Mapping the brain-spinal cord interaction towards understanding and treatment of movement disorders
The Move2Treat project, funded by EIC Pathfinder Open, is at the forefront of groundbreaking research aimed at developing revolutionary technologies. This initiative supports the development of minimally invasive, soft multifunctional neural devices leading to improved mapping of brain and spinal cord neural activity. With a competitive success rate of just 6-7%, Move2Treat exemplifies a high-risk, high-gain endeavor, dedicated to realizing technological advancements that will significantly impact Europe and beyond.
Ioannou, A., Pospori, A., Yerolatsitis, S., Meneghetti, M., Sui, K., Markos, C., & Kalli, K. (2025, May). Femtosecond laser inscription of FBG in novel multifunctional fibre. In Eighth International Workshop on Specialty Optical Fibers and Their Applications (WSOF 2025) (Vol. 13522, pp. 251-254). SPIE.
Meneghetti, M., Sui, K., Wang, J., Berg, R. W., & Markos, C. (2025, May). Flexible fiber-based implantable neurophotonic interfaces with enhanced illumination volume. In Eighth International Workshop on Specialty Optical Fibers and Their Applications (WSOF 2025) (Vol. 13522, pp. 56-59). SPIE.
Sui, K., Meneghetti, M., Li, G., Ioannou, A., Abdollahian, P., Kalli, K., … & Markos, C. (2025, May). Deep brain temperature sensing using polymer fiber Bragg grating implants. In Eighth International Workshop on Specialty Optical Fibers and Their Applications (WSOF 2025) (Vol. 13522, pp. 14-17). SPIE.
Meneghetti, M., Sui, K., Metuh, P., Berg, R. W., & Markos, C. (2025, May). Brain and spinal cord interrogation with multimaterial bidirectional interfaces based on polymer optical fibers. In Eighth International Workshop on Specialty Optical Fibers and Their Applications (WSOF 2025) (Vol. 13522, pp. 18-21). SPIE.