19 papers · ranked by Valyu relevance
Luis Fernando Nicolas-Alonso, Jaime Gomez-Gil
A brain-computer interface (BCI) is a hardware and software communications system that permits cerebral activity alone to control computers or external devices. The immediate goal of BCI research is to provide communications capabilities to severely disabled people who are totally paralyzed or ‘locked in’ by…
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…
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…
Baraka Maiseli, Abdi T. Abdalla, Libe V. Massawe, Mercy Mbise + 5 more
Brain-computer interface (BCI), an emerging technology that facilitates communication between brain and computer, has attracted a great deal of research in recent years. Researchers provide experimental results demonstrating that BCI can restore the capabilities of physically challenged people, hence improving the…
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…
F. Babiloni, A. Cichocki, S. Gao
Brain-computer interfaces (BCIs) are systems that use brain signals (electric, magnetic, metabolic) to control external devices such as computers, switches, wheelchairs, or neuroprosthesis. While BCI research hopes to create new communication channels for disabled or elderly persons using their brain signals, recently…
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…
Pietro Aricò, Nicolina Sciaraffa, Fabio Babiloni
Recent publications in the Electroencephalogram (EEG)-based brain-computer interface field suggest that this technology could be ready to go outside the research labs and enter the market as a new consumer product. This assumption is supported by the recent advantages obtained in terms of front-end graphical user…
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…
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…
Abdelkader Nasreddine Belkacem, Nuraini Jamil, Sumayya Khalid, Fady Alnajjar
'Fady Alnajjar'] Emerging brain technologies have significantly transformed human life in recent decades. For instance, the closed-loop brain-computer interface (BCI) is an advanced software-hardware system that interprets electrical signals from neurons, allowing communication with and control of the environment. The…
Seung-Schik Yoo, Hyungmin Kim, Emmanuel Filandrianos, Seyed Javid Taghados + 2 more
'Seyed Javid Taghados' 'Shinsuk Park' 'Julie A. Chowen'] Transcranial focused ultrasound (FUS) is capable of modulating the neural activity of specific brain regions, with a potential role as a non-invasive computer-to-brain interface (CBI). In conjunction with the use of brain-to-computer interface (BCI) techniques…
Hyun Jae Baek, Min Hye Chang, Jeong Heo, Kwang Suk Park
Brain-computer interfaces (BCIs) aim to enable people to interact with the external world through an alternative, nonmuscular communication channel that uses brain signal responses to complete specific cognitive tasks. BCIs have been growing rapidly during the past few years, with most of the BCI research focusing on…
Rüdiger Rupp
Brain computer interfaces (BCIs) are devices that measure brain activities and translate them into control signals used for a variety of applications. Among them are systems for communication, environmental control, neuroprostheses, exoskeletons, or restorative therapies. Over the last years the technology of BCIs has…
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.…
Hadeel Alharbi
This umbrella review is motivated to understand the shift in research themes on brain-computer interfacing (BCI) and it determined that a shift away from themes that focus on medical advancement and system development to applications that included education, marketing, gaming, safety, and security has occurred. The…
Gunther Eysenbach, Sohrab Saeb, Joseph Salisbury, Alexander N Pisarchik + 2 more
'Alexander N Pisarchik' 'Vladimir A Maksimenko' 'Alexander E Hramov'] The first attempts to translate neuronal activity into commands to control external devices were made in monkeys yet in 1960s [1]. After that, during 1960-1970, the biological feedback was realized in monkeys, to provide voluntary control of the…
Luz María Alonso-Valerdi
A brain-computer interface (BCI) aims to establish communication between the human brain and a computing system so as to enable the interaction between an individual and his environment without using the brain output pathways. Individuals control a BCI system by modulating their brain signals through mental tasks…