22 papers · ranked by Valyu relevance
Simanto Saha, Khondaker A. Mamun, Khawza Ahmed, Raqibul Mostafa + 4 more
'Ganesh R. Naik' 'Sam Darvishi' 'Ahsan H. Khandoker' 'Mathias Baumert'] Brain computer interfaces (BCI) provide a direct communication link between the brain and a computer or other external devices. They offer an extended degree of freedom either by strengthening or by substituting human peripheral working capacity…
Simanto Saha, Khondaker A. Mamun, Khawza I. Ahmed, Raqibul Mostafa + 4 more
'Ganesh R. Naik' 'Sam Darvishi' 'Ahsan H. Khandoker' 'Mathias Baumert'] ABSTRACT Brain computer interfaces (BCI) provide a direct communication link between the brain and a computer or other external devices. They offer an extended degree of freedom either by strengthening or by substituting human peripheral working…
Aleksandra Kawala-Sterniuk, Natalia Browarska, Amir Al-Bakri, Mariusz Pelc + 4 more
'Mariusz Pelc' 'Jaroslaw Zygarlicki' 'Michaela Sidikova' 'Radek Martinek' 'Edward Jacek Gorzelanczyk'] Over the last few decades, the Brain-Computer Interfaces have been gradually making their way to the epicenter of scientific interest. Many scientists from all around the world have contributed to the state of the art…
Bradley J. Edelman, Shuailei Zhang, Gerwin Schalk, Peter Brunner + 3 more
'Gernot Müller-Putz' 'Cuntai Guan' 'Bin He'] Brain-computer interface (BCI) is a rapidly evolving technology that has the potential to widely influence research, clinical and recreational use. Non-invasive BCI approaches are particularly common as they can impact a large number of participants safely and at a…
Roberto Portillo-Lara, Bogachan Tahirbegi, Christopher A. R. Chapman, Josef A. Goding + 1 more
'Josef A. Goding' 'Rylie A. Green'] Brain-computer interfaces (BCIs) provide bidirectional communication between the brain and output devices that translate user intent into function. Among the different brain imaging techniques used to operate BCIs, electroencephalography (EEG) constitutes the preferred method of…
Brent J. Lance, Scott E. Kerick, Anthony J. Ries, Kelvin S. Oie + 1 more
'Kaleb McDowell'] Lance, B.J.; Kerick, S.E.; Ries, A.J.; Oie, K.S.; McDowell, K.; , "Brain–Computer Interface Technologies in the Coming Decades," Proceedings of the IEEE , vol.100, no. Special Centennial Issue, pp.1585-1599, May 13 2012. doi: 10.1109/JPROC.2012.2184830 URL…
Eric C. Leuthardt, Daniel W. Moran, Tim R. Mullen
With the emergence of numerous brain computer interfaces (BCI), their form factors, and clinical applications the terminology to describe their clinical deployment and the associated risk has been vague. The terms “minimally invasive” or “non-invasive” have been commonly used, but the risk can vary widely based on the…
Bosubabu Sambana, Priyanka Mishra
Brain-Computer Interface (BCI) systems support communication through direct measures of neural activity without muscle activity. Brain-Computer Interface systems need to be validated in longterm studies of real-world use by people with severe disabilities, and practical and viable models for their widespread…
Andrej M. Savić, Pietro Aricò
Brain-computer interfaces (BCIs) measure brain activity and translate it into commands for a computer or machine, enabling users to control devices using only their thoughts. In February 2023, Nature Electronics Journal announced that BCIs were selected as the technology of the year (Drew, [4]). It has been fifty years…
Dylan Forenzo, Hao Zhu, Jenn Shanahan, Jaehyun Lim + 1 more
Brain-computer interfaces (BCI) using electroencephalography (EEG) provide a non-invasive method for users to interact with external devices without the need for muscle activation. While noninvasive BCIs have the potential to improve the lives of both healthy and motor impaired individuals, they currently have limited…
Ritam Ghosh
Research on Brain-Computer Interface (BCI) began in the 1970's and has increased in volume and diversified significantly since then. Today BCI is widely used for applications like assistive devices for physically challenged users, mental state monitoring, input devices for hands-free applications, marketing, education…
Rajesh P. N. Rao
Brain-computer interfaces (BCIs) use decoding algorithms to control prosthetic devices based on brain signals for restoration of lost function. Computer-brain interfaces (CBIs), on the other hand, use encoding algorithms to transform external sensory signals into neural stimulation patterns for restoring sensation or…
Matvey Bulat, Alexandra Karpman, Alina Samokhina, Alexander Panov
In this paper, we present the results of a study to determine the effect of the P300-based brain-computer interface (BCI) virtual reality game on the cognitive functions of healthy human subjects. This study is a part of on-going research related to evaluation of the the long-term effect of P300 training in Virtual…
Yanxiao Chen, Fan Wang, Tianwen Li, Lei Zhao + 4 more
'Wenya Nan' 'Peng Ding' 'Yunfa Fu'] Brain-computer interface (BCI) is a revolutionizing human-computer interaction with potential applications in both medical and non-medical fields, emerging as a cutting-edge and trending research direction. Increasing numbers of groups are engaging in BCI research and development.…
David Bergeron, Christian Iorio-Morin, Marco Bonizzato, Guillaume Lajoie + 3 more
Technical and Ethical Considerations Authors: ['David Bergeron' 'Christian Iorio-Morin' 'Marco Bonizzato' 'Guillaume Lajoie' 'Nathalie Orr Gaucher' 'Éric Racine' 'Alexander G. Weil'] Invasive brain-computer interfaces hold promise to alleviate disabilities in individuals with neurologic injury, with fully implantable…
Houda Hafi, Bouziane Brik, Nuraini Jamil, Abdelkader Nasreddine Belkacem
Brain computer interface (BCI) enables the brain to directly control an external device by converting neural signals into actionable outputs. However, effective real-time translation of brain activity strongly depends on the quality of neural communication between the brain and the external device. 6G is the next…
Amin Behdad, Amro Nour, Arash Zereshkian, César Márquez-Chin + 1 more
'Miloš R. Popović'] | 1 | Project Description | | 3 | | --- | --- | --- | --- | | | 1.1 | Background and Motivation | 3 | | | 1.2 | Project Goal | 4 | | | 1.3 | Project Requirements | 5 | | | | 1.3.1 Stage 1 | 5 | | | | 1.3.2 Stage 2 | 5 | | | 1.4 | Validation and Acceptance Tests | 6 | | | | 1.4.1 Stage 1 | 6 | | | |…
Md. Ochiuddin Miah, Md. Mahfuzur Rahman, Rafsanjani Muhammod, Dewan Md. Farid
The classification of motor imagery electroencephalogram (MI-EEG) is a pivotal part of the biosignal classification in the brain-computer interface (BCI) applications. Currently, this bio-engineering based technology is being employed by researchers in various fields to develop cutting edge applications. The…
Kotaro Yamashiro, Nobuyoshi Matsumoto, Yuji Ikegaya
Brain-computer interface (BCI) technology has gained recognition in various fields, including clinical applications, assistive technology, and human-computer interaction research. BCI enables communication, control, and monitoring of the affective/cognitive states of users. Recently, BCI has also found applications in…
Md. Ochiuddin Miah, Rafsanjani Muhammod, Khondaker Abdullah Al Mamun, Dewan Md. Farid + 3 more
The classification of motor imagery electroencephalogram (MI-EEG) is a pivotal task in the biosignal classification process in the brain-computer interface (BCI) applications. Currently, this bio-engineering-based technology is being employed by researchers in various fields to develop cuttingedge applications. The…
Andie Robinsons, Craig McBeth, Ruman Rahman, Richard Hague + 1 more
The field of bioelectronics is developing exponentially. There is now a drive to interface electronics with biology for the development of new technologies to improve our understanding of electrical forces in biology. This builds on our recently published work in which we show wireless electrochemistry could be used to…
Authors not listed
Carbon fiber has become the standard electrode material to study neuronal communication. For techniques such as single-cell amperometry at synapses and intracellular recordings of neurotransmitters in secretory vesicles, nanometric electrodes are required. The smaller electrode dimension also offers the added benefit…