[1] | Chaudhary, U., Birbaumer, N., and Ramos-Murguialday, A. (2016). Brain–computer interfaces for communication and rehabilitation. Nat. Rev. Neurol. 12: 513−525. DOI: 10.1038/nrneurol.2016.113. |
[2] | Nicolas-Alonso, L.F., and Gomez-Gil, J. (2012). Brain computer interfaces, a review. Sensors 12 :1211-1279. DOI: 10.3390/s120201211. |
[3] | Musk, E. (2019). An integrated brain-machine interface platform with thousands of channels. J. Med. Internet Res. 21(10): e16194. DOI: 10.2196/16194. |
[4] | Liu, D., Xu, X., Li, D., et al. (2022). Intracranial brain-computer interface spelling using localized visual motion response. NeuroImage 258 : 119363. DOI: 1016/j.neuroimage.2022.119363. |
[5] | Deng, C., Li, X., and Dai, J. (2023). Challenges for translating implantable brain-computer interface to medical device. The Innovation Medicine 1 :100040. DOI: 10.59717/j.xinn-med.2023.100040. |
Pang W., Yuan C., Zheng Y., et al., (2024). Applications over the horizon — Advancements and challenges in brain-computer interfaces. The Innovation Life 2(1): 100058. https://doi.org/10.59717/j.xinn-life.2024.100058 |
Exciting advancements in BCI