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P50 | author | Chadwick Boulay | Q59691754 |
Muhammad A. Parvaz | Q37643516 | ||
P2093 | author name string | Dennis J McFarland | |
Janis Daly | |||
P2860 | cites work | Journal of Clinical Psychology | Q6294967 |
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Neurofeedback Therapy for Enhancing Visual Attention: State-of-the-Art and Challenges | Q26740639 | ||
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EEG neurofeedback treatments in children with ADHD: an updated meta-analysis of randomized controlled trials | Q26864646 | ||
MRI Biomarkers for Hand-Motor Outcome Prediction and Therapy Monitoring following Stroke | Q28080106 | ||
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What have We Learned from "Perturbing" the Human Cortical Motor System with Transcranial Magnetic Stimulation? | Q30478753 | ||
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Why use a connectivity-based approach to study stroke and recovery of function? | Q34194670 | ||
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Use-dependent alterations of movement representations in primary motor cortex of adult squirrel monkeys | Q34370373 | ||
Neural substrates for the effects of rehabilitative training on motor recovery after ischemic infarct | Q34382678 | ||
Electroencephalographic biofeedback in the treatment of attention-deficit/hyperactivity disorder | Q34433455 | ||
Effects of an EEG biofeedback protocol on a mixed substance abusing population | Q34450799 | ||
Depression: perspectives from affective neuroscience. | Q34467616 | ||
Applying a brain-computer interface to support motor imagery practice in people with stroke for upper limb recovery: a feasibility study | Q34471371 | ||
Neurofeedback Training as a New Method in Treatment of Crystal Methamphetamine Dependent Patients: A Preliminary Study | Q34472660 | ||
The user-centered design as novel perspective for evaluating the usability of BCI-controlled applications | Q34623993 | ||
Brain-computer interfaces for communication and control | Q34669759 | ||
Localization of asymmetric brain function in emotion and depression | Q34912322 | ||
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Trained modulation of sensorimotor rhythms can affect reaction time | Q35095192 | ||
Diagnosis and definition of treatment-resistant depression | Q35111568 | ||
Frontal EEG asymmetry as a moderator and mediator of emotion | Q35766307 | ||
Residual Upper Arm Motor Function Primes Innervation of Paretic Forearm Muscles in Chronic Stroke after Brain-Machine Interface (BMI) Training | Q35818617 | ||
Recovery of post stroke proximal arm function, driven by complex neuroplastic bilateral brain activation patterns and predicted by baseline motor dysfunction severity | Q35877118 | ||
Can neurofeedback training enhance performance? An evaluation of the evidence with implications for future research | Q36356711 | ||
Brain-computer interface technology as a tool to augment plasticity and outcomes for neurological rehabilitation | Q36649394 | ||
Subthalamic nucleus phase-amplitude coupling correlates with motor impairment in Parkinson's disease | Q36715520 | ||
Efficient neuroplasticity induction in chronic stroke patients by an associative brain-computer interface. | Q36729902 | ||
Neurofeedback training for opiate addiction: improvement of mental health and craving | Q36832206 | ||
Effects of training pre-movement sensorimotor rhythms on behavioral performance. | Q36832441 | ||
Subthalamic nucleus neurons are synchronized to primary motor cortex local field potentials in Parkinson's disease | Q36904578 | ||
Brain-machine interface in chronic stroke rehabilitation: a controlled study | Q36979996 | ||
Functional corticomuscular connection during reaching is weakened following stroke. | Q37188986 | ||
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Incubation of Cue-Induced Craving in Adults Addicted to Cocaine Measured by Electroencephalography. | Q37550680 | ||
Recent advances in quantitative EEG as an aid to diagnosis and as a guide to neurofeedback training for cortical hypofunctions, hyperfunctions, disconnections, and hyperconnections: improving efficacy in complicated neurological and psychological di | Q37615150 | ||
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Global burden of disease attributable to mental and substance use disorders: findings from the Global Burden of Disease Study 2010. | Q38133045 | ||
Brain-computer interfaces for EEG neurofeedback: peculiarities and solutions | Q38135191 | ||
A review of the clinical, economic, and societal burden of treatment-resistant depression: 1996-2013. | Q38208786 | ||
Are treatment effects of neurofeedback training in children with ADHD related to the successful regulation of brain activity? A review on the learning of regulation of brain activity and a contribution to the discussion on specificity | Q38419740 | ||
Neurocognitive effects of neurofeedback in adolescents with ADHD: a randomized controlled trial. | Q38428519 | ||
Specific Brain Lesions Impair Explicit Motor Imagery Ability: A Systematic Review of the Evidence | Q38562971 | ||
Electroencephalographic neurofeedback: Level of evidence in mental and brain disorders and suggestions for good clinical practice | Q38629274 | ||
Prediction of subjective ratings of emotional pictures by EEG features | Q39116361 | ||
Alpha wave biofeedback training therapy in alcoholics | Q39131730 | ||
Closing the sensorimotor loop: haptic feedback facilitates decoding of motor imagery | Q39762743 | ||
Dose response of task-specific upper limb training in people at least 6 months poststroke: A phase II, single-blind, randomized, controlled trial | Q41046617 | ||
New insights into the relationship between dopamine, beta oscillations and motor function | Q42496353 | ||
Dependence of subthalamic nucleus oscillations on movement and dopamine in Parkinson's disease | Q42521622 | ||
Flaws in current human training protocols for spontaneous Brain-Computer Interfaces: lessons learned from instructional design | Q42626341 | ||
Probabilistic co-adaptive brain-computer interfacing | Q43930743 | ||
Functional MRI and motor behavioral changes obtained with constraint-induced movement therapy in chronic stroke | Q44471492 | ||
Frontal lobe inputs to the digit representations of the motor areas on the lateral surface of the hemisphere. | Q45259388 | ||
Reprint of "Neurofeedback and standard pharmacological intervention in ADHD: a randomized controlled trial with six-month follow-up". | Q45891173 | ||
Co-adaptive calibration to improve BCI efficiency. | Q45962067 | ||
EEG-neurofeedback and psychodynamic psychotherapy in a case of adolescent anhedonia with substance misuse: mood/theta relations. | Q45963521 | ||
Towards a holistic assessment of the user experience with hybrid BCIs | Q46651225 | ||
Comparison of robotics, functional electrical stimulation, and motor learning methods for treatment of persistent upper extremity dysfunction after stroke: a randomized controlled trial | Q48161366 | ||
Neurofeedback for children with ADHD: a comparison of SCP and Theta/Beta protocols | Q48244016 | ||
Feasibility of a new application of noninvasive Brain Computer Interface (BCI): a case study of training for recovery of volitional motor control after stroke | Q48281359 | ||
Facilitating effects of transcranial direct current stimulation on motor imagery brain-computer interface with robotic feedback for stroke rehabilitation. | Q48307609 | ||
Brain-computer interface boosts motor imagery practice during stroke recovery | Q48311890 | ||
Plasticity of the sensorimotor cortex representation of the reading finger in Braille readers | Q48335714 | ||
Prolonged cognitive planning time, elevated cognitive effort, and relationship to coordination and motor control following stroke | Q48490585 | ||
Reduction in subthalamic 8-35 Hz oscillatory activity correlates with clinical improvement in Parkinson's disease | Q48579028 | ||
The origin of corticospinal projections from the premotor areas in the frontal lobe. | Q48788940 | ||
The relationship between oscillatory activity and motor reaction time in the parkinsonian subthalamic nucleus | Q49139846 | ||
Dissociation of the functional relevance of different pre-stimulus oscillatory activity for memory formation. | Q50554280 | ||
Trait anxiety impact on the EEG theta band power changes during appraisal of threatening and pleasant visual stimuli | Q51015734 | ||
Brain control of functional reach in healthy adults and stroke survivors. | Q51103209 | ||
The relationship between local field potential and neuronal discharge in the subthalamic nucleus of patients with Parkinson's disease. | Q51463453 | ||
Construction of efficacious gait and upper limb functional interventions based on brain plasticity evidence and model-based measures for stroke patients. | Q51897423 | ||
Response to upper-limb robotics and functional neuromuscular stimulation following stroke. | Q51942233 | ||
Theta-contingent trial presentation accelerates learning rate and enhances hippocampal plasticity during trace eyeblink conditioning. | Q52090012 | ||
Training of slow cortical potentials in attention-deficit/hyperactivity disorder: evidence for positive behavioral and neurophysiological effects. | Q52091576 | ||
Effects of repetitive motor training on movement representations in adult squirrel monkeys: role of use versus learning. | Q52167276 | ||
EEG and behavioral changes in a hyperkinetic child concurrent with training of the sensorimotor rhythm (SMR): a preliminary report | Q52308558 | ||
Repetitive training of isolated movements improves the outcome of motor rehabilitation of the centrally paretic hand. | Q53012070 | ||
Effects of coil orientation on the electric field induced by TMS over the hand motor area. | Q53655596 | ||
Compliance with antipsychotic drug treatment: influence of side effects. | Q54221303 | ||
Does Task-Specific Training Improve Upper Limb Performance in Daily Life Poststroke? | Q55098703 | ||
Neurofeedback and Basic Learning Theory: Implications for Research and Practice | Q56528016 | ||
Comparison of Discrete-Trial-Based SMR and SCP Training and the Interrelationship Between SCP and SMR Networks: Implications for Brain–Computer Interfaces and Neurofeedback | Q56528816 | ||
P433 | issue | 1-2 | |
P304 | page(s) | 37-52 | |
P577 | publication date | 2017-04-10 | |
P1433 | published in | Brain computer interfaces (Abingdon, England) | Q27725673 |
P1476 | title | Therapeutic Applications of BCI Technologies | |
P478 | volume | 47 |
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Q64119346 | Using brain-computer interfaces: a scoping review of studies employing social research methods |
Q92450839 | What is it like to use a BCI? - insights from an interview study with brain-computer interface users |
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