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Two rhesus monkeys were trained to move a cursor using neural activity recorded with silicon arrays of 96 microelectrodes implanted in the primary motor cortex. We have developed a method to extract movement information from the recorded single and multi-unit …
openalex
George W. Fraser, Steven M. Chase, Andrew Whitford, Andrew B. Schwartz
2009-09-01
置信度 0.72
Spike sortingCursor (databases)Computer scienceBrain–computer interfaceSpike (software development)
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Brain-computer interfaces (BCIs) allow a user to interact with a computer system using thought. However, only recently have devices capable of providing sophisticated multi-dimensional control been achieved non-invasively. A major goal for non-invasive BCI sys…
openalex
Alexander Doud, John P. Lucas, Marc T. Pisansky, Bin He
2011-10-26
置信度 0.72
Brain–computer interfaceMotor imageryComputer scienceInterface (matter)Motor control
-
openalex
Alexander E. Hramov, Vladimir Maksimenko, Alexander N. Pisarchik
2021-03-24
置信度 0.72
Brain–computer interfaceExoskeletonElectroencephalographyBrain activity and meditationComputer science
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The performance of brain-computer interfaces (BCIs) improves with the amount of available training data, the statistical distribution of this data, however, varies across subjects as well as across sessions within individual subjects, limiting the transferabil…
openalex
Vinay Jayaram, Morteza Alamgir, Yasemin Altün, Bernhard Schölkopf 等
2015-12-01
置信度 0.72
Brain–computer interfaceComputer scienceTransfer of learningSession (web analytics)Context (archaeology)
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OBJECTIVE: Brain-computer interfaces (BCIs) can enable individuals with tetraplegia to communicate and control external devices. Though much progress has been made in improving the speed and robustness of neural control provided by intracortical BCIs, little r…
openalex
David M. Brandman, Tommy Hosman, Jad Saab, Michael C. Burkhart 等
2018-01-24
置信度 0.72
TetraplegiaBrain–computer interfaceCalibrationComputer scienceInterface (matter)
-
Cognitive motor dissociation describes a subset of patients with disorders of consciousness who show neuroimaging evidence of consciousness but no detectable command-following behaviours. Although essential for family counselling, decision-making, and the desi…
openalex
Jiahui Pan, Qiuyou Xie, Pengmin Qin, Yan Chen 等
2020-01-23
置信度 0.72
Dissociation (chemistry)CognitionNeuroscienceBrain–computer interfacePsychology
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With the continuous development of portable noninvasive human sensor technologies such as brain-computer interfaces (BCI), multimodal emotion recognition has attracted increasing attention in the area of affective computing. This paper primarily discusses the …
openalex
Zhipeng He, Zina Li, Fuzhou Yang, Lei Wang 等
2020-09-29
置信度 0.72
Brain–computer interfaceModalitiesComputer scienceAffective computingEmotion recognition
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Brain-computer interfaces based on fMRI enable real-time feedback of circumscribed brain regions to learn volitional regulation of those regions. This is an emerging field of intense research, with potential for multiple applications in neuroscientific researc…
openalex
Ranganatha Sitaram, Nikolaus Weiskopf, Andrea Carìa, Ralf Veit 等
2008-01-01
置信度 0.72
Brain–computer interfaceComputer sciencePreprocessorVisualizationField (mathematics)
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Electroencephalogram (EEG) based brain-computer interfaces (BCI) have been studied since the 1970s. Currently, the main focus of BCI research lies on the clinical use, which aims to provide a new communication channel to patients with motor disabilities to imp…
openalex
Yijun Wang, Tzyy‐Ping Jung
2011-05-31
置信度 0.72
Brain–computer interfaceElectroencephalographyComputer scienceBottleneckInterface (matter)
-
Intracortical brain computer interfaces (iBCIs) are being developed to enable people to drive an output device, such as a computer cursor, directly from their neural activity. One goal of the technology is to help people with severe paralysis or limb loss. Key…
openalex
Mark Homer, A. V. Nurmikko, John P. Donoghue, Leigh R. Hochberg
2013-07-11
置信度 0.72
DecodesComputer scienceBrain–computer interfaceHuman–computer interactionCursor (databases)
-
openalex
Noman Naseer, Keum‐Shik Hong
2013-08-20
置信度 0.72
Brain–computer interfaceMotor imageryWristLinear discriminant analysisFunctional near-infrared spectroscopy
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The ability to control electroencephalographic rhythms and to map those changes to the actuation of mechanical devices provides the basis for an assistive brain-computer interface (BCI). In this study, we investigate the ability of subjects to manipulate the s…
openalex
Jaime A. Pineda, D.S. Silverman, Andrey Vankov, J. D. Hestenes
2003-06-01
置信度 0.72
Brain–computer interfaceRhythmContext (archaeology)Brain activity and meditationSensorimotor rhythm
-
openalex
Hubert Cecotti
2011-01-01
置信度 0.72
Brain–computer interfaceSpellingComputer scienceElectroencephalographyMotor imagery
-
Electrocorticography (ECoG) has emerged as a new signal platform for brain-computer interface (BCI) systems. Classically, the cortical physiology that has been commonly investigated and utilized for device control in humans has been brain signals from the sens…
openalex
Eric C. Leuthardt, Charles M. Gaona, Mohit Sharma, Nicholas Szrama 等
2011-04-07
置信度 0.72
Brain–computer interfaceComputer scienceInterface (matter)Speech recognitionHuman–computer interaction
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There is evidence that conventional visual brain-computer interfaces (BCIs) based on event-related potentials cannot be operated efficiently when eye movements are not allowed. To overcome this limitation, the aim of this study was to develop a visual speller …
openalex
Matthias S. Treder, Nico M. Schmidt, Benjamin Blankertz
2011-10-01
置信度 0.72
CovertBrain–computer interfaceGazeComputer scienceFeature (linguistics)
-
Moving a brain-computer interface (BCI) system from a laboratory demonstration to real-life applications still poses severe challenges to the BCI community. This study aims to integrate a mobile and wireless electroencephalogram (EEG) system and a signal-proce…
openalex
Yu-Te Wang, Yijun Wang, Tzyy‐Ping Jung
2011-03-24
置信度 0.72
Brain–computer interfaceComputer sciencePhoneInterface (matter)Wearable computer
-
openalex
Maarten De Vos, Katharina Gandras, Stefan Debener
2013-08-29
置信度 0.72
Brain–computer interfaceLinear discriminant analysisEvent-related potentialElectroencephalographyPsychology
-
Neurological disorders such as Parkinson's disease, stroke, and spinal cord injury can pose significant threats to human mortality, morbidity, and functional independence. Brain-Computer Interface (BCI) technology, which facilitates direct communication betwee…
openalex
Hongyu Zhang, Le Jiao, Songxiang Yang, Haopeng Li 等
2024-08-14
置信度 0.72
MedicineKey (lock)Brain–computer interfaceNeurosciencePsychiatry
-
openalex
Dorothée Lulé, Quentin Noirhomme, Sonja C. Kleih, Camille Chatelle 等
2012-08-21
置信度 0.72
Brain–computer interfaceMinimally conscious statePersistent vegetative stateLocked-in syndromeWakefulness
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Brain-computer interfaces (BCIs) may be a future communication channel for motor-disabled people. In surface electroencephalogram (EEG)-based BCIs, the extracted features are often derived from spectral estimates and autoregressive models. We examined the usef…
openalex
E. Gysels, P. Celka
2004-12-01
置信度 0.72
Phase synchronizationBrain–computer interfaceCoherence (philosophical gambling strategy)ElectroencephalographySynchronization (alternating current)
-
openalex
Yangsong Zhang, Peng Xu, Kaiwen Cheng, Dezhong Yao
2013-08-05
置信度 0.72
Brain–computer interfaceComputer scienceCanonical correlationSynchronization (alternating current)Interface (matter)
-
openalex
Yizhi Liu, Mahmoud Habibnezhad, Houtan Jebelli
2021-01-08
置信度 0.72
TeleoperationRobotBrain–computer interfaceInterface (matter)Controllability
-
openalex
Sergio Ruíz, Korhan Buyukturkoglu, Mohit Rana, Niels Birbaumer 等
2013-05-01
置信度 0.72
NeurofeedbackBrain–computer interfaceBrain activity and meditationNeuroscienceCognition
-
Non-invasive Brain-Computer Interfaces (BCI) have demonstrated great promise for neuroprosthetics and assistive devices. Here we aim to investigate methods to combine Electroencephalography (EEG) and functional Near-Infrared Spectroscopy (fNIRS) in an asynchro…
openalex
Alessio Paolo Buccino, Hasan Onur Keleş, Ahmet Omurtag
2016-01-05
置信度 0.72
Brain–computer interfaceElectroencephalographySensorimotor rhythmFunctional near-infrared spectroscopyComputer science
-
During the last ten years there has been growing interest in the development of Brain Computer Interfaces (BCIs).\nThe field has mainly been driven by the needs of completely paralyzed patients to communicate.\nWith a few exceptions, most human BCIs are based …
openalex
Thomas Navin Lal, Thilo Hinterberger, Guido Widman, Michael Schröder 等
2004-12-01
置信度 0.72
Brain–computer interfaceElectrocorticographyElectroencephalographyComputer scienceSupport vector machine
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UNLABELLED: Attention deficit hyperactivity disorder (ADHD) symptoms can be difficult to treat. We previously reported that a 20-session brain-computer interface (BCI) attention training programme improved ADHD symptoms. Here, we investigated a new more intens…
openalex
Choon Guan Lim, Tih Shih Lee, Cuntai Guan, Daniel Fung 等
2012-10-24
置信度 0.72
Stroop effectAttention deficit hyperactivity disorderBrain–computer interfaceRating scaleElectroencephalography
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The aim of this study is to evaluate Neuro Sky's Mindset headset as a minimally invasive method of measuring the attention and meditation levels of a subject. Two psychologically-based tests were conducted to assess the suitability of the headset to measure an…
openalex
Katie Crowley, Aidan Sliney, Ian Pitt, David Murphy
2010-07-01
置信度 0.72
HeadsetMindsetMeditationBrain–computer interfaceInterface (matter)
-
A brain–computer interface (BCI) enables a user to communicate directly with a computer using only the central nervous system. An affective BCI (aBCI) monitors and/or regulates the emotional state of the brain, which could facilitate human cognition, communica…
openalex
Dongrui Wu, Bao‐Liang Lu, Bin Hu, Zhigang Zeng
2023-05-31
置信度 0.72
Brain–computer interfaceComputer scienceInterface (matter)CognitionHuman–computer interaction
-
Neuropsychological studies suggest that co-operative activities among different brain functional areas drive high-level cognitive processes. To learn the brain activities within and among different functional areas of the brain, we propose local-global-graph n…
openalex
Yi Ding, Neethu Robinson, Chengxuan Tong, Qiuhao Zeng 等
2023-01-24
置信度 0.72
GraphComputer scienceElectroencephalographyConvolutional neural networkArtificial intelligence
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The objective of this study was to investigate the efficacy of an Electroencephalography (EEG)-based Motor Imagery (MI) Brain-Computer Interface (BCI) coupled with a Haptic Knob (HK) robot for arm rehabilitation in stroke patients. In this three-arm, single-bl…
openalex
Kai Keng Ang, Cuntai Guan, Kok Soon Phua, Chuanchu Wang 等
2014-07-29
置信度 0.72
Brain–computer interfaceRandomized controlled trialPhysical medicine and rehabilitationRehabilitationMedicine
-
openalex
Ziming Liu, Jeremy Shore, Miao Wang, Fengpei Yuan 等
2021-04-02
置信度 0.72
Brain–computer interfaceComputer scienceElectroencephalographyUsabilityMultimodality
-
openalex
Thorsten O. Zander, Christian Kothe, Sabine Jatzev, Matti Gaertner
2010-01-01
置信度 0.72
Brain–computer interfaceComputer scienceHuman–computer interactionCategorizationCovert
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An electroencephalographic (EEG) brain-computer interface (BCI) internet browser was designed and evaluated with 10 healthy volunteers and three individuals with advanced amyotrophic lateral sclerosis (ALS), all of whom were given tasks to execute on the inter…
openalex
Emily M. Mugler, Carolin A. Ruf, Sebastian Halder, Michael Bensch 等
2010-09-01
置信度 0.72
The InternetBrain–computer interfaceComputer scienceInterface (matter)Web browser
-
openalex
Niels Birbaumer, Ander Ramos‐Murguialday, Cornelia Weber, Pedro Montoya 等
2009-01-01
置信度 0.72
NeurofeedbackBrain–computer interfaceElectroencephalographyLinear discriminant analysisPhysical medicine and rehabilitation
-
openalex
Bin He, Shangkai Gao, Han Yuan, Jonathan R. Wolpaw
2012-11-09
置信度 0.72
Computer scienceHuman–computer interactionPsychology
-
Even though feedback is considered to play an important role in learning how to operate a brain-computer interface (BCI), to date no significant influence of feedback design on BCI-performance has been reported in literature. In this work, we adapt a standard …
openalex
Álvaro Barbero, Moritz Grosse‐Wentrup
2010-07-27
置信度 0.72
Brain–computer interfaceMotor imageryComputer scienceInterface (matter)Human–computer interaction
-
Parametric modeling strategies are explored in conjunction with linear discriminant analysis for use in an electroencephalogram (EEG)-based brain-computer interface (BCI). A left/right self-paced typing exercise is analyzed by extending the usual autoregressiv…
openalex
David Burke, Simon P. Kelly, Philip de Chazal, Richard B. Reilly 等
2005-03-01
置信度 0.72
Autoregressive modelBrain–computer interfaceElectroencephalographyPattern recognition (psychology)Computer science
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This paper presents a novel brain-computer interface (BCI) based on motion-onset visual evoked potentials (mVEPs). mVEP has never been used in BCI research, but has been widely studied in basic research. For the BCI application, the brief motion of objects emb…
openalex
Fei Guo, Bo Hong, Xiaorong Gao, Shangkai Gao
2008-11-18
置信度 0.72
Brain–computer interfaceComputer scienceLinear discriminant analysisMotion (physics)Interface (matter)
-
Brain-computer interfaces (BCIs) enable humans or animals to communicate or control external devices without muscle activity using electric brain signals. The BCI used here is based on self-regulation of slow cortical potentials (SCPs), a skill that most peopl…
openalex
Thilo Hinterberger, Ralf Veit, Barbara Wilhelm, Nikolaus Weiskopf 等
2005-06-01
置信度 0.72
Functional magnetic resonance imagingNeuroscienceBrain–computer interfaceThalamusBrain activity and meditation
-
openalex
Noman Naseer, Melissa Jiyoun Hong, Keum‐Shik Hong
2013-11-20
置信度 0.72
Decoding methodsLinear discriminant analysisBrain–computer interfaceFunctional near-infrared spectroscopySupport vector machine
-
Although it ranks among the oldest tools in neuroscientific research, electroencephalography (EEG) still forms the method of choice in a wide variety of clinical and research applications. In the context of brain-computer interfacing (BCI), EEG recently has be…
openalex
Thorsten O. Zander, Moritz Lehne, Klas Ihme, Sabine Jatzev 等
2011-01-01
置信度 0.72
ElectroencephalographyContext (archaeology)Oddball paradigmBrain–computer interfaceComputer science
-
Brain computer interfaces (BCI) are becoming increasingly popular in the gaming and entertainment industries. Consumer-grade BCI devices are available for a few hundred dollars and are used in a variety of applications, such as video games, hands-free keyboard…
openalex
Ivan Martinović, D. S. Davies, Mario Frank, Daniele Perito 等
2012-08-08
置信度 0.72
Brain–computer interfaceComputer scienceSide channel attackComputer securityChannel (broadcasting)
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All people experience aging, and the related physical and health changes, including changes in memory and brain function. These changes may become debilitating leading to an increase in dependence as people get older. Many external aids and tools have been dev…
openalex
Abdelkader Nasreddine Belkacem, Nuraini Jamil, Jason Palmer, Sofía Ouhbi 等
2020-06-30
置信度 0.72
WheelchairBrain–computer interfaceCognitionQuality of life (healthcare)Physical medicine and rehabilitation
-
Brain-computer interface (BCI) has been the subject of extensive research recently. Governments and companies have substantially invested in relevant research and applications. The restoration of communication and motor function, the treatment of psychological…
openalex
Junjie Wang, Tengjiao Wang, Haoyan Liu, Kun Wang 等
2023-05-05
置信度 0.72
Brain–computer interfaceElectrodeInterface (matter)Materials scienceNoise (video)
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OBJECTIVE: Individuals with neurological disease or injury such as amyotrophic lateral sclerosis, spinal cord injury or stroke may become tetraplegic, unable to speak or even locked-in. For people with these conditions, current assistive technologies are often…
openalex
John D. Simeral, Tommy Hosman, Jad Saab, Sharlene N. Flesher 等
2021-03-30
置信度 0.72
Brain–computer interfaceComputer scienceTetraplegiaWirelessNeuroprosthetics
-
P300 speller is a communication tool with which one can input texts or commands to a computer by thought. The amplitude of the P300 evoked potential is inversely proportional to the probability of infrequent or task-related stimulus. In existing P300 spellers,…
openalex
Cuntai Guan, M. Thulasidas, Jiankang Wu
2005-06-28
置信度 0.72
Brain–computer interfaceComputer scienceStimulus (psychology)Speech recognitionInformation transfer
-
We propose a new multistage procedure for a real-time brain-machine/computer interface (BCI). The developed system allows a BCI user to navigate a small car (or any other object) on the computer screen in real time, in any of the four directions, and to stop i…
openalex
Pablo Martínez, Hovagim Bakardjian, Andrzej Cichocki
2007-01-01
置信度 0.72
Brain–computer interfaceComputer scienceNeurofeedbackInterface (matter)Modular design
-
The majority of subjects who attempt to learn control of a brain-computer interface (BCI) can do so with adequate training. Much like when one learns to type or ride a bicycle, BCI users report transitioning from a deliberate, cognitively focused mindset to ne…
openalex
Jeremiah Wander, Timothy Blakely, Kai J. Miller, Kurt E. Weaver 等
2013-06-10
置信度 0.72
Brain–computer interfacePremotor cortexInterface (matter)Posterior parietal cortexTask (project management)
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One innovation currently influencing physical medicine and rehabilitation is brain-computer interface (BCI) technology. BCI systems used for motor control record neural activity associated with thoughts, perceptions, and motor intent; decode brain signals into…
openalex
Marcia Bockbrader, Gerard E. Francisco, Ray Lee, Jared D. Olson 等
2018-09-01
置信度 0.72
Brain–computer interfaceRehabilitationHuman–computer interactionComputer scienceInterface (matter)
-
Alongside the best-known applications of brain-computer interface (BCI) technology for restoring communication abilities and controlling external devices, we present the state of the art of BCI use for cognitive assessment and training purposes. We first descr…
openalex
Laura Carelli, Federica Solca, Andrea Faini, P. Meriggi 等
2017-01-01
置信度 0.72
RehabilitationCognitive rehabilitation therapyCognitionInterface (matter)Physical medicine and rehabilitation
-
Asynchronous control is an important issue for brain-computer interfaces (BCIs) working in real-life settings, where the machine should determine from brain signals not only the desired command but also when the user wants to input it. In this paper, we propos…
openalex
Haihong Zhang, Cuntai Guan, Chuanchu Wang
2008-05-21
置信度 0.72
Asynchronous communicationComputer scienceBrain–computer interfaceComputational modelNeural engineering
-
openalex
Roman Krepki, Benjamin Blankertz, Gabriel Curio, Klaus‐Robert Müller
2007-02-14
置信度 0.72
Brain–computer interfaceComputer scienceHuman–computer interactionInterface (matter)Multimedia
-
openalex
Liesjet van Dokkum, Tomás Ward, Isabelle Laffont
2015-01-07
置信度 0.72
NeurorehabilitationBrain–computer interfaceRehabilitationMotor imageryTask (project management)
-
Recently brain-computer interface (BCI) control was integrated into the commercial assistive technology product QualiWORLD (QualiLife Inc., Paradiso-Lugano, CH). Usability of the first prototype was evaluated in terms of effectiveness (accuracy), efficiency (i…
openalex
Claudia Zickler, Angela Riccio, Francesco Leotta, Sandra Hillian-Tress 等
2011-10-01
置信度 0.72
UsabilityBrain–computer interfaceAssistive technologyInterface (matter)Computer science
-
Brain-computer interfaces (BCIs) provide a way for the brain to interface directly with a computer. Many different brain signals can be used to control a device, varying in ease of recording, reliability, stability, temporal and spatial resolution, and noise. …
openalex
Kai J. Miller, Dora Hermes, Nathan P. Staff
2020-07-01
置信度 0.72
Brain–computer interfaceElectrocorticographyComputer scienceExoskeletonNeuroprosthetics
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This article raises various issues in the design of an efficient BCI system in multimedia applications. The main focus is on one specific modality, namely an electroencephalography (EEG)-based BCI. In doing so, we provide an overview of the most recent progres…
openalex
Touradj Ebrahimi, Jean-Marc Vésin, G. Garcia
2003-01-01
置信度 0.72
Brain–computer interfaceComputer scienceFocus (optics)Interface (matter)Electroencephalography
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Current rehabilitation therapies for stroke rely on physical practice (PP) by the patients. Motor imagery (MI), the imagination of movements without physical action, presents an alternate neurorehabilitation for stroke patients without relying on residue movem…
openalex
Kai Keng Ang, Cuntai Guan
2015-05-12
置信度 0.72
NeurorehabilitationBrain–computer interfaceMotor imageryPhysical medicine and rehabilitationStroke (engine)
-
Brain-computer interface (BCI) has proven to be a useful tool for providing alternative communication and mobility to patients suffering from nervous system injury. BCI has been and will continue to be implemented into rehabilitation practices for more interac…
openalex
Alexis Burns, Hojjat Adeli, John A. Buford
2014-09-05
置信度 0.72
Brain–computer interfaceNeuroscienceSpinal cord injuryNervous systemAmyotrophic lateral sclerosis
-
Brain-computer interfaces (BCIs) enable direct and near-instant communication between the brain and electronic devices. One of the biggest remaining challenges is to develop an effective noninvasive BCI that allows the recording electrodes to avoid hair on hum…
openalex
Sen Lin, Junchen Liu, Wenzheng Li, Dong Wang 等
2019-08-27
置信度 0.72
ElectrodeElectrical conductorMaterials scienceBrain–computer interfaceElectroencephalography
-
A brain-computer interface (BCI) is a communication system that can help users interact with the outside environment by translating brain signals into machine commands. The use of electroencephalographic (EEG) signals has become the most common approach for a …
openalex
Lun‐De Liao, Chi‐Yu Chen, I-Jan Wang, Sheng‐Fu Chen 等
2012-01-28
置信度 0.72
Brain–computer interfaceElectroencephalographyWearable computerComputer scienceInterface (matter)
-
Rapid serial visual presentation (RSVP) combined with the detection of event-related brain responses facilitates the selection of relevant information contained in a stream of images presented rapidly to a human. Event related potentials (ERPs) measured non-in…
openalex
Stephanie Lees, Natalie Dayan, Hubert Cecotti, Paul McCullagh 等
2017-11-03
置信度 0.72
Rapid serial visual presentationComputer scienceElectroencephalographyBrain–computer interfacePresentation (obstetrics)
-
BACKGROUND: There is no accepted and efficient rehabilitation strategy to reduce focal impairments for patients with chronic stroke who lack residual movements. METHODS: A 67-year-old hemiplegic patient with no active finger extension was trained with a brain-…
openalex
Doris Broetz, Christoph Braun, Cornelia Weber, Surjo R. Soekadar 等
2010-06-02
置信度 0.72
Physical medicine and rehabilitationStroke (engine)Brain–computer interfaceRehabilitationChronic stroke
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OBJECTIVE: Brain-computer interface (BCI) refers to procedures that link the central nervous system to a device. BCI was historically performed using electroencephalography (EEG). In the last years, encouraging results were obtained by combining EEG with other…
openalex
Antonio Maria Chiarelli, Pierpaolo Croce, Arcangelo Merla, Filippo Zappasodi
2018-02-15
置信度 0.72
Brain–computer interfaceMotor imageryElectroencephalographyComputer scienceFunctional near-infrared spectroscopy
-
One of the major limitations of motor imagery (MI)-based brain-computer interface (BCI) is its long calibration time. Due to between sessions/subjects variations in the properties of brain signals, typically, a large amount of training data needs to be collect…
openalex
Ahmed M. Azab, Lyudmila Mihaylova, Kai Keng Ang, Mahnaz Arvaneh
2019-06-18
置信度 0.72
Brain–computer interfaceMotor imageryInterface (matter)Motor learningTransfer of learning
-
openalex
Shang‐Ming Zhou, John Q. Gan, Francisco Sepulveda
2007-12-05
置信度 0.72
Brain–computer interfaceBispectrumComputer scienceClassifier (UML)Support vector machine
-
openalex
Daniela Klobassa, Theresa M. Vaughan, Peter Brunner, N.E. Schwartz 等
2009-07-01
置信度 0.72
Brain–computer interfaceSession (web analytics)AudiologyLinear discriminant analysisInterface (matter)
-
openalex
Dennis J. McFarland, A. Todd Lefkowicz, Jonathan R. Wolpaw
1997-09-01
置信度 0.72
Brain–computer interfaceElectroencephalographyComputer scienceInterface (matter)Flexibility (engineering)
-
In recent years, research on Brain-Computer Interface (BCI) technology for healthy users has attracted considerable interest, and BCI games are especially popular. This study reviews the current status of, and describes future directions, in the field of BCI g…
openalex
Minkyu Ahn, Mi-Jin Lee, Jinyoung Choi, Sung Chan Jun
2014-08-11
置信度 0.72
Brain–computer interfaceComputer scienceInterface (matter)Reading (process)Human–computer interaction
-
The idea of connecting the human brain to a computer or machine directly is not novel and its potential has been explored in science fiction. With the rapid advances in the areas of information technology, miniaturization and neurosciences there has been a sur…
openalex
Gerhard M. Friehs, Vasilios A. Zerris, Catherine L. Ojakangas, Mathew R. Fellows 等
2004-10-15
置信度 0.72
MedicineBrain–computer interfaceNeuroscienceHuman–computer interactionPhysical medicine and rehabilitation
-
This clinical study investigates the ability of hemiparetic stroke patients in operating EEG-based motor imagery brain-computer interface (MI-BCI). It also assesses the efficacy in motor improvements on the stroke-affected upper limb using EEG-based MI-BCI wit…
openalex
Kai Keng Ang, Cuntai Guan, Karen Sui Geok Chua, Beng Ti Ang 等
2010-08-01
置信度 0.72
NeurorehabilitationMotor imageryBrain–computer interfaceElectroencephalographyRehabilitation
-
openalex
Gerwin Schalk, Jürgen Mellinger
2010-01-01
置信度 0.72
Brain–computer interfaceComputer scienceHuman–computer interactionGeneral purposeSoftware
-
openalex
Yuanqing Li, Cuntai Guan, Huiqi Li, Zheng Yang Chin
2008-02-19
置信度 0.72
Brain–computer interfaceComputer scienceSupport vector machineInterface (matter)Artificial intelligence
-
OBJECTIVE: To assess the reliability and usefulness of an EEG-based brain-computer interface (BCI) for patients with advanced amyotrophic lateral sclerosis (ALS) who used it independently at home for up to 18 months. METHODS: Of 42 patients consented, 39 (93%)…
openalex
Jonathan R. Wolpaw, Richard Bedlack, Domenic J. Reda, Robert Ringer 等
2018-06-27
置信度 0.72
Amyotrophic lateral sclerosisBrain–computer interfacePhysical medicine and rehabilitationInterface (matter)Neuroscience
-
A phenomenon often found in session-to-session transfers of brain-computer interfaces (BCIs) is nonstationarity. It can be caused by fatigue and changing attention level of the user, differing electrode placements, varying impedances, among other reasons. Cova…
openalex
Yan Li, Hiroyuki Kambara, Yasuharu Koike, Masashi Sugiyama
2010-02-17
置信度 0.72
CovariateBrain–computer interfaceAdaptation (eye)Computer scienceSession (web analytics)
-
openalex
Fabien Lotte
2014-01-01
置信度 0.72
ElectroencephalographyBrain–computer interfaceComputer sciencePattern recognition (psychology)Linear discriminant analysis
-
Brain-computer interfaces (BCIs) have enabled individuals to control devices such as spellers, robotic arms, drones, and wheelchairs, but often these BCI applications are restricted to research laboratories. With the advent of virtual reality (VR) systems and …
openalex
Christopher Coogan, Bin He
2018-01-01
置信度 0.72
Brain–computer interfaceComputer scienceInterfacingHuman–computer interactionFlexibility (engineering)
-
openalex
Janis J. Daly, Jane E. Huggins
2015-02-23
置信度 0.72
Brain–computer interfaceInterface (matter)SIGNAL (programming language)Computer scienceBrain activity and meditation
-
An EEG-based Brain-Computer Interface (BCI) could be used as an additional communication channel between human thoughts and the environment. The efficacy of such a BCI depends mainly on the transmitted information rate. Shannon's communication theory was used …
openalex
Alois Schlögl, Ch. Neuper, G. Pfurtscheller
2002-01-01
置信度 0.72
Brain–computer interfaceElectroencephalographyLinear discriminant analysisMutual informationComputer science
-
OBJECTIVE: This randomized controlled feasibility study investigates the ability for clinical application of the Brain-Computer Interface-based Soft Robotic Glove (BCI-SRG) incorporating activities of daily living (ADL)-oriented tasks for stroke rehabilitation…
openalex
Nicholas Cheng, Kok Soon Phua, Hwa Sen Lai, Pui Kit Tam 等
2020-04-02
置信度 0.72
Brain–computer interfaceRehabilitationInterface (matter)Computer scienceSoft robotics
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This paper examines the task of recognizing EEG patterns that correspond to performing three mental tasks: relaxation and imagining of two types of pictures: faces and houses. The experiments were performed using two EEG headsets: BrainProducts ActiCap and Emo…
openalex
Pavel Bobrov, Alexander Frolov, Charles R. Cantor, Irina Fedulova 等
2011-06-10
置信度 0.72
HeadsetBrain–computer interfaceComputer scienceElectroencephalographyClassifier (UML)
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GOAL: Traditional visual brain-computer interfaces (BCIs) preferred to use large-size stimuli to attract the user's attention and elicit distinct electroencephalography (EEG) features. However, the visual stimuli are of no interest to the users as they just se…
openalex
Minpeng Xu, Xiaolin Xiao, Yijun Wang, Hongzhi Qi 等
2018-01-30
置信度 0.72
Brain–computer interfaceElectroencephalographyComputer scienceStimulus (psychology)Visual perception
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The brain-computer interface (BCI) connects the brain and the external world through an information transmission channel by interpreting the physiological information of the brain during thinking activities. The effective classification of electroencephalogram…
openalex
Zhihan Lv, Liang Qiao, Qingjun Wang, Francesco Piccialli
2020-07-17
置信度 0.72
Brain–computer interfaceComputer scienceArtificial intelligencePattern recognition (psychology)Information transfer
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openalex
Theodore W. Berger, John K. Chapin, Greg A. Gerhardt, Dennis J. McFarland 等
2008-01-01
置信度 0.72
Computer scienceHuman–computer interaction
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Motivated by the particular problems involved in communicating with "locked-in" paralysed patients, we aim to develop a brain-computer interface that uses auditory stimuli. We describe a paradigm that allows a user to make a binary decision by focusing attenti…
openalex
N. Jeremy Hill, Thomas Navin Lal, Karin Bierig, Niels Birbaumer 等
2004-12-01
置信度 0.72
Brain–computer interfaceComputer scienceElectroencephalographyStimulus (psychology)Support vector machine
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Brain-computer interfaces (BCIs) enable paralyzed patients to communicate; however, up to date, no creative expression was possible. The current study investigated the accuracy and user-friendliness of P300-Brain Painting, a new BCI application developed to pa…
openalex
Jana Münßinger, Sebastian Halder, Sonja C. Kleih, Adrian Furdea 等
2010-01-01
置信度 0.72
NeuroprostheticsBrain–computer interfaceNeuroscienceComputer scienceMedicine
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Brain-Computer Interfaces (BCIs) have significantly improved the patients’ quality of life by restoring damaged hearing, sight, and movement capabilities. After evolving their application scenarios, the current trend of BCI is to enable new innovative brain-to…
openalex
Sergio López Bernal, Alberto Huertas Celdrán, Gregorio Martínez Pérez, Michael Taynnan Barros 等
2021-01-02
置信度 0.72
Computer scienceBrain–computer interfaceComputer securityWork (physics)The Internet
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BACKGROUND: Steady-state visual evoked potential (SSVEP)-based brain-computer interface (BCI) has become one of the most promising modalities for a practical noninvasive BCI system. Owing to both the limitation of refresh rate of liquid crystal display (LCD) o…
openalex
Yangsong Zhang, Peng Xu, Tiejun Liu, Jun Hu 等
2012-03-06
置信度 0.72
Brain–computer interfaceComputer scienceCoding (social sciences)ElectroencephalographySpeech recognition
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Recent advances in artificial intelligence demand an automated framework for the development of versatile brain–computer interface (BCI) systems. In this article, we proposed a novel automated framework that reveals the importance of multidomain features with …
openalex
Muhammad Tariq Sadiq, Xiaojun Yu, Zhaohui Yuan, Muhammad Zulkifal Aziz 等
2021-08-01
置信度 0.72
Brain–computer interfaceComputer scienceMotor imageryArtificial intelligenceMachine learning
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The notion that a computer can decode brain signals to infer the intentions of a human and then enact those intentions directly through a machine is becoming a realistic technical possibility. These types of devices are known as brain-computer interfaces (BCIs…
openalex
Eric C. Leuthardt, Gerwin Schalk, Jarod L. Roland, Adam G. Rouse 等
2009-07-01
置信度 0.72
Brain–computer interfaceNeuroscienceMotor controlMotor cortexComputer science
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OBJECTIVE: In recent years, brain-computer interface (BCI) systems based on electroencephalography (EEG) have developed rapidly. However, the decoding of voluntary finger pre-movements from EEG is still a challenge for BCIs. This study aimed to analyze the pre…
openalex
Kun Wang, Minpeng Xu, Yijun Wang, Shanshan Zhang 等
2019-11-20
置信度 0.72
Brain–computer interfaceElectroencephalographyDecoding methodsComputer scienceMovement (music)
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Numerous methods have been developed to gain reliable real-time remote control over pilotless flying aircraft and to perform teleoperation. Recently, state-of-the-art brain-computer interface (BCI) research has provided an avant-garde approach to reach this go…
openalex
Amin Nourmohammadi, Mohammad Jafari, Thorsten O. Zander
2018-05-22
置信度 0.72
TeleoperationBrain–computer interfaceInterface (matter)Computer scienceFidelity
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Recognizing human emotions based on electroencephalogram (EEG) signals has received a great deal of attentions. Most of the existing studies focused on offline analysis, and real-time emotion recognition using a brain computer interface (BCI) approach remains …
openalex
Haiyun Huang, Qiuyou Xie, Jiahui Pan, Yanbin He 等
2019-02-25
置信度 0.72
Brain–computer interfaceElectroencephalographyMinimally conscious statePersistent vegetative stateConsciousness
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In recent years, deep-learning models gained attention for electroencephalography (EEG) classification tasks due to their excellent performance and ability to extract complex features from raw data. In particular, convolutional neural networks (CNN) showed ade…
openalex
Eduardo Santamaría-Vázquez, Víctor Martínez-Cagigal, Fernando Vaquerizo-Villar, Roberto Hornero
2020-12-01
置信度 0.72
Brain–computer interfaceElectroencephalographyComputer scienceConvolutional neural networkTransfer of learning
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A brain‐computer interface (BCI) transforms signals originating from the human brain into commands that can control devices or applications. In this way, a BCI provides a new nonmuscular communication channel, which can be used to assist patients who have high…
openalex
Gert Pfurtscheller, Christa Neuper, Niels Birbaumer
2004-12-28
置信度 0.72
Brain–computer interfaceInterface (matter)Computer scienceHuman brainNeuroscience
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Motor imagery (MI) based brain-computer interface (BCI) aims to provide a means of communication through the utilization of neural activity generated due to kinesthetic imagination of limbs. Every year, a significant number of publications that are related to …
openalex
Amardeep Singh, Ali Abdul Hussain, Sunil Pranit Lal, Hans W. Guesgen
2021-03-20
置信度 0.72
Brain–computer interfaceMotor imageryElectroencephalographyComputer sciencePipeline (software)
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BACKGROUND/PURPOSE: A large proportion of individuals with stroke have persistent deficits for which current interventions have not restored normal motor behavior. Noninvasive brain computer interfaces (BCIs) have potential advantages for restoration of functi…
openalex
Janis J. Daly, Roger Cheng, Jean Rogers, Krisanne Litinas 等
2009-12-01
置信度 0.72
Brain–computer interfacePhysical medicine and rehabilitationStroke (engine)Functional electrical stimulationIndex finger
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Brain-computer interfaces (BCIs) have shown great prospects as real-time bidirectional links between living brains and actuators. Artificial intelligence (AI), which can advance the analysis and decoding of neural activity, has turbocharged the field of BCIs. …
openalex
Xiayin Zhang, Ziyue Ma, Huaijin Zheng, Tongkeng Li 等
2020-06-01
置信度 0.72
Brain–computer interfaceComputer scienceArtificial intelligenceNeuroscienceHuman–computer interaction
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Patients with severe CNS injuries struggle primarily with their sensorimotor function and communication with the outside world. There is an urgent need for advanced neural rehabilitation and intelligent interaction technology to provide help for patients with …
openalex
Mostafa Orban, Mahmoud Elsamanty, Kai Guo, Senhao Zhang 等
2022-12-05
置信度 0.72
Brain–computer interfaceRehabilitationElectroencephalographyInterface (matter)Computer science
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In recent years, the detection of voluntary motor intentions from electroencephalogram (EEG) has been used for triggering external devices in closed-loop brain-computer interface (BCI) research. Movement-related cortical potentials (MRCP), a type of slow corti…
openalex
Ren Xu, Ning Jiang, Chuang Lin, Natalie Mrachacz‐Kersting 等
2014-01-24
置信度 0.72
Brain–computer interfaceElectroencephalographyLinear discriminant analysisComputer sciencePattern recognition (psychology)
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Universal design principles advocate inclusion of end users in every design stage, including research and development. Brain-computer interfaces (BCIs) have long been described as potential tools to enable people with amyotrophic lateral sclerosis (ALS) to ope…
openalex
Jane E. Huggins, Patricia A. Wren, Kirsten L. Gruis
2011-05-02
置信度 0.72
Amyotrophic lateral sclerosisBrain–computer interfacePhysical medicine and rehabilitationInterface (matter)Computer science