-
openalex
2025-01-01
置信度 0.72
Brain–computer interfaceComputer scienceInterface (matter)Human–computer interactionNeuroscience
-
Interface cerveau-machine à partir d'enregistrement électrique cortical Une Interface Cerveau-Machine (ICM) est un système permettant de transformer l'activité neurale du cerveau en une commande d'effecteurs externes. Cette étude correspond à une étape vers un…
crossref
Andriy Yelisyeyev
2026-03-30T18:34:29Z
置信度 0.70
-
crossref
2022-02-11T06:46:54Z
置信度 0.70
-
openalex
2026-01-01
置信度 0.72
Interface (matter)Computer scienceEngineeringEngineering physicsMaterials science
-
crossref
Ravikiran Tanaji Mane
2021-02-10T15:16:41Z
置信度 0.70
-
crossref
2020-02-04T07:32:41Z
置信度 0.70
-
Vers une interface cerveau-machine pour la restauration de la parole Restorer la faculté de parler chez des personnes paralysées et aphasiques pourrait être envisagée via l’utilisation d’une interface cerveau-machine permettant de contrôler un synthétiseur de …
crossref
Florent Bocquelet
2026-04-02T12:34:25Z
置信度 0.70
-
crossref
2026-07-29T01:53:58Z
置信度 0.70
-
crossref
Christoph Guger, Brendan Z. Allison, Gernot R. Müller-Putz
2015-12-12T14:23:46Z
置信度 0.70
-
We propose a special brain-brain interface (BBI) to enhance human-human interaction while performing collective tasks. The efficiency of the proposed interface is estimated in experimental sessions, where participants are subjected to the prolonged task of cla…
crossref
Vladimir Maksimenko, Alexander Hramov, Anastasia Runnova, Alexander Pisarchik
2019-06-18T00:15:31Z
置信度 0.70
-
Brain-computer interface (BCI) technology will usher in profound changes to the practice of medicine. BCI devices, broadly defined as those capable of reading brain activity and translating this into operation of a device, will offer patients and clinicians ne…
crossref
2020-03-09T14:18:30Z
置信度 0.70
-
crossref
2026-07-29T01:53:58Z
置信度 0.70
-
crossref
2026-07-29T01:53:58Z
置信度 0.70
-
crossref
Adrian Czech
2021-03-29T04:02:31Z
置信度 0.70
-
crossref
Taiga Seri
2026-08-04T19:55:53Z
置信度 0.70
-
crossref
2026-07-29T01:53:58Z
置信度 0.70
-
Brain Computer Interface(BCI) has provided a direct medium of communication between human beings and external devices. It is a boon for people with severe motor disorders as it provides means of control and communication for them. Recently more efforts on out …
crossref
T. Shashibala, Bharti W. Gawali
2016-07-12T14:55:22Z
置信度 0.70
-
crossref
2024-01-10T17:03:06Z
置信度 0.70
-
crossref
Niels Birbaumer, Paul Sauseng
2010-11-02T16:23:23Z
置信度 0.70
-
In the Brain-Computer Interface (BCI) based on Steady-State Visual Evoked Potential (SSVEP), the viewing distance is usually fixed in the 1 m. However, the performance of SSVEP was decreased when the viewing distance is increasing. This paper aims to investiga…
crossref
Hee-Jin Park, Keun-Tae Kim, Seong-Whan Lee
2016-04-25T17:45:23Z
置信度 0.70
-
crossref
2023-08-16T20:00:31Z
置信度 0.70
-
Brain-Computer Interface (BCI) enables the human to control external devices by measuring brain activities. Among the various BCI paradigms, motor imagery (MI) is the natural one to accomplish the objectives of BCI. The asynchronous mode enables the user to pe…
crossref
Hye-Soo An, Jeong-Woo Kim, Seong-Whan Lee
2016-04-25T17:45:23Z
置信度 0.70
-
crossref
Mohammad Hassan Moradi
2022-02-11T06:44:47Z
置信度 0.70
-
This pilot study implements a hybrid BCI system in an effort to deduce the effects of measuring more than one brain signal in a motor imagery (MI) task. In addition to sensorimotor rhythms (SMRs), a steady state visual evoked potential (SSVEP) was introduced t…
crossref
Ciaran McGeady, Aleksandra Vuckovic, Sadasivan Puthusserypady
2019-06-18T00:15:31Z
置信度 0.70
-
Classifying motor imagery (MI) obtained using electroencephalography (EEG) is essential in applications that rely on brain–computer interface (BCI) systems. However, EEG signals often exhibit low signal-to-noise ratios, strong inter-subject variability, and co…
crossref
Jiajun Dai, Nobuaki Kobayashi
2026-03-19T20:04:24Z
置信度 0.70
-
Brain–Computer Interface (BCI) is a technology that facilitates the communication between the brain and the machine. It is a promising field that has lot of potential to be tapped for various applications. To begin with, this chapter explains the basics of the…
crossref
Jyoti R. Munavalli, Priya R. Sankpal, A. Sumathi, Jayashree M. Oli
2023-02-10T21:26:58Z
置信度 0.70
-
crossref
Shuyue Xue
2026-01-27T11:22:58Z
置信度 0.70
-
The inter/intra-subject variability of electroencephalography (EEG) makes the practical use of the brain-computer interface (BCI) difficult. In general, the BCI system requires a calibration procedure to tune the model every time the system is used. This probl…
crossref
Dong-Kyun Han, Serkan Musellim, Dong-Young Kim, Ji-Hoon Jeong
2022-03-17T20:56:01Z
置信度 0.70
-
Spinal cord injury (SCI) is a chronic paralysis that needs a longterm health, economic, and social issue worldwide. A major goal of the physicians and therapists is to enhance the restoration of movements lost after SCI. Following decades of research about the…
crossref
Jinyi Long
2014-11-04T07:44:58Z
置信度 0.70
-
crossref
2020-02-04T14:39:23Z
置信度 0.70
-
crossref
2020-02-06T17:07:29Z
置信度 0.70
-
openalex
2024-01-01
置信度 0.72
Brain–computer interfaceComputer scienceInterface (matter)Human–computer interactionElectroencephalography
-
Over the last several decades, there have been lots of BMI studies. However, it is still difficult to use BMI system in real life. Here, we introduce our three BMI studies to overcome these problems. First, we predicted continuous movement trajectory from non-…
crossref
Hong Gi Yeom, June Sic Kim, Chun Kee Chung
2017-02-20T16:35:38Z
置信度 0.70
-
EEG has been practically used to detect brain signals, which can control brain-computer interfaces (BCls) in a noninvasive way. Recently, low-intensity focused-ultrasound (LIFU) sonication has gained attention as a potent candidate for the noninvasive and spat…
crossref
Byoung-Kyong Min
2013-04-26T23:28:33Z
置信度 0.70
-
crossref
2023-03-28T18:34:29Z
置信度 0.70
-
12 During the last decades, a new capability has emerged by which the human brain can directly communicate with the environment, called a brain–computer interface (BCI), brain–machine interface (BMI), direct neural interface, or mind–machine interface (MMI). T…
openalex
Chang S. Nam, Inchul Choi, Amy Wadeson, Mincheol Whang
2018-01-09
置信度 0.72
Interface (matter)Brain–computer interfaceComputer scienceHuman–computer interactionPsychology
-
Brain–computer interfaces (BCIs) are emerging technologies that enable direct communication between the human brain and external devices. As BCIs transition from laboratory research to educational practice, they offer new possibilities for advancing STEM learn…
crossref
Sandra Cano
2026-01-27T10:58:16Z
置信度 0.70
-
crossref
Srinivasa Rao Gundu, Charan Arur Panem
2024-11-08T03:30:38Z
置信度 0.70
-
crossref
Kevin Matsuno, Vidya Nandikolla
2021-08-03T19:17:24Z
置信度 0.70
-
Objective. A black box called brain-computer interface (BCI) model is used to identify another black box, the brain. However, one black box cannot explain another black box. This paper presents the first analytic “white box” brain-computer interface algorithm …
crossref
Gang Liu, Jing Wang
2021-01-06T23:01:59Z
置信度 0.70
-
The implantable brain-machine interface has been extensively applied in recent research. There is a little neural implant designed to record the neural spike signals, which needs a higher requirement of the characteristics. In the work, a novel signal acquisit…
crossref
Qingya Li, Zhiwei Zhang
2024-04-02T18:37:26Z
置信度 0.70
-
Objective. In the traditional sense, the modeling approaches can be divided into white-box (physics-based), black-box (data-driven), and gray-box (the combination of physics-based and data-driven). Because the human brain is a black box itself, the EEG-BCI alg…
crossref
Gang Liu, Jing Wang
2021-04-06T12:51:38Z
置信度 0.70
-
Neural engineers and clinicians are starting to translate advances in electrodes, neural computation, and signal processing into clinically useful devices to allow control of wheelchairs, spellers, prostheses, and other devices. In the process, large amounts o…
crossref
Eran Klein, Alan Rubel
2019-03-14T09:35:55Z
置信度 0.70
-
crossref
2020-02-04T02:04:58Z
置信度 0.70
-
Brain computer interfaces (BCIs) promise to provide a novel access channel for assistive technologies, including augmentative and alternative communication (AAC) systems, to people with severe speech and physical impairments (SSPI). Research on the subject has…
crossref
Mohammad Moghadamfalahi
2021-05-10T17:10:59Z
置信度 0.70
-
crossref
2022-03-17T20:42:04Z
置信度 0.70
-
This research investigated an online onset detection (i.e., ON state detection in asynchronous BCIs) method for BCIs by opening a message when it arrives in two different daily-life task scenarios (watching video and reading text). A new sound-production relat…
crossref
YoungJae Song, Francisco Sepulveda
2017-02-20T16:35:38Z
置信度 0.70
-
Brain-computer interface (BCI) is an innovative method of integrating technology for healthcare. Utilizing BCI technology allows for direct communication and/or control between the brain and an external device, thereby displacing conventional neuromuscular pat…
crossref
Zahrah Alwi Alkaff, Nurul Hashimah Ahamed Hassain Malim, Putra Sumari, Jafri Malin Abdullah
2024-01-05T14:32:19Z
置信度 0.70
-
<div><div> <p><a></a></p><div> <p><a></a><a><i>Objective. </i></a>Modeling the brain as a white box is vital for investigating the brain. However, the physical properties of th…
crossref
Gang Liu, Jing Wang
2021-01-07T04:02:42Z
置信度 0.70
-
crossref
M. Agustina Garcés, Lorena L. Orosco
2018-06-08T18:37:55Z
置信度 0.70
-
Neuro-driving simulation framework was proposed in this article for studying neural correlates of braking intention in diversified driving situations. In addition, the possibility was investigated that these neural correlates can be used to detect a participan…
crossref
Jeong-Woo Kim, Il-Hwa Kim, Stefan Haufe, Seong-Whan Lee
2014-04-15T21:17:31Z
置信度 0.70
-
crossref
2020-02-03T13:41:46Z
置信度 0.70
-
Objective. Modeling the brain as a white box is vital for investigating the brain. However, the physical properties of the human brain are unclear. Therefore, BCI algorithms using EEG signals are generally a data-driven approach and generate a black- or gray-b…
crossref
Gang Liu, Jing Wang
2021-08-12T11:28:02Z
置信度 0.70
-
crossref
2021-05-28T08:19:49Z
置信度 0.70
-
crossref
2021-05-17T22:58:03Z
置信度 0.70
-
crossref
2022-02-11T06:46:55Z
置信度 0.70
-
In recent years, brain-computer interface (BCI) has been developing as a communication and rehabilitation tool for patients with neurological diseases, such as stroke and spinal cord injury. This system decodes the user's intention from the brain signal, e.g. …
crossref
Ren Xu
2022-02-21T08:31:59Z
置信度 0.70
-
This pitch was presented during the IEEE Young Professionals event at the 2022 IEEE 21st Mediterranean Electrotechnical Conference (MELECON), hosted by Università degli Studi di Palermo.It refers to research and development activities for a wearable brain-comp…
crossref
2024-02-27T03:40:10Z
置信度 0.70
-
crossref
Anna Nolte
2021-03-29T04:02:31Z
置信度 0.70
-
crossref
Adam Lukosik
2021-03-29T04:02:31Z
置信度 0.70
-
The technology of Brain Computer Interface (BCI) is a rapidly growing research field with vast applications. BCI acts as a bridge between a human brain and the machine-like computer. The main purpose of BCI system is to enable the people with disability to int…
crossref
Sushmitha N., Sudarshan. B.G., Ramakanth Kumar P.
2026-02-08T12:44:04Z
置信度 0.70
-
crossref
Christoph Guger, Brendan Z. Allison
2014-11-01T11:14:34Z
置信度 0.70
-
The field of brain-computer interfaces (BCIs, also known as brain-machine interfaces (BMIs) continues to be an area of rapid growth and development, attracting widespread interest both from the res...
crossref
Jane E. Huggins, Marc W. Slutzky
2020-04-13T16:41:41Z
置信度 0.70
-
Deep learning has shown promise in decoding brain signals, such as electroencephalogram (EEG), in the field of brain-computer interfaces (BCIs). However, the non-stationary characteristics of EEG signals pose challenges for training neural networks to acquire …
crossref
Byeong-Hoo Lee, Byoung-Hee Kwon, Dong-Kyun Han
2024-04-02T18:37:26Z
置信度 0.70
-
crossref
Ruotian Luo
2026-01-27T10:11:59Z
置信度 0.70
-
Most of event-related potential (ERP)-based brain-computer interface (BCI) spellers are limited practical value for paralyzed patients with severe oculomotor impairments. Recently, a gaze-independent BCI speller was proposed that uses rapid serial visual prese…
crossref
Dong-Ok Won, Han-Jeong Hwang, Klaus-Robert Muller, Seong-Whan Lee
2017-02-20T16:35:38Z
置信度 0.70
-
crossref
Wenhang Ren
2026-01-27T11:05:47Z
置信度 0.70
-
Active brain–computer interfaces (BCIs) that rely solely on user recall offer advantages over passive BCIs requiring stimulus presentation devices in terms of portability, system simplification, and low power consumption. However, the data from these recollect…
crossref
Nobuaki Kobayashi, Takuya Matsunaga
2026-03-19T20:04:24Z
置信度 0.70
-
Combining smartphone apps with brain-computer interface (BCI) technology offers an innovative way to enhance smart banking solutions. This study aims to explore the usage of brain-computer interfaces (BCIs) to operate mobile phones in banking environments, int…
crossref
Neha Jain, Suchita Arora
2025-05-14T13:56:44Z
置信度 0.70
-
openalex
Sadaf Khademi, Mehrnoosh Neghabi, Morteza Farahi, Mehdi Shirzadi 等
2022-01-01
置信度 0.72
The ImaginaryBrain–computer interfaceInterface (matter)Movement (music)Computer science
-
crossref
Christoph Guger, Günter Edlinger
2010-11-02T16:23:23Z
置信度 0.70
-
This chapter provides a comprehensive introduction to Brain-Computer Interfaces (BCIs), which are advanced systems designed to enable direct communication between the human brain and external devices. The core principle of BCIs is to capture and decode neural …
crossref
Faridoddin Shariaty, Sanjiban Sekhar Roy
2025-05-23T11:21:24Z
置信度 0.70
-
Brain Computer Interface: EEG Signal Processing discusses electroencephalogram (EEG) signal processing using effective methodology and algorithms. This book provides a basic introduction to EEG and a classification of different components present in EEG. It al…
crossref
Narayan Panigrahi, Saraju P. Mohanty
2022-05-27T10:39:05Z
置信度 0.70
-
Long duration usage of BCI systems may induce a loss of attention in the participant and result in a decrease of system performance. Therefore, investigation of fatigue during longtime usage and its effect on the signal quality are necessary for the use of BCI…
crossref
Seung-Pyo Seo, Min-Ho Lee, John Williamson, Seong-Whan Lee
2019-06-18T00:15:31Z
置信度 0.70
-
The purpose of this study was to develop sit-to-stand movement intention decoding algorithms based on brain responses to the vibrotactile stimulation. Specifically, we studied a simultaneous hybrid brain-computer interface (BCI) by combining steady-state somat…
crossref
Kabmun Cha, Jaehyung Lee, Hyungmin Kim, Choonghyun Kim 等
2019-06-18T00:15:31Z
置信度 0.70
-
crossref
Christoph Guger, Brendan Allison, Gernot Müller-Putz
2015-12-12T14:23:46Z
置信度 0.70
-
For generations, humans dreamed about the ability to communicate and interact with machines through thought alone or to create devices that can peer into a person’s mind and thoughts. Researchers have developed new technologies to create brain computer interfa…
crossref
Yacine Boudria
2020-05-26T19:17:06Z
置信度 0.70
-
Matyasko, Parastoo Fahimi, and many more who made this time enjoyable as well as helped
crossref
Vasilisa Mishuhina
2020-10-28T06:55:20Z
置信度 0.70
-
crossref
2020-01-15T04:18:56Z
置信度 0.70
-
crossref
2025-03-28T02:29:03Z
置信度 0.70
-
The Brain–Computer Interface (BCI) is not just a technological progress but an ontological rupture—a disruption of the fundamental structure of human cognition and learning. Existing definitions of BCI focus on its clinical functionalities and applications, wi…
crossref
Tony Chae, Kyuin Chae
2025-08-11T20:25:42Z
置信度 0.70
-
Chapter 4, “Brain–Computer Interface (BCI)” turns the focus of neurotechnologies from the brain to the nervous system more broadly. Recent innovations and technical details are presented, the latter including steps involved in using the brain–computer interfac…
crossref
Suraj Sood
2024-10-15T15:09:34Z
置信度 0.70
-
crossref
2020-04-10T04:23:57Z
置信度 0.70
-
crossref
2022-02-11T06:46:52Z
置信度 0.70
-
Brain activity is usually measured by non-invasive modalities. Inter alia, the electroencephalogram (EEG) is used most commonly. However, EEG is very sensitive to other biosignals, so other bio-signal detection modalities must be used as supplementary systems.…
crossref
Jae-Ho Han, Seungbae Ji, Chang Shi, Seung-Beom Yu 等
2015-04-03T10:53:39Z
置信度 0.70
-
crossref
J.R. Wolpaw
2009-04-17T09:05:50Z
置信度 0.70
-
This chapter investigates the techniques and technologies of the brain–computer interface (BCI). BCI is a subset of the human–computer interface (HCI) that seeks to establish data input and output connections between the central and peripheral nervous systems …
crossref
David J. Gunkel
2020-05-04T16:00:20Z
置信度 0.70
-
crossref
Christoph Guger, Michael Tangermann, Brendan Z. Allison
2021-04-01T11:04:01Z
置信度 0.70
-
Abstract : Brain-computer interface (BCI) technology, a subset of human-machine interface, will impose significant utility, relevance, and strategic advantage with national security opportunities and challenges. This technology will advance computing speed, co…
crossref
Brian E. Moore
2017-06-08T12:29:05Z
置信度 0.70
-
crossref
Karla Burelo
2021-08-28T04:02:48Z
置信度 0.70
-
crossref
Christoph Guger, Brendan Allison, Junichi Ushiba
2017-04-29T13:08:54Z
置信度 0.70
-
The brain computer interface (BCI) is an alternative communication method for those living with physically disabling conditions such as neuromuscular disorders, traumatic brain injuries, and stroke that uses a cap with embedded electrodes to read electroenceph…
crossref
Vincent J. Petaccio, Hasan Ayaz
2021-07-16T02:07:51Z
置信度 0.70
-
crossref
Christoph Guger, Brendan Z. Allison, Aysegul Gunduz
2021-08-28T04:02:48Z
置信度 0.70
-
crossref
Abdulhamit Subasi, Saeed Mian Qaisar
2025-01-31T14:25:54Z
置信度 0.70
-
crossref
José del R. Millán, Pierre W. Ferrez, Anna Buttfield
2019-01-11T13:53:24Z
置信度 0.70
-
BCI (brain-computer interface) and functional electrical stimulation (FES) technologies have advanced significantly over the last several decades. Recent efforts have involved the integration of these technologies with the goal of restoring functional movement…
crossref
2020-03-09T14:18:23Z
置信度 0.70
-
crossref
Saeed Mian Qaisar, Abdulhamit Subasi
2025-01-31T14:25:54Z
置信度 0.70
-
Yoga and meditation have long been recognized for their profound impact on mental health, emotional regulation, and cognitive performance. However, understanding the underlying neural mechanisms that govern these altered states of consciousness remains a key r…
crossref
Bandari Ramaraju, Ravichander Janapati, Sreedhar Kollem
2026-04-30T14:14:06Z
置信度 0.70
-
This article explores how brain-computer interfaces (BCI) are depicted in the English-speaking media, especially by news outlets. We use the FACTICA database to analyze depictions of BCIs from the first time the term appeared in the media (1993) up until 31 De…
crossref
F Gilbert, C Pham, Jnm Viaña, W. Gillam
2019-08-28T07:06:21Z
置信度 0.70
-
crossref
2017-06-01T05:09:16Z
置信度 0.70