24 papers · ranked by Valyu relevance
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…
Krishna Pai, Rakhee Kallimani, Sridhar Iyer, B. Uma Maheswari + 2 more
'Rajashri Khanai' 'Dattaprasad A. Torse'] BCI systems are able to communicate directly between the brain and computer using neural activity measurements without the involvement of muscle movements. For BCI systems to be widely used by people with severe disabilities, long-term studies of their real-world use are…
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…
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…
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…
Joshua Sabio, Nikolas S Williams, Genevieve M McArthur, Nicholas A Badcock
Commercial electroencephalography (EEG) devices have become increasingly available over the last decade. These devices have been used in a wide variety of fields ranging from engineering to cognitive neuroscience. The aim of this study was to chart peer-review articles that used currently available consumer-grade EEG…
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.…
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…
Yiqian Yang
Traditional brain-computer interfaces (BCIs), reliant on costly electroencephalography or invasive implants, struggle with complex human-computer interactions due to setup complexity and limited precision. We present NeuGaze, a novel webcambased system that leverages eye gaze, head movements, and facial expressions to…
Zahmeeth Sakkaff
I do hereby declare that the work reported in this project thesis was exclusively carried out by me under the supervision of Prof. Asiri Nanayakkara and Dr. S. R. Kodituwakku. It describes the results of my own independent research except where due reference has been made in the text. No part of this project thesis has…
Nicholas S. Card, Tyler Singer-Clark, Hamza Peracha, Carrina Iacobacci + 7 more
Brain-computer interfaces (BCIs) can provide naturalistic communication and digital access to people with severe paralysis by decoding neural activity associated with attempted speech and movement. Recent work has demonstrated highly accurate intracortical BCIs for speech and cursor control, but two critical…
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…
Michael A Jensen, Gerwin Schalk, Nuri Ince, Dora Hermes + 2 more
Stereoelectroencephalography (sEEG) is a mesoscale intracranial monitoring method which records from the brain volumetrically with depth electrodes. Implementation of sEEG in BCI has not been well-described across a diverse patient cohort. Across eighteen subjects, channels with high frequency broadband (HFB, 65-115Hz)…
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…
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…
Alaa-Allah Essam, Ammar Ibrahim, Ashar Zanqour, Mariam El-Saqa + 5 more
Brain-computer interfaces (BCIs) exploit brain activity to bypass neuromuscular control with the aim of providing alternative means of communication with the surrounding environment. Such systems can significantly improve the quality of life for patients suffering from severe motor or speech impairment. Multimodal BCIs…
Diane Le
Non-invasive brain-computer interfaces (BCI) utilising electroencephalogram (EEG) signals are a current popular, affordable and accessible method for establishing communication paths between the mind and external devices. However, the challenges faced are inter-subject variability, BCI illiteracy and poor machine…
Evan Canny, Julia Berezutskaya
Individuals with a locked-in state live with severe whole-body paralysis that limits their ability to communicate with family and loved ones. Recent advances in the brain-computer interface (BCI) technology have presented a potential alternative for these people to communicate by detecting neural activity associated…
Authors not listed
For the first time a printable, miniaturized and gate-controlled electrochemical capacitor-diode (G-CAPode) is presented. The heart of the device consists of a recently developed asymmetric electrical double-layer capacitor system based on selective, size-depended ion adsorption. Due to the introduction of a sieving…
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
Chemical oscillators such as the Belousov-Zhabotinsky (BZ) reaction offer a promising foundation for energy-efficient, biologically inspired chemical information processing. While optical and mechanical manipulation of BZ has been extensively studied, electrochemical control has remained largely elusive and lacks…