[HTML][HTML] Review on motor imagery based BCI systems for upper limb post-stroke neurorehabilitation: From designing to application

MA Khan, R Das, HK Iversen… - Computers in biology and …, 2020 - Elsevier
Strokes are a growing cause of mortality and many stroke survivors suffer from motor
impairment as well as other types of disabilities in their daily life activities. To treat these …

EEG-based brain–computer interfaces

DJ McFarland, JR Wolpaw - current opinion in Biomedical Engineering, 2017 - Elsevier
Abstract Brain–Computer Interfaces (BCIs) are real-time computer-based systems that
translate brain signals into useful commands. To date most applications have been …

[HTML][HTML] High performance communication by people with paralysis using an intracortical brain-computer interface

C Pandarinath, P Nuyujukian, CH Blabe, BL Sorice… - elife, 2017 - elifesciences.org
Brain-computer interfaces (BCIs) have the potential to restore communication for people with
tetraplegia and anarthria by translating neural activity into control signals for assistive …

Exceeding chance level by chance: The caveat of theoretical chance levels in brain signal classification and statistical assessment of decoding accuracy

E Combrisson, K Jerbi - Journal of neuroscience methods, 2015 - Elsevier
Abstract Machine learning techniques are increasingly used in neuroscience to classify
brain signals. Decoding performance is reflected by how much the classification results …

[HTML][HTML] Review of the BCI competition IV

M Tangermann, KR Müller, A Aertsen… - Frontiers in …, 2012 - frontiersin.org
The BCI competition IV stands in the tradition of prior BCI competitions that aim to provide
high quality neuroscientific data for open access to the scientific community. As experienced …

A review of organic and inorganic biomaterials for neural interfaces

P Fattahi, G Yang, G Kim, MR Abidian - Advanced materials, 2014 - Wiley Online Library
Recent advances in nanotechnology have generated wide interest in applying
nanomaterials for neural prostheses. An ideal neural interface should create seamless …

Brain-computer interfaces in medicine

JJ Shih, DJ Krusienski, JR Wolpaw - Mayo clinic proceedings, 2012 - Elsevier
Brain-computer interfaces (BCIs) acquire brain signals, analyze them, and translate them
into commands that are relayed to output devices that carry out desired actions. BCIs do not …

Brain–computer interfaces using sensorimotor rhythms: current state and future perspectives

H Yuan, B He - IEEE Transactions on Biomedical Engineering, 2014 - ieeexplore.ieee.org
Many studies over the past two decades have shown that people can use brain signals to
convey their intent to a computer using brain-computer interfaces (BCIs). BCI systems extract …

Restoring motor control and sensory feedback in people with upper extremity amputations using arrays of 96 microelectrodes implanted in the median and ulnar …

TS Davis, HAC Wark, DT Hutchinson… - Journal of neural …, 2016 - iopscience.iop.org
Objective. An important goal of neuroprosthetic research is to establish bidirectional
communication between the user and new prosthetic limbs that are capable of controlling> …

Flexible and stretchable electronics for biointegrated devices

DH Kim, R Ghaffari, N Lu… - Annual review of …, 2012 - annualreviews.org
Advances in materials, mechanics, and manufacturing now allow construction of high-quality
electronics and optoelectronics in forms that can readily integrate with the soft, curvilinear …