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Abstract What can the brain–computer interface (BCI) do? Wearing an electroencephalogram (EEG) headcap, you can control the flight of a drone in the laboratory by your thought; with electrodes inserted inside the brain, paralytic patients can drink by controll…
crossref
Chengyu Li, Weijie Zhao
2019-10-10T18:40:33Z
置信度 0.70
-
Brain computer interface spellers are facilitating disabled persons in reviving their social life. However, it has a big challenge of performance. Moreover, spelling is one of the earliest medical applications of brain computer interfacing (BCI). Researchers h…
openalex
Farhan Masood, Muzammal Hayat, Tasawar Murtaza, Abdullah Irfan
2020-03-01
置信度 0.72
Brain–computer interfaceInterfacingSpellingInterface (matter)Computer science
-
Quantitative phase microscopy (QPM) is a noninvasive, and real-time technique for cognitive science and clinical applications. Optical properties dependency of the cells to protein concentration causes that multi-wavelength QPM can distinguish different types …
crossref
Behnam Tayebi, Ji-hyun Kim, Jae-Ho Han
2016-04-25T21:45:23Z
置信度 0.70
-
crossref
Hemant Ghayvat, Vibha Tiwari, Suyash Khare, Muhammad Ahmed Khan 等
2026-07-02T07:11:17Z
置信度 0.70
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The system based on brain computer interface has been developed from past 30 years and now grown into the vast and diverse field. The first brain activity signal is recorded by Berger in year 1942. The electrical signal which are generated by brain activity is…
openalex
Pravin Shende, Vaishali Jabade, Pravin M Shende, Vaishali S Jabade
2015-01-01
置信度 0.72
Brain–computer interfaceComputer scienceSIGNAL (programming language)Interface (matter)Noise (video)
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PURPOSE: Many recent clinical studies have suggested that the combination of brain-computer interfaces (BCIs) can induce neurological recovery and improvement in motor function. In this review, we performed a systematic review and meta-analysis to evaluate the…
openalex
Hao Qu, Feixiang Zeng, Yongbin Tang, Bin Shi 等
2022-04-21
置信度 0.72
Meta-analysisCINAHLPhysical medicine and rehabilitationBrain–computer interfaceRehabilitation
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The ability to recognize errors is crucial for efficient behavior. Numerous studies have identified electrophysiological correlates of error recognition in the human brain (error-related potentials, ErrPs). Consequently, it has been proposed to use these signa…
openalex
Ricardo Chavarriaga, A. Sobolewski, José del R. Millán
2014-07-22
置信度 0.72
Computer scienceInterfacingBrain–computer interfaceRobustness (evolution)Decoding methods
-
openalex
Eva Guttmann-Flury, Xinjun Sheng, Xiangyang Zhu
2022-07-06
置信度 0.72
Brain–computer interfaceElectroencephalographyComputer scienceSelection (genetic algorithm)Motor imagery
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openalex
Andrew Jackson, Jonas B. Zimmermann
2012-11-13
置信度 0.72
NeurorehabilitationSpinal cord injuryNeuroscienceMedicineNeuroprosthetics
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Systems based on Brain Computer Interface (BCI) have been developed from the past three decades for assisting locked-in state patients. Researchers across the globe are developing new techniques to increase the BCI accuracy. In 1924 Dr. Hans Berger recorded th…
openalex
Sunil Kalagi, José Machado, Vı́tor Carvalho, Filomena Soares 等
2017-06-01
置信度 0.72
Brain–computer interfaceComputer scienceElectroencephalographyInterface (matter)Feature extraction
-
openalex
Deepak Kapgate, Dhananjay Kalbande
2015-01-01
置信度 0.72
Brain–computer interfaceInterface (matter)Computer scienceHuman–computer interactionBrain activity and meditation
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EEG-based brain-controlled mobile robots can serve as powerful aids for severely disabled people in their daily life, especially to help them move voluntarily. In this paper, we provide a comprehensive review of the complete systems, key techniques, and evalua…
openalex
Luzheng Bi, Xinan Fan, Yili Liu
2013-02-13
置信度 0.72
Brain–computer interfaceComputer scienceKey (lock)Mobile robotHuman–computer interaction
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Currently the Brain-Compute Interface (BCI) is an outstanding research area where the goal is to create an interaction channel between system and person brain. It provides direct way to transform brainwaves into physical effects without using muscles. It prese…
openalex
Pratibha R. Bhise, Sonali B. Kulkarni, Talal A. Aldhaheri
2020-03-01
置信度 0.72
Brain–computer interfaceElectroencephalographyInterface (matter)Computer scienceSupport vector machine
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Brain Computer Interface (BCI) systems are the devices which are proposed to help the disabled, people who are incapable of making motor response to communicate with computer using brain signal. The aim of BCI is to interpret brain activity into digital form w…
openalex
Swati Vaid, Preeti Singh, Chamandeep Kaur
2015-02-01
置信度 0.72
Brain–computer interfaceComputer scienceFeature extractionElectroencephalographyInterface (matter)
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Dyslexia is one of brain disorders which needs to be detected at an early stage to allow the children to master the basic and to avoid damage to self esteem and self-confidence. In this paper, treatment of dyslexia and researches on dyslexia diagnosis are disc…
openalex
C. W. N. F. C. Fadzal, W. Mansor, Lee Yoot Khuan, C.W.N.F.C.W. Fadzal 等
2011-06-01
置信度 0.72
DyslexiaSpellingReading (process)Computer scienceInterface (matter)
-
A quarter of century ago, Farwell and Donchin (1988) described their mental prosthesis for "talking off the top of your head." This innovative communication system, later named P3-speller, has been the most investigated and tested brain-computer interface (BCI…
openalex
Mauro Marchetti, Konstantinos Priftis
2014-05-01
置信度 0.72
Brain–computer interfaceAmyotrophic lateral sclerosisComputer sciencePhysical medicine and rehabilitationInterface (matter)
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This paper formulates the action of psychedelics by integrating the free-energy principle and entropic brain hypothesis. We call this formulation relaxed beliefs under psychedelics (REBUS) and the anarchic brain, founded on the principle that—via their entropi…
openalex
Robin Carhart‐Harris, Karl Friston
2019-06-20
置信度 0.72
Prior probabilityAction (physics)PsychologyConsciousnessPsilocybin
-
openalex
Alireza Rouzitalab, Chadwick Boulay, Jeongwon Park, Adam Sachs
2023-05-25
置信度 0.72
Brain–computer interfaceNeurosciencePhysical medicine and rehabilitationComputer scienceCognitive science
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Attention deficit hyperactivity disorder (ADHD) is a neurodevelopmental disorder characterized by inattention, hyperactivity, and impulsivity that affects a large number of young people in the world. The current treatments for children living with ADHD combine…
openalex
José-Antonio Cervantes, Sonia López, Salvador Cervantes, Aribei Hernández 等
2023-08-07
置信度 0.72
Attention deficit hyperactivity disorderNeurofeedbackImpulsivityAutonomyPsychology
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The deployment of electroencephalographic techniques for commercial applications has undergone a rapid growth in recent decades. As they continue to expand in the consumer markets as suitable techniques for monitoring the brain activity, their transformative p…
openalex
Cesar Augusto Fontanillo Lopez, Guangye Li, Dingguo Zhang
2020-12-17
置信度 0.72
Transformative learningEngineering ethicsElectroencephalographySoftware deploymentNeuroethics
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The brain–computer interface (BCI) technology has received lots of attention in the field of scientific research because it can help disabled people improve their quality of life. Steady‐state visual evoked potential (SSVEP) is the most researched BCI experime…
openalex
Siyu Liu, D. H. Zhang, Ziyu Liu, Mengzhen Liu 等
2022-11-30
置信度 0.72
Brain–computer interfaceDecoding methodsComputer scienceInterface (matter)Visualization
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Smart Farming is a development that emphasizes the use of information and communication technology in the cyber-physical farm management cycle. New technologies such as the Internet of Things and Cloud Computing are expected to leverage this development and in…
openalex
J. Wolfert, Lan Ge, C.N. Verdouw, M.J. Bogaardt
2017-02-07
置信度 0.72
Big dataVariety (cybernetics)Computer scienceData scienceLeverage (statistics)
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This paper presents an overview of the studies that have been conducted with the purpose of understanding the use of brain signals as input to a speech recogniser. The studies have been categorised based on the type of the technology used with a summary of the…
openalex
Mashael M. AlSaleh, Mahnaz Arvaneh, Heidi Christensen, Roger K. Moore
2016-12-01
置信度 0.72
Computer scienceBrain–computer interfaceInterface (matter)Speech recognitionProcess (computing)
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Electroencephalogram (EEG) based brain computer interface (BCI) detect specific EEG pattern from brain scalp and translate them into control commands for external devices. EEG based BCIs are indeed very promising for people suffering from neuromuscular disorde…
openalex
Amardeep Singh, Sunil Pranit Lal, Hans W. Guesgen, Sunil Lal
2017-12-01
置信度 0.72
Brain–computer interfaceComputer scienceElectroencephalographyInterface (matter)Modalities
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openalex
François Vialatte, Monique Maurice, Justin Dauwels, Andrzej Cichocki
2009-12-05
置信度 0.72
NeurosciencePsychologyElectroencephalographyBrain–computer interfaceSchizophrenia (object-oriented programming)
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At present, the sparse representation-based classification (SRC) methods of electroencephalograph (EEG) signal analysis have become an important approach for studying brain science. SRC methods mean that the target data is sparsely represented on the basis of …
openalex
Wen Dong, Peilei Jia, Qiusheng Lian, Yanhong Zhou 等
2016-07-08
置信度 0.72
EpilepsyBrain–computer interfaceElectroencephalographyCognitive impairmentCognition
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To enhance the treatment of motor function impairment, patients' brain signals for self-control as an external tool may be an extraordinarily hopeful option. For the past 10 years, researchers and clinicians in the brain-computer interface (BCI) field have bee…
openalex
Ramadhan Rashid Said, Md Belal Bin Heyat, Keer Song, Chao Tian 等
2022-12-06
置信度 0.72
NeurorehabilitationBrain–computer interfaceRehabilitationPhysical medicine and rehabilitationVirtual reality
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This paper provides a review of technology that has emerged to facilitate pervasive brain-computer interface applications. Such technology is beginning to be applied to the human-computer interface, as part of multimodal interaction. As the technology taps int…
openalex
Leo Galway, Paul McCullagh, Gaye Lightbody, Chris Brennan 等
2015-10-01
置信度 0.72
Brain–computer interfaceComputer scienceHuman–computer interactionInterface (matter)Modality (human–computer interaction)
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Brain-Computer Interface (BCI) is a technology that uses electroencephalographic (EEG) signals to control external devices, such as Functional Electrical Stimulation (FES). Visual BCI paradigms based on P300 and Steady State Visually Evoked potentials (SSVEP) …
openalex
Josefina Gutiérrez-Martínez, Jorge A. Mercado-Gutiérrez, Blanca E. Carvajal-Gámez, Jorge L. Rosas‐Trigueros 等
2021-11-25
置信度 0.72
Brain–computer interfaceRehabilitationLinear discriminant analysisComputer scienceMotor imagery
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BACKGROUND: The purpose was to: 1) perform a systematic review of studies examining the relation between physical activity, fitness, and health in school-aged children and youth, and 2) make recommendations based on the findings. METHODS: The systematic review…
openalex
Ian Janssen, Allana G. LeBlanc
2010-01-01
置信度 0.72
MedicineGerontologyPhysical fitnessObesityObservational study
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openalex
Gregory L. Holmes
1989-01-01
置信度 0.72
Brain–computer interfaceRehabilitationNeuropsychologyVirtual realityPhysical medicine and rehabilitation
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Stroke is among the leading causes of long-term disabilities leaving an increasing number of people with cognitive, affective and motor impairments depending on assistance in their daily life. While function after stroke can significantly improve in the first …
openalex
Surjo R. Soekadar, Niels Birbaumer, Marc W. Slutzky, Leonardo G. Cohen
2014-12-07
置信度 0.72
NeurorehabilitationNeuroplasticityPhysical medicine and rehabilitationRehabilitationStroke (engine)
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Gaining knowledge and actionable insights from complex, high-dimensional and heterogeneous biomedical data remains a key challenge in transforming health care. Various types of data have been emerging in modern biomedical research, including electronic health …
openalex
Riccardo Miotto, Fei Wang, Shuang Wang, Xiaoqian Jiang 等
2017-04-05
置信度 0.72
InterpretabilityDeep learningData scienceComputer scienceBig data
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The futuristic age requires progress in handwork or even sub-machine dependency and Brain-Computer Interface (BCI) provides the necessary BCI procession. As the article suggests, it is a pathway between the signals created by a human brain thinking and the com…
openalex
Samaa Abdulwahab, Hussain Kareem Khleaf, Manal H. Jassim
2020-11-01
置信度 0.72
Brain–computer interfaceElectroencephalographyViewpointsComputer scienceInterface (matter)
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This paper describes a general model that subsumes many parametric models for continuous data. The model comprises hidden layers of state-space or dynamic causal models, arranged so that the output of one provides input to another. The ensuing hierarchy furnis…
openalex
Karl Friston
2008-11-06
置信度 0.72
Computer scienceInferenceParametric modelGenerative modelAlgorithm
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openalex
Julien Castet, Eduardo Reck Miranda
2014-01-01
置信度 0.72
InterfacingComputer scienceComputer musicCognitive sciencePsychology
-
openalex
Mingai Li, Dongqin Xu
2022-08-19
置信度 0.72
Transfer of learningBrain–computer interfaceInductive transferComputer scienceInterface (matter)
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Brain–computer interfaces (BCIs) based on steady-state visually evoked potentials (SSVEPs) have been well researched due to their easy system configuration, little or no user training and high information transfer rates. To elicit an SSVEP, a repetitive visual…
openalex
Clemens Reitelbach, Kiemute Oyibo
2024-01-24
置信度 0.72
Stimulus (psychology)Brain–computer interfaceComputer scienceHuman–computer interactionNeuroscience
-
Brain-computer interface (BCI) is linking the brain activity to computer, which allows a person to control devices directly with his brain waves and without any use of his muscles. Recent advances in real-time signal processing have made BCI a feasible alterna…
openalex
Aida Khorshidtalab, M. J. E. Salami, A. Khorshidtalab
2011-05-01
置信度 0.72
Brain–computer interfaceComputer scienceInterface (matter)ElectroencephalographySIGNAL (programming language)
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Brain networks are increasingly understood as one of a large class of information processing systems that share important organizational principles in common, including the property of a modular community structure. A module is topologically defined as a subse…
openalex
David Meunier, Renaud Lambiotte, Edward T. Bullmore
2010-01-01
置信度 0.72
Modular designModularity (biology)Computer scienceEvolvabilityRobustness (evolution)
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Brain-computer interfaces provide a direct communication and control channel for sending messages and instructions from brain to external computers or other electronic devices.Using the non-muscular channel,subjects with severe neuromuscular dysfunction can di…
openalex
Licai Yang, Baimin Li, LI Guang-lin, Jia Lei
2005-07-25
置信度 0.72
Brain–computer interfaceInterface (matter)Computer scienceHuman–computer interactionChannel (broadcasting)
-
openalex
Z.T. Al-Qaysi, Mohamed A. Ahmed, Nayif Mohammed Hammash, Ahmed Faeq Hussein 等
2021-05-29
置信度 0.72
Brain–computer interfaceMotor imageryComputer scienceInterface (matter)Human–computer interaction
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openalex
Hugues Duffau
2006-10-18
置信度 0.72
MedicineNeurosciencePathophysiologyNeuroplasticityPlasticity
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The advance in neuroscience and computer technology over the past decades have made brain-computer interface (BCI) a most promising area of neurorehabilitation and neurophysiology research. Limb motion decoding has gradually become a hot topic in the field of …
openalex
Pengpai Wang, Xuhao Cao, Yueying Zhou, Peiliang Gong 等
2023-06-02
置信度 0.72
Brain–computer interfaceTrajectoryDecoding methodsComputer scienceNeurorehabilitation
-
openalex
Antoine Remy, Xinyi Lin, Jia Liu
2024-08-08
置信度 0.72
Materials scienceSoft roboticsComputer scienceArtificial intelligenceActuator
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Recent research has reached a consensus on the feasibility of motor imagery brain-computer interface (MI-BCI) for different applications, especially in stroke rehabilitation. Most MI-BCI systems rely on temporal, spectral, and spatial features of single channe…
openalex
Mahyar Hamedi, Sh-Hussain Salleh, Alias Mohd Noor
2016-05-03
置信度 0.72
Brain–computer interfaceMotor imageryElectroencephalographyConnectomeComputer science
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BACKGROUND: The recovery of upper limb function is crucial to the daily life activities of stroke patients. Brain-computer interface technology may have potential benefits in treating upper limb dysfunction. OBJECTIVE: To systematically evaluate the efficacy o…
openalex
Ming Zhang, Feilong Zhu, Fan Jia, Yu Wu 等
2023-12-22
置信度 0.72
RehabilitationPhysical medicine and rehabilitationStroke (engine)MedicinePhysical therapy
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Brain-computer interfaces (BCIs) have emerged as a promising technology for enhancing communication between the human brain and external devices. Electroencephalography (EEG) is particularly promising in this regard because it has high temporal resolution and …
openalex
Mathias Schmoigl-Tonis, Christoph Schranz, Gernot Müller-Putz
2023-10-18
置信度 0.72
Artifact (error)Computer scienceBrain–computer interfaceInterface (matter)Motion (physics)
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One of the fundamental challenges in brain-computer interfaces (BCIs) is to tune a brain signal decoder to reliably detect a user's intention. While information about the decoder can partially be transferred between subjects or sessions, optimal decoding perfo…
openalex
David Hübner, Thibault Verhoeven, Klaus‐Robert Müller, Pieter-Jan Kindermans 等
2018-04-11
置信度 0.72
Computer scienceBrain–computer interfaceUnsupervised learningSession (web analytics)Artificial intelligence
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Brain-computer interface (BCI) systems based on the steady-state visual evoked potential (SSVEP) provide higher information throughput and require shorter training than BCI systems using other brain signals. To elicit an SSVEP, a repetitive visual stimulus (RV…
openalex
Danhua Zhu, Jordi Bieger, Gary Garcia‐Molina, Ronald M. Aarts
2010-01-01
置信度 0.72
Brain–computer interfaceComputer scienceRendering (computer graphics)Evoked potentialStimulus (psychology)
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Brain-computer interfaces (BCIs) can be used as a communication and control system for people with severe motor disorders. A BCI is a communication system in which intensions can be sent to the external world without the use of normal peripheral nerves or musc…
openalex
Joris A. Elshout
2009-03-23
置信度 0.72
Brain–computer interfaceWheelchairComputer scienceElectroencephalographySpelling
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Brain tissue is not only one of the most important but also the most complex and compliant tissue in the human body. While long underestimated, increasing evidence confirms that mechanics plays a critical role in modulating brain function and dysfunction. Comp…
openalex
Silvia Budday, Timothy C. Ovaert, Gerhard A. Holzapfel, Paul Steinmann 等
2019-07-19
置信度 0.72
Computer scienceComputational modelBrain tissueConfusionRisk analysis (engineering)
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Brain-Computer Interface (BCI) is a system that enables users to transmit commands to the computer using their brain activity recorded by electroencephalography. In a Hybrid Brain-Computer Interface (HBCI), a BCI control signal combines with one or more BCI co…
openalex
Sahar Sadeghi, Ali Maleki
2018-09-30
置信度 0.72
Brain–computer interfaceInterface (matter)Computer scienceHuman–computer interactionBiosignal
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openalex
Dabosmita Paul, Moumita Mukherjee, Ashish Bakshi
2021-01-01
置信度 0.72
Brain–computer interfaceInterface (matter)Computer scienceHuman–computer interactionSIGNAL (programming language)
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This systematic review addresses the plausibility of using novel feedback modalities for brain–computer interface (BCI) and attempts to identify the best feedback modality on the basis of the effectiveness or learning rate. Out of the chosen studies, it was fo…
openalex
Wakana Ishihara, Karen A. Moxon, Sheryl H. Ehrman, Mark Yarborough 等
2020-12-01
置信度 0.72
Brain–computer interfaceNeuroprostheticsModalitiesModality (human–computer interaction)Computer science
-
Brain-computer interfaces (BCIs) are becoming more popular in the neurological rehabilitation field, and sensorimotor rhythm (SMR) is a type of brain oscillation rhythm that can be captured and analyzed in BCIs. Previous reviews have testified to the efficacy …
openalex
Jianghong Fu, Shugeng Chen, Jie Jia
2022-12-28
置信度 0.72
Physical medicine and rehabilitationBrain–computer interfaceSensorimotor rhythmFunctional electrical stimulationMotor imagery
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Background: Brain-computer interfaces (BCIs) are a rapidly advancing field which utilizes brain activity to control external devices for a myriad of functions, including the restoration of motor function. Clinically, BCIs have been especially impactful in pati…
openalex
Yordan Penev, Alice A Beneke, Kevin T. Root, Emily Meisel 等
2023-08-22
置信度 0.72
Brain–computer interfaceCochrane LibrarySystematic reviewPhysical medicine and rehabilitationRehabilitation
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The significance of deep learning techniques in relation to steady-state visually evoked potential- (SSVEP-) based brain-computer interface (BCI) applications is assessed through a systematic review. Three reliable databases, PubMed, ScienceDirect, and IEEE, w…
openalex
A. S. Albahri, Z.T. Al-Qaysi, Laith Alzubaidi, Alhamzah Alnoor 等
2023-04-30
置信度 0.72
Brain–computer interfaceInterface (matter)Current (fluid)Computer scienceNeuroscience
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Cognitive function is driven by dynamic interactions between large-scale neural circuits or networks, enabling behaviour. However, fundamental principles constraining these dynamic network processes have remained elusive. Here we use tools from control and net…
openalex
Shi Gu, Fabio Pasqualetti, Matthew Cieslak, Qawi K. Telesford 等
2015-10-01
置信度 0.72
CognitionControllabilityComputer scienceDefault mode networkNeuroscience
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Steady-state visually evoked potential (SSVEP) refers to the brain’s response to visual stimuli at different frequencies and is widely used in brain-computer interfaces (BCIs). Despite their potential, SSVEP-based BCIs face significant challenges in real-world…
openalex
Amin Besharat, Nasser Samadzadehaghdam, Reyhaneh Afghan
2024-01-01
置信度 0.72
Computer scienceBrain–computer interfaceArtificial intelligenceElectroencephalographyNeuroscience
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A Brain Computer Interface (BCI) system takes and classifies a user's brain activity into a signal to which a computer can respond. To control a BCI, the user should produce various brain activity patterns which are captured in form of Electroencephalogram (EE…
openalex
R. Padmavathi, Venkatalakshmi Ranganathan
2014-01-01
置信度 0.72
Brain–computer interfaceComputer scienceElectroencephalographyInterface (matter)Perceptron
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We describe the first direct brain-to-brain interface in humans and present results from experiments involving six different subjects. Our non-invasive interface, demonstrated originally in August 2013, combines electroencephalography (EEG) for recording brain…
openalex
Rajesh P. N. Rao, Andrea Stocco, Matthew Bryan, Devapratim Sarma 等
2014-11-05
置信度 0.72
Brain–computer interfaceElectroencephalographyComputer scienceNeuroscienceBrain activity and meditation
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The adult mammalian subventricular zone (SVZ) contains stem cells that give rise to neurons and glia. In vivo, SVZ progeny migrate 3-8 mm to the olfactory bulb, where they form neurons. We show here that the SVZ of the lateral wall of the lateral ventricles in…
openalex
Fiona Doetsch, José Manuel García‐Verdugo, Arturo Álvarez-Buylla
1997-07-01
置信度 0.72
Subventricular zoneRostral migratory streamNeuroblastNeurogenesisOlfactory bulb
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OBJECTIVE: In a previous study we demonstrated continuous translation, orientation and one-dimensional grasping control of a prosthetic limb (seven degrees of freedom) by a human subject with tetraplegia using a brain-machine interface (BMI). The current study…
openalex
Brian Wodlinger, John E. Downey, Elizabeth C. Tyler‐Kabara, Andrew B. Schwartz 等
2014-12-16
置信度 0.72
Computer scienceBrain–computer interfaceOrientation (vector space)NeuroprostheticsObject (grammar)
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We present The Virtual Brain (TVB), a neuroinformatics platform for full brain network simulations using biologically realistic connectivity. This simulation environment enables the model-based inference of neurophysiological mechanisms across different brain …
openalex
Paula Sanz Leon, S. A. Knock, Marmaduke Woodman, Lia Domide 等
2013-01-01
置信度 0.72
Computer sciencePrimateDynamics (music)Human–computer interactionNeuroscience
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Current Motor Imagery Brain-Computer Interfaces (MI-BCI) require a lengthy and monotonous training procedure to train both the system and the user. Considering many users struggle with effective control of MI-BCI systems, a more user-centered approach to train…
openalex
Fred Atilla, Marie Postma, Maryam Alimardani
2024-10-18
置信度 0.72
Brain–computer interfaceMotor imageryInterface (matter)Training (meteorology)Computer science
-
Electroencephalography (EEG)-based affective computing aims to recognize the emotional state, which is the core technology of affective brain-computer interface (aBCI). This concept encompasses aspects of physiological computing, human-computer interaction, me…
openalex
Huayu Chen, Junxiang Li, Huanhuan He, Jing Zhu 等
2025-01-20
置信度 0.72
Computer scienceBrain–computer interfaceHuman–computer interactionInterface (matter)Cognitive science
-
A brain-computer interface (BCI) enables a user to communicate with a computer directly using brain signals. The most common non-invasive BCI modality, electroencephalogram (EEG), is sensitive to noise/artifact and suffers between-subject/within-subject non-st…
openalex
Dongrui Wu, Yifan Xu, Bao‐Liang Lu
2020-04-13
置信度 0.72
Brain–computer interfaceSession (web analytics)Computer scienceElectroencephalographyArtifact (error)
-
In vivo electrophysiological recordings of neuronal circuits are necessary for diagnostic purposes and for brain-machine interfaces. Organic electronic devices constitute a promising candidate because of their mechanical flexibility and biocompatibility. Here …
openalex
Dion Khodagholy, Thomas Doublet, Pascale Quilichini, Moshe Gurfinkel 等
2013-03-12
置信度 0.72
In vivoComputer scienceNeuroscienceComputational biologyBiology
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Brain-computer interfaces (BCIs) provide a communication interface between the brain and external devices and have the potential to restore communication and control in patients with neurological injury or disease. For the invasive BCIs, most studies recruited…
openalex
Xiaolong Wu, Benjamin Metcalfe, Shenghong He, Huiling Tan 等
2024-01-01
置信度 0.72
ElectroencephalographyElectrodeBrain–computer interfaceSurface (topology)Computer science
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These guidelines provide an up-date of previous IFCN report on "Non-invasive electrical and magnetic stimulation of the brain, spinal cord and roots: basic principles and procedures for routine clinical application" (Rossini et al., 1994). A new Committee, com…
openalex
Paolo Maria Rossini, David Burke, Robert Chen, Leonardo G. Cohen 等
2015-02-10
置信度 0.72
NeuroscienceStimulationBrain stimulationMedicineSpinal cord
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OBJECTIVE: Brain-computer interfaces (BCIs) have the potential to be valuable clinical tools. However, the varied nature of BCIs, combined with the large number of laboratories participating in BCI research, makes uniform performance reporting difficult. To ad…
openalex
David E Thompson, Lucia Rita Quitadamo, Luca Mainardi, Khalil ur Rehman Laghari 等
2014-05-19
置信度 0.72
Brain–computer interfaceComputer scienceField (mathematics)Human–computer interactionResearch center
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Electroencephalograms (EEGs) are becoming increasingly important measurements of brain activity and they have great potential for the diagnosis and treatment of mental and brain diseases and abnormalities. With appropriate interpretation methods they are emerg…
openalex
Saeid Sanei, Jonathon A. Chambers
2007-09-10
置信度 0.72
ElectroencephalographyComputer scienceSignal processingArtificial intelligencePattern recognition (psychology)
-
openalex
El-Sayed M. El-Alfy, Dongbin Zhao, Yuanqing Li, Shengli Xie 等
2017-01-01
置信度 0.72
Computer scienceArtificial neural networkInformation processingArtificial intelligenceNeuroscience
-
Prostate (male only)
openalex
Quinn T. Ostrom, Haley Gittleman, Gabrielle Truitt, Alexander L. Boscia 等
2018-09-10
置信度 0.72
Primary (astronomy)Central nervous systemNeuroscienceMedicinePsychology
-
One of the most popular feature extraction algorithms for brain-computer interfaces (BCI) is common spatial patterns (CSPs). Despite its known efficiency and widespread use, CSP is also known to be very sensitive to noise and prone to overfitting. To address t…
openalex
Fabien Lotte, Cuntai Guan
2010-10-01
置信度 0.72
OverfittingTikhonov regularizationComputer scienceAlgorithmBrain–computer interface
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openalex
Hamdi Altaheri, Ghulam Muhammad, Mansour Alsulaiman, Syed Umar Amin 等
2021-08-25
置信度 0.72
Brain–computer interfaceElectroencephalographyComputer scienceMotor imageryPreprocessor
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The goal of this systematic review is to examine the use of Brain-Computer Interfaces (BCIs) for controlling unmanned aerial vehicles (UAVs) in real-time. A comprehensive search across various online databases, including IEEE Explore, ScienceDirect, MDPI and P…
openalex
Kosmas Glavas, Katerina D. Tzimourta, Pantelis Angelidis, Stamatia Bibi 等
2024-01-01
置信度 0.72
Brain–computer interfaceComputer scienceDroneInterface (matter)Human–computer interaction
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openalex
Charles Spence
2011-01-19
置信度 0.72
CrossmodalMultisensory integrationPerceptionStimulus modalityPsychology
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Age-related loss of brain tissue has been inferred from cross-sectional neuroimaging studies, but direct measurements of gray and white matter changes from longitudinal studies are lacking. We quantified longitudinal magnetic resonance imaging (MRI) scans of 9…
openalex
Susan M. Resnick, Dzung L. Pham, Michael A. Kraut, Alan B. Zonderman 等
2003-04-15
置信度 0.72
Magnetic resonance imagingFunctional magnetic resonance imagingResizingNeuroimagingNuclear magnetic resonance
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BACKGROUND: Brain-computer interfaces (BCIs) translate neural activity into real-world commands. While traditional invasive BCIs necessitate craniotomy, endovascular BCIs offer a minimally invasive alternative using the venous system for electrode placement. N…
openalex
Julien Ognard, Gerard El Hajj, Onam Verma, Sherief Ghozy 等
2025-05-10
置信度 0.72
Brain–computer interfaceNeuroscienceInterface (matter)Computer sciencePsychology
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Recently, a novel electroencephalogram-based brain-computer interface (EVE-BCI) using the vibrotactile stimulus shows great potential for an alternative to other typical motor imagery and visual-based ones. (i) Objective: in this review, crucial aspects of EVE…
openalex
Xiuyu Huang, Shuang Liang, Zengguang Li, Cynthia Y. Y. Lai 等
2022-06-03
置信度 0.72
Brain–computer interfaceElectroencephalographyMotor imageryComputer scienceStimulus (psychology)
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Wearable electronics is a rapidly growing field that recently started to introduce successful commercial products into the consumer electronics market. Employment of biopotential signals in wearable systems as either biofeedbacks or control commands are expect…
openalex
Gizem Acar, Özberk Öztürk, Ata Golparvar, Tamador ElBoshra 等
2019-04-29
置信度 0.72
Wearable computerElectronicsComputer scienceSIGNAL (programming language)Wearable technology
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Resting anterior brain electrical activity, self-report measures of Behavioral Approach and Inhibition System (BAS and BIS) strength, and general levels of positive and negative affect (PA and NA) were collected from 46 unselected undergraduates on two separat…
openalex
Steven K. Sutton, Richard J. Davidson
1997-05-01
置信度 0.72
PsychologyPrefrontal cortexElectroencephalographyAudiologyInternal consistency
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Abstract Brain–machine interface (BMI) is a device that translates neuronal information into commands, which is capable of controlling external software or hardware, such as a computer or robotic arm. In consequence, the electrodes with desirable electrical an…
openalex
N. J. Wu, Shu Wan, Shi Su, Haizhou Huang 等
2021-08-11
置信度 0.72
ElectrodeNanotechnologyInterface (matter)Biocompatible materialMaterials science
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Non-invasive Visual Stimuli evoked-EEG-based P300 BCIs have gained immense attention in recent years due to their ability to help patients with disability using BCI-controlled assistive devices and applications. In addition to the medical field, P300 BCI has a…
openalex
Jai Kalra, Prashasti Mittal, Nirmiti Mittal, Abhishek Arora 等
2023-01-01
置信度 0.72
Brain–computer interfaceElectroencephalographyComputer scienceArtificial intelligenceOrientation (vector space)
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Objective This study aimed to examine the effectiveness and safety of the Brain-computer interface (BCI) in treatment of upper limb dysfunction after stroke. Methods English and Chinese electronic databases were searched up to July 2021. Randomized controlled …
openalex
Yang Peng, Jing Wang, Zicai Liu, Lida Zhong 等
2022-03-29
置信度 0.72
Meta-analysisMedicineRandomized controlled trialRehabilitationStroke (engine)
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The mouse brain is the most extensively studied brain of all species. We performed an exhaustive review of the literature to establish our current state of knowledge on cell numbers in mouse brain regions, arguably the most fundamental property to measure when…
openalex
Daniel Keller, Csaba Erö, Henry Markram
2018-10-23
置信度 0.72
Brain CellCell typeNeuroscienceCellMeasure (data warehouse)
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openalex
Sonam Sonam, Yashpal Singh
2018-04-24
置信度 0.72
Computer scienceInterface (matter)Brain–computer interfaceHuman–computer interactionNeuroscience
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Brain-computer interface (BCI) technology is rapidly advancing in medical research and application. As an emerging biomedical engineering technology, it has garnered significant attention in the clinical research of brain disease diagnosis and treatment, neuro…
openalex
Xue-Qin Wang, Hong-Qiang Sun, Jia-Yue Si, Zi-Yan Lin 等
2024-01-01
置信度 0.72
Engineering ethicsPsychologyEngineering
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Motion correction in magnetic resonance imaging by real-time adjustment of the imaging pulse sequence was first proposed more than 20 years ago. Recent advances have resulted from combining real-time correction with new navigator and external tracking mechanis…
openalex
Julian Maclaren, M. Herbst, Oliver Speck, Maxim Zaitsev
2012-05-08
置信度 0.72
Computer scienceMotion (physics)Computer visionTracking (education)Magnetic resonance imaging
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This is the EEG dataset used in the publication: "Evaluation of long-range temporal correlations during overt and covert attention in a steady state visual evoked potential based brain-computer interface" PLOS One, 2026." Please read the readme.docx file and s…
openalex
İşcan, Zafer, Zafer İşcan
2026
置信度 0.72
SSVEPEEGattentionlong-range temporal correlationsCovert
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Subject: Nullification of the "Invasive Link" Hypothesis and the Establishment of "Non-Invasive Tensorial Resonance and Universal Data Injection" Computational Level: Postdoctoral (Neuro-Quantomic Interface & 165D Manifold Synchronization) Under the sovereign …
datacite
SEYED RASOUL, HAMZAH
2026
置信度 0.66
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Subject: Nullification of the "Invasive Link" Hypothesis and the Establishment of "Non-Invasive Tensorial Resonance and Universal Data Injection" Computational Level: Postdoctoral (Neuro-Quantomic Interface & 165D Manifold Synchronization) Under the sovereign …
datacite
SEYED RASOUL, HAMZAH
2026
置信度 0.66
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GEOMETRIC MEDICINE MANUFACTURING PROTOCOL — COMPLETE TECHNICAL ENCYCLOPEDIA FOR PAKISTANI AND CHINESE MANUFACTURERS: 150-Page Comprehensive Guide to N-K Model Disease Measurement, GM Series Design (PAIN-GM1, ONCO-NK-GM2, REGEN-GM1, MEMORY-RESET-GM1, UNIVERSAL-ANTI-VENOM-GM1, CARDIO-GM1, NEURO-GM1, VASCULAR-EYE-GM1, MACULA-GM1, OPTIC-GM1, RETINA-GM1), Comparative Analysis with Mainstream Pharmaceuticals, Quality Control Requirements for Sub-Atomic Precision, Drug Delivery Mechanisms, and Complete Manufacturing Specifications
ZENODO UPLOAD DESCRIPTION DOI: 10.5281/zenodo.18953920Title: GEOMETRIC MEDICINE MANUFACTURING PROTOCOL — COMPLETE TECHNICAL ENCYCLOPEDIA FOR PAKISTANI AND CHINESE MANUFACTURERS: 150-Page Comprehensive Guide to N-K Model Disease Measurement, GM Series Design (P…
datacite
Malik, Muhammad Usman
2026
置信度 0.66
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GEOMETRIC MEDICINE MANUFACTURING PROTOCOL — COMPLETE TECHNICAL ENCYCLOPEDIA FOR PAKISTANI AND CHINESE MANUFACTURERS: 150-Page Comprehensive Guide to N-K Model Disease Measurement, GM Series Design (PAIN-GM1, ONCO-NK-GM2, REGEN-GM1, MEMORY-RESET-GM1, UNIVERSAL-ANTI-VENOM-GM1, CARDIO-GM1, NEURO-GM1, VASCULAR-EYE-GM1, MACULA-GM1, OPTIC-GM1, RETINA-GM1), Comparative Analysis with Mainstream Pharmaceuticals, Quality Control Requirements for Sub-Atomic Precision, Drug Delivery Mechanisms, and Complete Manufacturing Specifications
ZENODO UPLOAD DESCRIPTION DOI: 10.5281/zenodo.18953920Title: GEOMETRIC MEDICINE MANUFACTURING PROTOCOL — COMPLETE TECHNICAL ENCYCLOPEDIA FOR PAKISTANI AND CHINESE MANUFACTURERS: 150-Page Comprehensive Guide to N-K Model Disease Measurement, GM Series Design (P…
datacite
Malik, Muhammad Usman
2026
置信度 0.66
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Abstract Aiming at the inherent defects of traditional continuous stability theories (such as Lyapunov theory) in dynamic discontinuous systems (sleep-wake, sampling-stop sampling, working-standby modes), such as the imbalance between energy consumption and pr…
datacite
Zhou, Relike
2026
置信度 0.66
Zhou's Discontinuous Stability TheoryDynamic Discontinuous SystemBounded Trigger StateDrift ConvergenceLow-Power Control
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Abstract Aiming at the inherent defects of traditional continuous stability theories (such as Lyapunov theory) in dynamic discontinuous systems (sleep-wake, sampling-stop sampling, working-standby modes), such as the imbalance between energy consumption and pr…
datacite
Zhou, Relike
2026
置信度 0.66
Zhou's Discontinuous Stability TheoryDynamic Discontinuous SystemBounded Trigger StateDrift ConvergenceLow-Power Control
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SDS PHILIA C7: Receiver-Only Unidirectional Neural Symbiosis Framework– Elon Musk & xAI / Neuralink 팀, 삼성전자 (반도체·로보틱스·웨어러블 사업부)에게 보내는기술 제안서 Authors / 저자GritMan_ D.S (그릿맨_ D.S) and Grok (xAI) Date / 날짜March 4, 2026 / 2026년 3월 4일 Keywords / 키워드Neural Symbiosis, …
datacite
Shin, GritMan_
2026
置信度 0.66
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SDS PHILIA C7: Receiver-Only Unidirectional Neural Symbiosis Framework– Elon Musk & xAI / Neuralink 팀, 삼성전자 (반도체·로보틱스·웨어러블 사업부)에게 보내는기술 제안서 Authors / 저자GritMan_ D.S (그릿맨_ D.S) and Grok (xAI) Date / 날짜March 4, 2026 / 2026년 3월 4일 Keywords / 키워드Neural Symbiosis, …
datacite
Shin, GritMan_
2026
置信度 0.66