (SSVEPs). His most cited work, “Asynchronous steady-state visual evoked potential based BCI control of a 2-DoF artificial upper limb” (2010, 17 citations), demonstrates a pioneering approach to creating a direct neural link between the human brain and a robotic limb. By developing an asynchronous SSVEP-BCI, Horki enabled users to control a two-degree-of-freedom artificial upper limb without requiring continuous, synchronized attention—a major step toward practical, real-world prosthetics. This research addresses a critical challenge in BCI technology: making systems intuitive and responsive to natural brain activity. Horki’s work has been influential in advancing non-invasive neural interfaces, showing how repetitive visual stimuli can be harnessed for reliable, real-time control. His contributions have helped shape the development of assistive technologies for individuals with motor impairments, and his findings continue to inform the design of more adaptive and user-friendly BCI systems.
Research Focus
Key Achievements
Top Papers
- 1