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Interfacing artificial devices with the human brain is the central goal of neurotechnology. Yet, our imaginations are often limited by currently available paradigms and technologies. Suggestions for brain-machine interfaces have changed over time, along with t…
datacite
Ahmed, Abdullah A.A., Alegret, Nuria, Almeida, Bethany, Alvarez-Puebla, Ramon A. 等
2025
置信度 0.66
brain-on-a-chipbrain−machine interfacescontrol of ion channelsdeep brain stimulationelectrode arrays
-
What is this map presenting? This map displays 68 study–diagnosis pairs from 64 studies identified in a scoping review of wireless EEG use in children with developmental disabilities (DDs). Some studies addressed multiple DD populations and are therefore repre…
datacite
Park, Naeun
2026
置信度 0.66
-
What is this map presenting? This map displays 68 study–diagnosis pairs from 64 studies identified in a scoping review of wireless EEG use in children with developmental disabilities (DDs). Some studies addressed multiple DD populations and are therefore repre…
datacite
Park, Naeun
2026
置信度 0.66
-
so its 24 claims which is still under 25 its social media at its core MINDSPACE — Complete Feature List Core architecture & hardware Central Hub (octa-core ARM Linux) with powered USB tree Cities Hub — 6-slot sovereign WiFi city selector (city0–city5) Presence…
datacite
Francis, Lee
2026
置信度 0.66
-
This registration documents the protocol for a scoping review that aims to systematically map the existing literature on brain-computer interface applications for children with autism spectrum disorder. The review will follow the Arksey and O'Malley framework …
datacite
ying Li
2026
置信度 0.66
Medicine and Health SciencesLife SciencesRehabilitation and TherapyNeuroscience and Neurobiologyautism spectrum disorder
-
Retrospective registered protocol for a systematic review titled: "Contradictory Evidence on the Superiority of Deep Learning over Traditional Machine Learning for SSVEP Classification: A Systematic Review" Authors: Rolly Maulana Awangga & Sindy Maulina Af…
datacite
Sindy Maulina13
2026
置信度 0.66
Medical SciencesMusculoskeletal, Neural, and Ocular PhysiologyMedicine and Health SciencesSocial and Behavioral SciencesEEG
-
datacite
Ahad Behboodi
2021
置信度 0.66
-
so its 24 claims which is still under 25 its social media at its core MINDSPACE — Complete Feature List Core architecture & hardware Central Hub (octa-core ARM Linux) with powered USB tree Cities Hub — 6-slot sovereign WiFi city selector (city0–city5) Presence…
datacite
Francis, Lee
2026
置信度 0.66
-
These two documents together form a complete picture of MindSpace — your consent-gated multisensory presence platform — split into the what it's made of and the what it does. The Central Hub parts list is the hardware side: a single body-worn core (belt/pocket…
datacite
Francis, Lee
2026
置信度 0.66
-
These two documents together form a complete picture of MindSpace — your consent-gated multisensory presence platform — split into the what it's made of and the what it does. The Central Hub parts list is the hardware side: a single body-worn core (belt/pocket…
datacite
Francis, Lee
2026
置信度 0.66
-
Note that although this was registered on Feb 9 2021, the grant supporting this project was submitted to NEDA on Oct 12 2018. No change was made to the protocol since the submission of the grant. The pdf of the protocol and a screenshot of the email submission…
datacite
William W. Chan, Ellen Fitzsimmons-Craft, Arielle C. Smith, Marie-Laure Firebaugh, LMSW 等
2021
置信度 0.66
Mental DisordersHealth Information TechnologyClinical PsychologyPsychiatry and PsychologyPsychiatric and Mental Health
-
Kim D1, Gwon S1, Choi S1, Lee B11Sahmyook University, Physical Therapy, Seoul, Korea (South)Background: This study was to evaluate the effect of Brain computer Interface(BCI) based functional electrical stimulation training on muscle strength, balance and gait…
datacite
Dohyung Kim, Sunbin Gwon, Seokhwa Choi, Byounghee Lee
2019
置信度 0.66
Neurology: stroke
-
CAN YOU IMAGINE? MOTOR IMAGERY IN NEUROREHABILITATION Schuster-Amft C1,2,3, Sharma N4,5, Mateo S6,7, Lucchetti G8,9, Fernandes Guerra Z10 1Reha Rheinfelden, Research Department, Rheinfelden, Switzerland, 2Bern University of Applied Sciences, Institute for Reha…
datacite
Corina Schuster-Amft, Giancarlo Lucchetti, Nikhil Sharma, Sebastien Mateo 等
2019
置信度 0.66
Neurology
-
F. Kaneko1, M. Okawada1,2, S. Sasaki1,2, M. Yoneta1,2, M. Kawakami11Keio University School of Medicine, Department of Rehabilitation Medicine, Tokyo, Japan, 2Hokuto Hospital, Department of Rehabilitation, Obihiro, JapanBackground: We previously reported the cl…
datacite
Fuminari Kaneko, Megumi Okawada, Shun Sasaki, Masaki Yoneta 等
2021
置信度 0.66
Neurology: stroke
-
OpenAI’s flagship Large Language Model ChatGPT can now accept image input (GPT4V). “Spot the Difference” and “Medical” have been suggested as emerging applications. The interpretation of medical images is a dynamic process not a static task. Diagnosis and trea…
preprints
2023
置信度 0.74
-
Background: There is an increasing interest in the role of EEG in neurorehabilitation. We primarily aimed to identify the knowledge base through highly influential studies. Our secondary aims were to imprint the relevant thematic hotspots, research trends, and…
preprints
2022
置信度 0.74
-
Targeting deep brain structures during electrophysiology and injections requires intensive training and expertise. Even with experience, researchers often can’t be certain that a probe is placed precisely in a target location and this complexity scales with th…
preprints
2023
置信度 0.74
-
crossref
Dize Hilviu, Stefano Vincenzi, Giovanni Chiarion, Claudio Mattutino 等
2021-11-04T14:54:25Z
置信度 0.70
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crossref
2022-09-20T17:03:20Z
置信度 0.70
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For individuals with amyotrophic lateral sclerosis (ALS), neurodegeneration can lead to a state of near-total paralysis, with intact cognition and sensation (Fried-Oken. et al., 2013). This loss of voluntary speech and motor system control (including oculomoto…
crossref
Kevin Pitt
2020-08-11T16:22:35Z
置信度 0.70
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crossref
2022-09-20T17:03:20Z
置信度 0.70
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Brain-Computer Interface (BCI) enables direct communication between the brain and an external device. BCI systems have become a popular area of study in recent years. These technologies can be utilized in various ways to assist people with disabilities and hea…
crossref
Achraf Othman
2022-10-22T03:10:06Z
置信度 0.70
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Since the invention of electroencephalography people have started to think how to develop a new communication channel based on brain's signals analysis. It led to the development of Brain-Computer Interface (BCI). The last decades the number of Brain-Computer …
openalex
Philipp Stankevich, Vladimir Spitsyn, Philipp V. Stankevich, В.Г. Спицын
2015-05-01
置信度 0.72
Brain–computer interfaceInterface (matter)Computer scienceHuman–computer interactionElectroencephalography
-
This paper illustrates the architecture and principles of brain-computer interface and virtual reality (BCI-VR) system respectively, and how they are interrelated. In this brand-new hybrid system, BCI uses bio-signal to serve as input and VR displays the resul…
openalex
Xinyu Tan, Yi Li, Yuan Gao
2017-12-01
置信度 0.72
Computer scienceVirtual realityBrain–computer interfaceHuman–computer interactionInterface (matter)
-
crossref
2020-11-02T05:35:30Z
置信度 0.70
-
crossref
2020-11-02T05:35:30Z
置信度 0.70
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crossref
2020-11-02T05:35:30Z
置信度 0.70
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Abstract Background : Brain Computer Interface (BCI) is one of the fast-growing technological trends, which finds its applications in the field of the healthcare sector. In this work, 16 electrodes of Electroencephalography (EEG) placed according to the 10-20 …
crossref
Babu Chinta, Moorthi M
2021-12-09T21:09:54Z
置信度 0.70
-
crossref
2020-11-02T05:35:30Z
置信度 0.70
-
crossref
2020-11-02T05:35:30Z
置信度 0.70
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openalex
Yang Wang, Dongrui Wu
2017-01-01
置信度 0.72
Brain–computer interfaceComputer scienceNeuroimagingFunctional magnetic resonance imagingInterface (matter)
-
crossref
2020-08-04T17:13:48Z
置信度 0.70
-
crossref
2020-08-04T17:13:48Z
置信度 0.70
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Background. Implantable brain-computer interfaces (iBCIs) decode neural signals to generate command signals for effector devices to restore lost functions, such as movement or speech. However, maintaining device performance over time requires recalibration of …
europepmc
2026
置信度 0.80
-
Brain-computer interfaces (BCIs) have the potential to optimise robotic-assisted gait rehabilitation by closing the loop between user and device. Developing such systems requires reliable methods for classifying walking and its component phases to enable real-…
pubmed
Ryan C, White C, Lennon O
2026
置信度 0.82
-
The clinical management of neurological disorders remains a major challenge worldwide, constrained by fundamental limitations in both diagnosis and therapy. Electroencephalography (EEG), the cornerstone of neurological assessment, is limited by low spatial res…
pubmed
Wang NN, Cao F, Xu D
2026
置信度 0.82
-
The sustained reliability of invasive brain-computer interface (BCI) electrodes is fundamentally constrained by progressive interface destabilization, a process driven by the dynamic foreign body response (FBR). Given the intricate, time-dependent evolution of…
pubmed
Yao W, Li Y, Meng Y, Pan X 等
2026
置信度 0.82
-
Ultrasound imaging through sonolucent cranial implants is an emerging modality for post-neurosurgical monitoring of the adult brain, but quantitative interpretation remains challenging due to speckle, attenuation, shadowing, and the difficulty of consistently …
pubmed
Vemulapalli J, Vaughan N
2026
置信度 0.82
-
Elucidating the language-brain relationship requires bridging the methodological gap between linguistics' abstract theoretical frameworks and neuroscience's empirical neural data. As an interdisciplinary cornerstone, computational neuroscience formalizes langu…
pubmed
Zhang F, Chai B, Wu Y, Siok WT 等
2026
置信度 0.82
-
Cardiorespiratory-based methods offer promising alternatives to traditional PSG for longitudinal sleep monitoring, holding significant systemic medical value for scalable sleep health management. This systematic review synthesizes methodological frameworks and…
pubmed
Chen W, He X, Zheng J, Chen S 等
2026
置信度 0.82
-
This article explores the regenerative peripheral nerve interface (RPNI) as an innovative solution for intuitive prosthetic control. Traditional control methods (myoelectric, brain-computer interfaces, and peripheral nerve interfaces) each have their own uniqu…
pubmed
Wang MJ, Kung TA, Cederna PS, Kemp SWP
2026
置信度 0.82
-
Brain-computer interface (BCI) establishes a bidirectional pathway between the brain and external devices. Its applications fall into two main categories: utilizing the brain as a controller (e.g., for prosthetics) or as a modulation target (e.g., for cognitiv…
europepmc
2026
置信度 0.80
-
Introduction Music is a universal language that transcends cultures and is deeply rooted in human evolutionary history. Its creation and appreciation recruit the limbic and reward systems, leading to the evocation of emotions ranging from happiness and sadness…
europepmc
2026
置信度 0.80
-
Post-stroke psychiatric disorders (PSPD), including depression, anxiety, and cognitive impairment, significantly hinder stroke survivors' rehabilitation and quality of life, with traditional interventions often showing limited efficacy. Brain-computer interfac…
europepmc
2026
置信度 0.80
-
pubmed
Brunyé TT, Mitroff SR, Elmore JG
2026
置信度 0.82
-
Brain-computer interface (BCI) can be used as a real-time bidirectional information gateway between the brain and machines. In particular, rapid progress in invasive BCI, propelled by recent developments in electrode materials, miniature and power-efficient el…
openalex
Zhiping Zhao, Chuang Nie, Cheng-Teng Jiang, Sheng-Hao Cao 等
2023-01-12
置信度 0.72
Brain–computer interfaceComputer scienceInterface (matter)Decoding methodsNeuroscience
-
In this paper we report the set-up and results of the Multimodal Brain Tumor Image Segmentation Benchmark (BRATS) organized in conjunction with the MICCAI 2012 and 2013 conferences. Twenty state-of-the-art tumor segmentation algorithms were applied to a set of…
openalex
Bjoern Menze, András Jakab, Stefan Bauer, Jayashree Kalpathy–Cramer 等
2014-12-04
置信度 0.72
Artificial intelligenceImage segmentationBenchmark (surveying)Computer scienceComputer vision
-
openalex
Debrupa Pal, Sujoy Palit, Anilesh Dey
2021-10-10
置信度 0.72
Brain–computer interfaceInterface (matter)Computer scienceHuman–computer interactionField (mathematics)
-
The advancement in neuroscience and computer science promotes the ability of the human brain to communicate and interact with the environment, making brain–computer interface (BCI) top interdisciplinary research. Furthermore, with the modern technology advance…
openalex
Zehong Cao
2020-09-01
置信度 0.72
Brain–computer interfaceElectroencephalographyComputer scienceArtificial intelligenceInterface (matter)
-
openalex
Varun Kohli, Utkarsh Tripathi, Vinay Chamola, B.K. Rout 等
2021-12-16
置信度 0.72
Augmented realityComputer scienceBrain–computer interfaceVirtual realityMixed reality
-
Due to the non-stationarity nature and poor signal-to-noise ratio (SNR) of brain signals, repeated time-consuming calibration is one of the biggest problems for today's brain-computer interfaces (BCIs). In order to reduce calibration time, many transfer learni…
openalex
Peitao Wang, Jun Lu, Bin Zhang, Zeng Tang
2015-04-01
置信度 0.72
Brain–computer interfaceDiscriminative modelComputer scienceTransfer of learningCalibration
-
BACKGROUND: Brain-Computer Interface (BCI) is becoming more reliable, thanks to the advantages of Artificial Intelligence (AI). Recently, hybrid Deep Learning (hDL), which combines different DL algorithms, has gained momentum over the past five years. In this …
openalex
Nibras Abo Alzahab, Luca Apollonio, Angelo Di Iorio, Muaaz Alshalak 等
2021-01-08
置信度 0.72
Brain–computer interfaceInterface (matter)Computer scienceHuman–computer interactionArtificial intelligence
-
A brain–computer interface (BCI) has been extensively studied to develop a novel communication system for disabled people using their brain activities. An asynchronous BCI system is more realistic and practical than a synchronous BCI system, in that, BCI comma…
openalex
Chang Hee Han, Klaus‐Robert Müller, Han-Jeong Hwang
2020-03-02
置信度 0.72
Brain–computer interfaceAsynchronous communicationComputer scienceInterface (matter)Neuroimaging
-
In recent years, various studies have demonstrated the potential of electroencephalographic (EEG) signals for the development of brain-computer interfaces (BCIs) in the rehabilitation of human limbs. This article is a systematic review of the state of the art …
openalex
Daniela Camargo-Vargas, Mauro Callejas-Cuervo, Stefano Mazzoleni
2021-06-24
置信度 0.72
Virtual realityHaptic technologyRehabilitationBrain–computer interfaceAuditory feedback
-
A brain-computer interface (BCI) is a system that allows its users to control external devices which are independent of peripheral nerves and muscles with brain activities. Electroencephalogram (EEG) signals are electrical signals collected from the scalp. The…
openalex
Shiliang Sun, Jin Zhou
2014-07-01
置信度 0.72
Brain–computer interfaceElectroencephalographyComputer scienceFeature extractionArtificial intelligence
-
Abstract Objective. Code-modulated visual evoked potentials (c-VEP) have been consolidated in recent years as robust control signals capable of providing non-invasive brain–computer interfaces (BCIs) for reliable, high-speed communication. Their usefulness for…
openalex
Víctor Martínez-Cagigal, Jordy Thielen, Eduardo Santamaría-Vázquez, Sergio Pérez-Velasco 等
2021-11-11
置信度 0.72
Computer scienceBrain–computer interfaceVisual evoked potentialsSelection (genetic algorithm)Control (management)
-
A brain-computer interface (BCI), also referred to as a mind-machine interface (MMI) or a brain-machine interface (BMI), provides a non-muscular channel of communication between the human brain and a computer system. With the advancements in low-cost electroni…
openalex
Parmar Prashant, Anand Joshi, Vaibhav Gandhi
2015-11-01
置信度 0.72
Brain–computer interfaceInterface (matter)Computer scienceElectroencephalographyFeature extraction
-
Electroencephalographic or EEG signals collected on the human scalp are sustained fluctuations of electrical potential that reflect corresponding variations in the upper layers of the brain cortex below the scalp surface. The signal structure is that of a stoc…
openalex
J.J. Vidal
1973-06-01
置信度 0.72
CRISPRPalindromePlasmidCas9Biology
-
BACKGROUND: The rapid expansion of research on Brain-Computer Interfaces (BCIs) is not only due to the promising solutions offered for persons with physical impairments. There is also a heightened need for understanding BCIs due to the challenges regarding eth…
openalex
Johannes Kögel, Jennifer R. Schmid, Ralf J. Jox, Orsolya Friedrich
2019-03-07
置信度 0.72
Philosophy of medicineComputer scienceData scienceCognitive sciencePsychology
-
A brain-computer interface (BCI) system can recognize the mental activities pattern by computer algorithms to control the external devices. Electroencephalogram (EEG) is one of the most common used approach for BCI due to the convenience and non-invasive imple…
openalex
Wenchang Zhang, Chuanqi Tan, Fuchun Sun, Hang Wu 等
2018-12-01
置信度 0.72
Brain–computer interfaceComputer scienceInterface (matter)ElectroencephalographyAsynchronous communication
-
Abstract Electroencephalography (EEG)-based Brain-Computer Interface (BCI) systems for emotion recognition have the potential to assist the enrichment of human–computer interaction with implicit information since they can enable understanding of the cognitive …
openalex
Kübra Erat, Elif Bilge Şahin, Furkan Doğan, Nur Merdanoğlu 等
2024-03-01
置信度 0.72
Computer scienceBrain–computer interfaceElectroencephalographyHuman–computer interactionSignal processing
-
Stroke is a leading cause of acquired disability resulting in distal upper extremity functional motor impairment. Stroke mortality rates continue to decline with advances in healthcare and medical technology. This has led to an increased demand for advanced, p…
openalex
Alexander Remsik, Brittany M. Young, Rebecca Vermilyea, Laura Kiekhoefer 等
2016-04-26
置信度 0.72
NeurorehabilitationBrain–computer interfacePhysical medicine and rehabilitationRehabilitationNeuroplasticity
-
This review article provides a deep insight into the Brain–Computer Interface (BCI) and the application of Machine Learning (ML) technology in BCIs. It investigates the various types of research undertaken in this realm and discusses the role played by ML in p…
openalex
Saim Rasheed
2021-10-26
置信度 0.72
Brain–computer interfaceComputer scienceCategorizationInterface (matter)Motor imagery
-
This review article discusses the definition and implementation of brain–computer interface (BCI) system relying on brain connectivity (BC) and machine learning/deep learning (DL) for motor imagery (MI)-based applications. During the past few years, many appro…
openalex
Lorenza Brusini, Francesca Stival, Francesco Setti, Emanuele Menegatti 等
2021-10-19
置信度 0.72
Brain–computer interfaceComputer scienceMotor imageryInterface (matter)Human–computer interaction
-
Aim /Objective: A Brain-Computer Interface (BCI) is a communication medium, which restructures brain signals into respective commands for an external device. Methodology: A BCI allows its target users like persons with motor disabilities to act on their enviro…
openalex
T. Anitha, N. Shanthi, R. Sathiyasheelan, G. Emayavaramban 等
2019-12-17
置信度 0.72
Brain–computer interfaceComputer scienceInterface (matter)Information transferElectroencephalography
-
The algorithms of electroencephalography (EEG) decoding are mainly based on machine learning in current research. One of the main assumptions of machine learning is that training and test data belong to the same feature space and are subject to the same probab…
openalex
Kai Zhang, Guanghua Xu, Xiaowei Zheng, Huanzhong Li 等
2020-11-05
置信度 0.72
ElectroencephalographyDecoding methodsBrain–computer interfaceComputer scienceTask (project management)
-
BACKGROUND: Brain-computer interface (BCI) systems have been suggested as a promising tool for neurorehabilitation. However, to date, there is a lack of homogeneous findings. Furthermore, no systematic reviews have analyzed the degree of validation of these in…
openalex
Esther Monge‐Pereira, Jaime Ibáñez, Isabel María Alguacil Diego, J. Ignacio Serrano 等
2017-05-13
置信度 0.72
NeurorehabilitationPhysical medicine and rehabilitationElectroencephalographyMedicinePsychological intervention
-
Purpose: The aim of this paper is to provide an exhaustive review of the literature about brain–computer interfaces (BCIs) that could be used with these paralysed patients. The electroencephalography (EEG) is the best candidate for the continuous use in the en…
openalex
Emanuele Pasqualotto, Stefano Federici, Marta Olivetti Belardinelli
2011-10-04
置信度 0.72
Brain–computer interfaceUSableComputer sciencePsychologyCognitive science
-
Brain-computer interface (BCI) technology translates brain activity into meaningful commands to establish a direct connection between the brain and the external world. Neuroscientific research in the past two decades has indicated a tremendous potential of BCI…
openalex
Ravikiran Mane, Zhenzhou Wu, David Wang
2022-07-19
置信度 0.72
Brain–computer interfaceRehabilitationCognitionPerspective (graphical)Interface (matter)
-
Brain-computer interfaces (BCIs) represent a new frontier in the effort to maximize the ability of individuals with profound motor impairments to interact and communicate. While much literature points to BCIs' promise as an alternative access pathway, there ha…
openalex
Silvia Orlandi, Sarah Catherine House, Petra Karlsson, Rami Saab 等
2021-07-14
置信度 0.72
ScopusBrain–computer interfaceExploratory researchPsychologyMEDLINE
-
The steady-state visual evoked potential (SSVEP), measured by the electroencephalograph (EEG), has high rates of information transfer and signal-to-noise ratio, and has been used to construct brain-computer interface (BCI) spellers. In BCI spellers, the target…
openalex
Minglun Li, Dianning He, Chen Li, Shouliang Qi
2021-04-01
置信度 0.72
Brain–computer interfaceComputer scienceStimulus (psychology)Visual evoked potentialsElectroencephalography
-
Neural probes, as an invasive physiological tool at the mesoscopic scale, can decipher the code of brain connections and communications from the cellular or even molecular level, and realize information fusion between the human body and external machines. In a…
openalex
Jia‐Hui Luo, Ning Xue, Jiamin Chen
2022-12-14
置信度 0.72
OptogeneticsComputer scienceArtifact (error)MicroelectrodeFlexibility (engineering)
-
A bidirectional in vitro brain-computer interface (BCI) directly connects isolated brain cells with the surrounding environment, reads neural signals and inputs modulatory instructions. As a noninvasive BCI, it has clear advantages in understanding and exploit…
openalex
Yaoyao Liu, Shihong Xu, Yan Yang, Kui Zhang 等
2023-01-30
置信度 0.72
Brain–computer interfaceMicroelectrodeComputer scienceBiological neural networkMultielectrode array
-
Research on brain-computer interface (BCI) began in the 1970s. Great efforts in neuroscience, robotics and computer sciences have spent by many research groups to develop BCI technologies and its applications. Recently, the commercial brain-computer interface …
openalex
Biao Zhang, Jianjun Wang, Thomas Fuhlbrigge
2010-08-01
置信度 0.72
Brain–computer interfaceRoboticsInterface (matter)Computer scienceHuman–computer interaction
-
Regaining the lost functionality of limbs is the top priority for people with motor skills impairment as it directly affects their ability to execute activities of daily living and hence, worsens their quality of life. In the last two decades, a great deal of …
openalex
Akshay Kumar, Lin Gao, Elena Pirogova, Qiang Fang
2019-01-01
置信度 0.72
Brain–computer interfaceComputer scienceRehabilitationGesturePhysical medicine and rehabilitation
-
openalex
Moritz Grosse‐Wentrup, Bernhard Schölkopf, Moritz Grosse-Wentrup
2013-01-01
置信度 0.72
Brain–computer interfaceContext (archaeology)Subject (documents)Computer scienceCognitive science
-
OBJECTIVE: Electroencephalography (EEG) analysis has been an important tool in neuroscience with applications in neuroscience, neural engineering (e.g. Brain-computer interfaces, BCI's), and even commercial applications. Many of the analytical tools used in EE…
openalex
Alexander Craik, Yongtian He, José L. Contreras-Vidal
2019-02-26
置信度 0.72
ElectroencephalographyDeep learningComputer scienceArtificial intelligenceConvolutional neural network
-
The brain-computer interface (BCI) has been investigated as a form of communication tool between the brain and external devices. BCIs have been extended beyond communication and control over the years. The 2020 international BCI competition aimed to provide hi…
openalex
Ji-Hoon Jeong, Jeong-Hyun Cho, Young-Eun Lee, Seo‐Hyun Lee 等
2022-07-22
置信度 0.72
Brain–computer interfaceCompetition (biology)Interface (matter)Variety (cybernetics)Computer science
-
In the last decade of the XX-th century, several academic centers have launched intensive research programs on the brain-computer interface (BCI). The current state of research allows to use certain properties of electromagnetic waves (brain activity) produced…
openalex
Remigiusz J. Rak, Marcin Kołodziej, Andrzej Majkowski
2012-01-01
置信度 0.72
Brain–computer interfaceElectroencephalographyInterface (matter)Computer scienceControl unit
-
Brain-machine interfaces hold promise for the restoration of sensory and motor function and the treatment of neurological disorders, but clinical brain-machine interfaces have not yet been widely adopted, in part, because modest channel counts have limited the…
openalex
Elon Musk, Neuralink
2019-10-14
置信度 0.72
Brain–computer interfaceComputer scienceInterface (matter)Human–computer interactionWorld Wide Web
-
'Can the brain understand the brain?Can it understand the mind?'Such questions, here posed by neurophysiologist and 1981 Nobel laureate David Hubel, are under constant debate, but through the investigations of neurobiologists, psychologists, and physiologists,…
openalex
Shirley Coyle, Tomás Ward, Charles H. Markham
2003-06-01
置信度 0.72
Cognitive scienceHuman–computer interactionComputer sciencePsychology
-
This literature review explores the pivotal role of brain–computer interface (BCI) technology, coupled with electroencephalogram (EEG) technology, in advancing rehabilitation for individuals with damaged muscles and motor systems. This study provides a compreh…
openalex
Walaa H. Elashmawi, Abdelrahman Ayman, Mina Antoun, Habiba Mohamed 等
2024-07-21
置信度 0.72
Brain–computer interfaceRehabilitationMotor imageryComputer scienceElectroencephalography
-
Mental fatigue is a psychophysical condition with a significant adverse effect on daily life, compromising both physical and mental wellness. We are experiencing challenges in this fast-changing environment, and mental fatigue problems are becoming more promin…
openalex
Hamwira Yaacob, Farhad Hossain, Sharunizam Shari, Smith K. Khare 等
2023-01-01
置信度 0.72
Brain–computer interfaceComputer scienceInterface (matter)Mental fatigueArtificial intelligence
-
Traditionally lesion location has been reported using standard templates, text based descriptions or representative raw slices from the patient's CT or MRI scan. Each of these methods has drawbacks for the display of neuroanatomical data. One solution is to di…
openalex
Chris Rorden, Matthew Brett
2000-01-01
置信度 0.72
NeurosciencePsychology
-
openalex
Jonathan R. Wolpaw
2004-01-01
置信度 0.72
Brain–computer interfaceNeuroscienceRhythmElectrophysiologyElectroencephalography
-
Due to the volume conduction multichannel electroencephalogram (EEG) recordings give a rather blurred image of brain activity. Therefore spatial filters are extremely useful in single-trial analysis in order to improve the signal-to-noise ratio. There are powe…
openalex
Benjamin Blankertz, Ryota Tomioka, Steven Lemm, Motoaki Kawanabe 等
2008-01-01
置信度 0.72
Computer sciencePreprocessorBrain–computer interfaceSignal processingNoise (video)
-
openalex
Sourav Kundu, Samit Ari, S. Kundu, S. Ari
2021-07-27
置信度 0.72
Brain–computer interfaceComputer scienceInterface (matter)Speech recognitionElectroencephalography
-
This review provides a comprehensive examination of recent developments in both neurofeedback and brain-computer interface (BCI) within the medical field and rehabilitation. By analyzing and comparing results obtained with various tools and techniques, we aim …
openalex
Vladimir Khorev, Semen Kurkin, Artem Badarin, Vladimir Antipov 等
2024-07-05
置信度 0.72
Brain–computer interfaceNeurofeedbackComputer scienceField (mathematics)Interface (matter)
-
One of the major limitations of brain-computer interface (BCI) is its long calibration time. Typically, a big amount of training data needs to be collected at the beginning of each session in order to tune the parameters of the system for the target user due t…
openalex
Ahmed M. Azab, Jake Toth, Lyudmila Mihaylova, Mahnaz Arvaneh 等
2018-09-22
置信度 0.72
Brain–computer interfaceTransfer of learningComputer scienceSession (web analytics)Interface (matter)
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Motivated by the vast amount of information that is rapidly accumulating about the human brain in digital form, we embarked upon a program in 1992 to develop a four-dimensional probabilistic atlas and reference system for the human brain. Through an Internatio…
openalex
John C. Mazziotta, Arthur W. Toga, Alan C. Evans, Peter T. Fox 等
2001-08-29
置信度 0.72
Human brainConcordanceProbabilistic logicPopulationBrain Structure and Function
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Brain–computer interfaces (BCIs) employ neurophysiological signals derived from the brain to control computers or external devices. By enhancing or replacing human peripheral functioning capacity, BCIs offer supplementary degrees of freedom, significantly impr…
openalex
Le Wu, Aiping Liu, Rabab Ward, Z. Jane Wang 等
2023-07-01
置信度 0.72
Brain–computer interfaceComputer scienceSignal processingNeurophysiologyInterface (matter)
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Brain–computer interface (BCI) technology has the potential to positively contribute to the educational learning environment, which faces many challenges and shortcomings. Cognitive and affective BCIs can offer a deep understanding of brain mechanisms, which m…
openalex
Nuraini Jamil, Abdelkader Nasreddine Belkacem, Sofía Ouhbi, Christoph Guger
2021-01-01
置信度 0.72
Computer scienceCognitionHuman–computer interactionSystematic reviewPsychology
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openalex
Jordan J. Levett, Lior M. Elkaim, Farbod Niazi, Michael H. Weber 等
2023-11-10
置信度 0.72
Brain–computer interfaceSpinal cord injuryFunctional electrical stimulationNeuroprostheticsPhysical medicine and rehabilitation
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Brain-computer interfaces (BCI) are an emerging technology that can read the brain signals of users, derive behavioral intentions, and manifest them in the control of electronic technologies. While there are potentially great benefits of this technology, there…
openalex
Brandon J. King, Gemma J. M. Read, Paul M. Salmon
2022-08-18
置信度 0.72
Brain–computer interfaceScope (computer science)Systematic reviewRisk analysis (engineering)Protocol (science)
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Context. In recent years, hybrid brain-computer interfaces (hBCIs) have proven to be a promising path towards practical brain-computer interfacing. These hybrid interfaces capitalize on the concurrent recording of various physiological signals, or of the elici…
openalex
Hubert Banville, Tiago H. Falk
2016-01-02
置信度 0.72
InterfacingComputer scienceNeurosciencePsychologyComputer hardware
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In recent times, the advancements in Brain-Computer Interface has not only been instrumental in achieving its fundamental purpose of aiding disabled people, but also in creating novel applications like playing games without physical controls or operating home …
openalex
Prashant Lahane, Jay Jagtap, Aditya Inamdar, Nihal Karne 等
2019-02-01
置信度 0.72
Brain–computer interfaceComputer sciencePreprocessorFeature extractionInterface (matter)
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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 scienceElectroencephalographyInterface (matter)SIGNAL (programming language)
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This study provides a comprehensive analysis of the developments, ethical considerations, and future prospects of brain-computer interfaces (BCIs) in the United States. The primary objective was to explore the historical evolution, current advancements, and po…
openalex
Sedat Sonko, Adefunke Fabuyide, Kenneth Ifeanyi Ibekwe, Emmanuel Augustine Etukudoh 等
2024-01-30
置信度 0.72
Human–computer interactionBrain–computer interfaceComputer scienceCognitive sciencePsychology
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Background Fatigue is a serious challenge when applying a steady-state visual evoked potential (SSVEP)-based brain-computer interfaces (BCIs) in the real world. Many researchers have used quantitative indices to study the effect of visual stimuli on fatigue. A…
openalex
Maedeh Azadi Moghadam, Ali Maleki
2023-11-16
置信度 0.72
Computer scienceVisualizationArtificial intelligenceBrain–computer interfaceElectroencephalography
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Importance: Brain–computer interface (BCI) decodes and converts brain signals into machine instructions to interoperate with the external world. However, limited by the implantation risks of invasive BCIs and the operational complexity of conventional noninvas…
openalex
Jiayan Zhang, Junshi Li, Zhe Huang, Dong Huang 等
2023-01-01
置信度 0.72
Brain–computer interfaceElectroencephalographyWearable computerComputer scienceHuman–computer interaction