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[PDF] Top 20 Detecting awareness in patients with disorders of consciousness using a hybrid brain–computer interface

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Detecting awareness in patients with disorders of consciousness using a hybrid brain–computer interface

Detecting awareness in patients with disorders of consciousness using a hybrid brain–computer interface

... detection of potential awareness in patients with disorders of consciousness (DOC) currently relies only on behavioral observations and tests; however, the ... Voir le document complet

12

Detecting number processing and mental calculation in patients with disorders of consciousness using a hybrid brain-computer interface system

Detecting number processing and mental calculation in patients with disorders of consciousness using a hybrid brain-computer interface system

... Methods: In this study, we presented a hybrid brain-computer interface that combines P300 and steady state visual evoked potentials to detect number processing and mental calculation in [r] ... Voir le document complet

14

Effects of a Vibro-Tactile P300 Based Brain-Computer Interface on the Coma Recovery Scale-Revised in Patients With Disorders of Consciousness

Effects of a Vibro-Tactile P300 Based Brain-Computer Interface on the Coma Recovery Scale-Revised in Patients With Disorders of Consciousness

... segments of −100 ms to 600 ms around each stimulus were extracted and the EEG signal was averaged and baseline ...Trials with a signal amplitude ± 100 µV were rejected from further ...inspected. ... Voir le document complet

11

Brain-computer interfacing in disorders of consciousness.

Brain-computer interfacing in disorders of consciousness.

... of simple EEG BCIs based on two-choice imagery paradigms, which could afford such patients the means to demonstrate ...three patients with severe brain injury (MCS and LIS), while they ... Voir le document complet

37

Trends in BCI Research I: Brain-Computer Interfaces for Assessment of Patients with Locked-in Syndrome or Disorders of Consciousness

Trends in BCI Research I: Brain-Computer Interfaces for Assessment of Patients with Locked-in Syndrome or Disorders of Consciousness

... results with BCI-based motor imagery (MI) training in a patient who had MCS using sensorimotor rhythm (SMR) ...raise patientsawareness about the potential for BCI technology ... Voir le document complet

21

Detecting Brain Activity Following a Verbal Command in Patients With Disorders of Consciousness

Detecting Brain Activity Following a Verbal Command in Patients With Disorders of Consciousness

... activation in certain brain area; Sign ‘ × ’ represents certain brain area has no reaction to verbal ...detection of awareness in DOC ...found in most of the ... Voir le document complet

9

Ain't no rest for the brain: Neuroimaging and neuroethics in dialogue for patients with disorders of consciousness

Ain't no rest for the brain: Neuroimaging and neuroethics in dialogue for patients with disorders of consciousness

... regressors of interest in the design matrix using a block design (lasting 3 –30 ...modeled in supplemen- tary ...ment of the functional volumes (translations in the x, y, ... Voir le document complet

286

Transcranial Direct Current Stimulation (tDCS) in patients with disorders of consciousness

Transcranial Direct Current Stimulation (tDCS) in patients with disorders of consciousness

... Giacino, Fins, Laureys, Schiff, Nature Rev Neurol 2014. Deep brain stimulation transcranial Direct Current Stimulation amantadine zolpidem.[r] ... Voir le document complet

47

Burnout in healthcare workers managing chronic patients with disorders of consciousness.

Burnout in healthcare workers managing chronic patients with disorders of consciousness.

... associated with lower ratings of quality-of-care ...spent with patients who are unable to ...spent with patients, the greater is the number of healthcare workers ... Voir le document complet

7

Detecting consciousness in minimally conscious patients

Detecting consciousness in minimally conscious patients

... De plus, la conscience n’est pas un phénomène de « tout ou rien », son évaluation ne se base que sur l’interprétation des comportements observés. Dès lors, l’utilisation de l’électroencéphalographie et de la ... Voir le document complet

6

What are the treatment options in patients with disorders of consciousness?

What are the treatment options in patients with disorders of consciousness?

... Critical for consciousness recovery Moteur & PFDL F4 F3 CP5 CP6 Fp1 Fpz O1 Oz Multichannel frontoparietal tDCS.  Stimulation of the external awareness network bilaterally LP LP L[r] ... Voir le document complet

38

Clinical and electrophysiological investigation of spastic muscle overactivity in patients with disorders of consciousness following severe brain injury

Clinical and electrophysiological investigation of spastic muscle overactivity in patients with disorders of consciousness following severe brain injury

... profile of spastic muscle overactivity (SMO) is poorly documented in patients with disorders of consciousness (DOC) following severe cortical and subcortical ... Voir le document complet

35

A sensitive scale to assess nociceptive pain in patients with disorders of consciousness.

A sensitive scale to assess nociceptive pain in patients with disorders of consciousness.

... was a prospective multicentre study including patients from the intensive care and the neurology units of the university hospital of Liège as well as from the neurorehabilitation centres and ... Voir le document complet

6

Patients with disorders of consciousness: how to treat them?

Patients with disorders of consciousness: how to treat them?

... • tDCS over the prefrontal dorsolateral cortex, 2 mA, 20 min • 5 days per week during 4 weeks (2 tDCS sessions – real & sham) • Stimulations made by the family (video) • Assessment: CRS-R before – after 4 weeks – two ... Voir le document complet

21

Current knowledge on severe acquired brain injury with disorders of consciousness.

Current knowledge on severe acquired brain injury with disorders of consciousness.

... and Consciousness, Department of Psychiatry, University of Wisconsin, Madison, WI, USA, and 3 Postle Laboratory, Department of Psychology and Psychiatry, University of Wisconsin, ... Voir le document complet

2

Sedation of Patients With Disorders of Consciousness During Neuroimaging: Effects on Resting State Functional Brain Connectivity.

Sedation of Patients With Disorders of Consciousness During Neuroimaging: Effects on Resting State Functional Brain Connectivity.

... severity of patient movement when placed in the MRI ...to a minimum (Table ...infusion, using a target- controlled infusion system (Diprifusor, pharmacokinetic model of Marsh et ... Voir le document complet

11

Simplified Evaluation of CONsciousness Disorders (SECONDs) in individuals with severe brain injury: A validation study

Simplified Evaluation of CONsciousness Disorders (SECONDs) in individuals with severe brain injury: A validation study

... items in the CRS-R allow for detecting 99% of MCS ...scoring of the items are presented in Supplemental Data (Table ...experienced in the assessment of DoC and specialized ... Voir le document complet

23

Sleep in patients with disorders of consciousness characterized by means of machine learning

Sleep in patients with disorders of consciousness characterized by means of machine learning

... residual brain functioning in patients suffer- ing from disorders of consciousness (DOC) after awakening from ...However, a reliable characterization of sleep ... Voir le document complet

14

Brain-Computer Interface with cortical electrical activity recording

Brain-Computer Interface with cortical electrical activity recording

... Introduction A common approach for the brain signal processing, intended for event detection/prediction, consists in the extraction of the event-related features of the neuronal ... Voir le document complet

182

A brain-computer interface for navigation in virtual reality

A brain-computer interface for navigation in virtual reality

... Abstract: A Brain-Computer Interface (BCI) decodes the brain signals representing a desire to do something, and transforms those signals into a control ...only a ... Voir le document complet

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