TY - JOUR A1 - Miralles, Felip A1 - Vargiu, Eloisa A1 - Dauwalder, Stefan A1 - Solà, Marc A1 - Müller-Putz, Gernot A1 - Wriessnegger, Selina C. A1 - Pinegger, Andreas A1 - Kübler, Andrea A1 - Halder, Sebastian A1 - Käthner, Ivo A1 - Martin, Suzanne A1 - Daly, Jean A1 - Armstrong, Elaine A1 - Guger, Christoph A1 - Hintermüller, Christoph A1 - Lowish, Hannah T1 - Brain computer interface on track to home. JF - The Scientific World Journal N2 - The novel BackHome system offers individuals with disabilities a range of useful services available via brain-computer interfaces (BCIs), to help restore their independence. This is the time such technology is ready to be deployed in the real world, that is, at the target end users’ home. This has been achieved by the development of practical electrodes, easy to use software, and delivering telemonitoring and home support capabilities which have been conceived, implemented, and tested within a user-centred design approach. The final BackHome system is the result of a 3-year long process involving extensive user engagement to maximize effectiveness, reliability, robustness, and ease of use of a home based BCI system. The system is comprised of ergonomic and hassle-free BCI equipment; one-click software services for Smart Home control, cognitive stimulation, and web browsing; and remote telemonitoring and home support tools to enable independent home use for nonexpert caregivers and users. BackHome aims to successfully bring BCIs to the home of people with limited mobility to restore their independence and ultimately improve their quality of life. KW - brain computer interface KW - disability KW - limited mobility KW - independence Y1 - 2015 U6 - http://nbn-resolving.de/urn/resolver.pl?urn:nbn:de:bvb:20-opus-149575 VL - 2015 IS - 623896 ER - TY - JOUR A1 - Käthner, Ivo A1 - Kübler, Andrea A1 - Halder, Sebastian T1 - Comparison of eye tracking, electrooculography and an auditory brain-computer interface for binary communication: a case study with a participant in the locked-in state JF - Journal of NeuroEngineering and Rehabilitation N2 - Background In this study, we evaluated electrooculography (EOG), an eye tracker and an auditory brain-computer interface (BCI) as access methods to augmentative and alternative communication (AAC). The participant of the study has been in the locked-in state (LIS) for 6 years due to amyotrophic lateral sclerosis. He was able to communicate with slow residual eye movements, but had no means of partner independent communication. We discuss the usability of all tested access methods and the prospects of using BCIs as an assistive technology. Methods Within four days, we tested whether EOG, eye tracking and a BCI would allow the participant in LIS to make simple selections. We optimized the parameters in an iterative procedure for all systems. Results The participant was able to gain control over all three systems. Nonetheless, due to the level of proficiency previously achieved with his low-tech AAC method, he did not consider using any of the tested systems as an additional communication channel. However, he would consider using the BCI once control over his eye muscles would no longer be possible. He rated the ease of use of the BCI as the highest among the tested systems, because no precise eye movements were required; but also as the most tiring, due to the high level of attention needed to operate the BCI. Conclusions In this case study, the partner based communication was possible due to the good care provided and the proficiency achieved by the interlocutors. To ease the transition from a low-tech AAC method to a BCI once control over all muscles is lost, it must be simple to operate. For persons, who rely on AAC and are affected by a progressive neuromuscular disease, we argue that a complementary approach, combining BCIs and standard assistive technology, can prove valuable to achieve partner independent communication and ease the transition to a purely BCI based approach. Finally, we provide further evidence for the importance of a user-centered approach in the design of new assistive devices. KW - eye tracking KW - electrooculography KW - auditory brain-computer interface Y1 - 2015 U6 - http://nbn-resolving.de/urn/resolver.pl?urn:nbn:de:bvb:20-opus-145305 VL - 12 IS - 76 ER - TY - JOUR A1 - Simon, Nadine A1 - Käthner, Ivo A1 - Ruf, Carolin A. A1 - Pasqualotto, Emanuele A1 - Kübler, Andrea A1 - Halder, Sebastian T1 - An auditory multiclass brain-computer interface with natural stimuli: Usability evaluation with healthy participants and a motor impaired end user JF - Frontiers in Human Neuroscience N2 - Brain-computer interfaces (BCIs) can serve as muscle independent communication aids. Persons, who are unable to control their eye muscles (e.g., in the completely locked-in state) or have severe visual impairments for other reasons, need BCI systems that do not rely on the visual modality. For this reason, BCIs that employ auditory stimuli were suggested. In this study, a multiclass BCI spelling system was implemented that uses animal voices with directional cues to code rows and columns of a letter matrix. To reveal possible training effects with the system, 11 healthy participants performed spelling tasks on 2 consecutive days. In a second step, the system was tested by a participant with amyotrophic lateral sclerosis (ALS) in two sessions. In the first session, healthy participants spelled with an average accuracy of 76% (3.29 bits/min) that increased to 90% (4.23 bits/min) on the second day. Spelling accuracy by the participant with ALS was 20% in the first and 47% in the second session. The results indicate a strong training effect for both the healthy participants and the participant with ALS. While healthy participants reached high accuracies in the first session and second session, accuracies for the participant with ALS were not sufficient for satisfactory communication in both sessions. More training sessions might be needed to improve spelling accuracies. The study demonstrated the feasibility of the auditory BCI with healthy users and stresses the importance of training with auditory multiclass BCIs, especially for potential end-users of BCI with disease. KW - P300 KW - EEG KW - auditory BCI KW - brain-computer interface KW - communication KW - ALS Y1 - 2015 U6 - http://nbn-resolving.de/urn/resolver.pl?urn:nbn:de:bvb:20-opus-126450 VL - 8 IS - 1039 ER - TY - THES A1 - Käthner, Ivo R. J. T1 - Auditory and visual brain-computer interfaces as communication aids for persons with severe paralysis T1 - Akustische und visuelle Gehirn-Computer Schnittstellen als Kommunikationshilfen für Menschen mit schweren Muskellähmungen N2 - Brain-computer interfaces (BCIs) could provide a muscle-independent communication channel to persons with severe paralysis by translating brain activity into device commands. As a means of communication, in particular BCIs based on event-related potentials (ERPs) as control signal have been researched. Most of these BCIs rely on visual stimulation and have been investigated with healthy participants in controlled laboratory environments. In proof-of-principle studies targeted end users gained control over BCI systems; however, these systems are not yet established as an assistive technology for persons who would most benefit from them. The main aim of this thesis is to advance the usability of ERP-BCIs for target users. To this end, five studies with BCIs have been conducted that enabled users to communicate by focusing their attention on external stimuli. Two studies were conducted in order to demonstrate the advantages and to further improve the practical application of visual BCIs. In the first study, mental workload was experimentally manipulated during prolonged BCI operation. The study showed the robustness of the visual ERP-BCI since users maintained a satisfactory level of control despite constant distraction in the form of background noise. Moreover, neurophysiological markers that could potentially serve as indicators of high mental workload or fatigue were revealed. This is a first step towards future applications in which the BCI could adapt to the mental state of the user (e.g. pauses if high mental workload is detected to prevent false selections). In the second study, a head-mounted display (HMD), which assures that stimuli are presented in the field of view of the user, was evaluated. High accuracies and information transfer rates, similar to a conventional display, were achieved by healthy participants during a spelling task. Furthermore, a person in the locked-in state (LIS) gained control over the BCI using the HMD. The HMD might be particularly suited for initial communication attempts with persons in the LIS in situations, where mounting a conventional monitor is difficult or not feasible. Visual ERP-BCIs could prove valuable for persons with residual control over eye muscles and sufficient vision. However, since a substantial number of target users have limited control over eye movements and/or visual impairments, BCIs based on non-visual modalities are required. Therefore, a main aspect of this thesis was to improve an auditory paradigm that should enable motor impaired users to spell by focusing attention on different tones. The two conducted studies revealed that healthy participants were able to achieve high spelling performance with the BCI already in the first session and stress the importance of the choice of the stimulus material. The employed natural tones resulted in an increase in performance compared to a previous study that used artificial tones as stimuli. Furthermore, three out of five users with a varying degree of motor impairments could gain control over the system within the five conducted sessions. Their performance increased significantly from the first to the fifth session - an effect not previously observed for visual ERP-BCIs. Hence, training is particularly important when testing auditory multiclass BCIs with potential users. A prerequisite for user satisfaction is that the BCI technology matches user requirements. In this context, it is important to compare BCIs with already established assistive technology. Thus, the fifth study of this dissertation evaluated gaze dependent methods (EOG, eye tracking) as possible control signals for assistive technology and a binary auditory BCI with a person in the locked-in state. The study participant gained control over all tested systems and rated the ease of use of the BCI as the highest among the tested alternatives, but also rated it as the most tiring due to the high amount of attention that was needed for a simple selection. Further efforts are necessary to simplify operation of the BCI. The involvement of end users in all steps of the design and development process of BCIs will increase the likelihood that they can eventually be used as assistive technology in daily life. The work presented in this thesis is a substantial contribution towards the goal of re-enabling communication to users who cannot rely on motor activity to convey their thoughts. N2 - Gehirn-Computer Schnittstellen (engl. brain-computer interfaces, BCIs) könnten Menschen mit schweren Muskellähmungen muskelunabhängige Kommunikation ermöglichen, indem sie Gehirnaktivität in Steuerungsbefehle übersetzen. Zu Kommunikationszwecken wurden insbesondere BCIs erforscht, die auf ereigniskorrelierten Potenzialen (EKPs) als Steuerungssignal beruhen. Die Mehrzahl dieser BCIs basiert auf visuellen Paradigmen und wurde unter kontrollierten Laborbedingungen mit gesunden Versuchsteilnehmern untersucht. In Machbarkeitsstudien konnten auch Menschen mit schweren Muskellähmungen Kontrolle erlangen. Jedoch sind BCIs noch nicht im Alltag als Hilfsmittel für diejenigen etabliert, die am meisten von ihnen profitieren würden. Die Gebrauchstauglichkeit für diese Zielgruppe zu erhöhen, ist das Hauptziel der vorliegenden Arbeit. Zu diesem Zweck wurden fünf Studien mit BCIs durchgeführt, die Nutzern durch die Aufmerksamkeitsfokussierung auf externe Reize ermöglichen zu kommunizieren. Um die Vorteile der visuellen Paradigmen zu zeigen und die praktische Anwendbarkeit weiter zu verbessern, wurden zwei Studien durchgeführt. In der ersten Studie wurde die mentale Arbeitsbelastung während längerer Benutzung eines BCI experimentell manipuliert. Die Studie demonstrierte die Robustheit des EKP-BCI. Nutzer konnten trotz konstanter Ablenkung durch Hintergrundgeräusche ein zufriedenstellendes Kontrollniveau aufrechterhalten. Darüber hinaus wurden neurophysiologische Marker gefunden, die als Indikatoren hoher mentaler Arbeitsbelastung oder Ermüdung dienen können. Dies ist ein erster Schritt hin zu Anwendungen, bei denen sich das BCI dem mentalen Zustand des Benutzers anpasst (z.B. indem die Anwendung pausiert, wenn hohe Arbeitsbelastung detektiert wird, um Falschauswahlen zu verhindern). In der zweiten Studie wurde ein Head- Mounted Display (HMD) evaluiert, welches sicherstellt, dass alle Stimuli im Gesichtsfeld des Nutzers angezeigt werden. Dabei wurden von gesunden Versuchsteilnehmern hohe Genauigkeiten und Informationstransferraten beim Schreiben von Wörtern erzielt, vergleichbar mit denen eines herkömmlichen Bildschirms. Zusätzlich erlangte ein Nutzer im Locked-in-Zustand Kontrolle über das BCI mittels des HMD. Das HMD könnte sich insbesondere für initiale Kommunikationsversuche für Personen im Locked-in-Zustand eignen, wenn sich das Aufstellen eines konventionellen Bildschirms als schwierig oder unmöglich erweist. Visuelle EKP-BCIs könnten sich insgesamt als wertvoll für Personen herausstellen, die noch ihre Augenbewegungen kontrollieren können und über ausreichend Sehkraft verfügen. Da eine nicht unerhebliche Zahl von potenziellen Endbenutzern jedoch eingeschränkte Kontrolle über Augenbewegungen und/oder Sehbeeinträchtigungen hat, sind BCIs notwendig, die auf nicht-visuellen Modalitäten beruhen. Im Rahmen dieser Arbeit lag ein Fokus deshalb auf der Weiterentwicklung eines akustischen Paradigmas, welches Nutzern mit motorischen Einschränkungen das Buchstabieren durch die Aufmerksamkeitsfokussierung auf verschiedene Töne ermöglichen soll. Die beiden hierzu durchgeführten Studien zeigten, dass gesunde Versuchsteilnehmer bereits in der ersten Sitzung hohe Buchstabiergenauigkeiten erzielen konnten. Zudem unterstreichen diese Studien die Wichtigkeit der Wahl der Stimuli. Die in den beiden Studien verwendeten natürlichen Geräusche, führten zu einer Leistungsverbesserung verglichen mit einer vorausgegangenen Studie, die künstliche Töne verwendete. Darüber hinaus konnten drei von fünf Nutzern mit Muskellähmungen innerhalb von fünf Sitzungen Kontrolle über das System erlangen. Für die drei Nutzer war die Leistung in der fünften Sitzung dabei deutlich höher als in der ersten. Ein solcher Trainingseffekt wurde mit visuellen Paradigmen in vorausgegangenen Studien bisher nicht berichtet. Dieses Ergebnis betont daher die Bedeutsamkeit von Training während der Erprobung von akustischen Multi-Klassen-BCIs mit Endbenutzern. Eine Grundvoraussetzung für Nutzerzufriedenheit ist, dass die BCI Technologie den Bedürfnissen der Nutzer entspricht. In diesem Zusammenhang ist es wichtig, BCIs mit bereits etablierten Hilfsmitteln zu vergleichen. Daher wurden in der fünften Studie dieser Dissertation sowohl blickabhängige Methoden (EOG, Eye-Tracking) als auch ein akustisches BCI zur binären Kommunikation mit einem Nutzer im Locked-in-Zustand evaluiert. Der Studienteilnehmer erlangte über alle getesteten Systeme die Kontrolle und bewertete den Bedienkomfort des BCI am höchsten verglichen mit den anderen getesteten Methoden. Das BCI wurde jedoch aufgrund der hohen Konzentration, die für die Auswahl eines einzelnen Befehls benötigt wurde, als die ermüdendste bewertet. Weitere Entwicklungen sind notwendig, um die Bedienung des BCI noch stärker zu vereinfachen. Die Einbeziehung von Endbenutzern in alle Schritte des Entwicklungsprozesses eines BCI wird die Wahrscheinlichkeit erhöhen, dass es schließlich als Hilfsmittel im Alltag genutzt werden kann. Die vorliegende Dissertation leistet wesentliche Beiträge, um dieses Ziel zu erreichen: Nämlich Nutzern, welche sich nicht mittels motorischer Aktivität ausdrücken können, eine neue Form der Kommunikation zu ermöglichen. KW - Gehirn-Computer Schnittstelle KW - Elektronencephalographie KW - Kommunikationshilfe KW - Brain-computer interface KW - BCI KW - EEG KW - P300 KW - ALS KW - LIS KW - AAC Y1 - 2015 U6 - http://nbn-resolving.de/urn/resolver.pl?urn:nbn:de:bvb:20-opus-135477 ER - TY - JOUR A1 - Käthner, Ivo A1 - Kübler, Andrea A1 - Halder, Sebastian T1 - Rapid P300 brain-computer interface communication with a head-mounted display JF - Frontiers in Neuroscience N2 - Visual ERP (P300) based brain-computer interfaces (BCIs) allow for fast and reliable spelling and are intended as a muscle-independent communication channel for people with severe paralysis. However, they require the presentation of visual stimuli in the field of view of the user. A head-mounted display could allow convenient presentation of visual stimuli in situations, where mounting a conventional monitor might be difficult or not feasible (e.g., at a patient's bedside). To explore if similar accuracies can be achieved with a virtual reality (VR) headset compared to a conventional flat screen monitor, we conducted an experiment with 18 healthy participants. We also evaluated it with a person in the locked-in state (LIS) to verify that usage of the headset is possible for a severely paralyzed person. Healthy participants performed online spelling with three different display methods. In one condition a 5 x 5 letter matrix was presented on a conventional 22 inch TFT monitor. Two configurations of the VR headset were tested. In the first (glasses A), the same 5 x 5 matrix filled the field of view of the user. In the second (glasses B), single letters of the matrix filled the field of view of the user. The participant in the LIS tested the VR headset on three different occasions (glasses A condition only). For healthy participants, average online spelling accuracies were 94% (15.5 bits/min) using three flash sequences for spelling with the monitor and glasses A and 96% (16.2 bits/min) with glasses B. In one session, the participant in the LIS reached an online spelling accuracy of 100% (10 bits/min) using the glasses A condition. We also demonstrated that spelling with one flash sequence is possible with the VR headset for healthy users (mean: 32.1 bits/min, maximum reached by one user: 71.89 bits/min at 100% accuracy). We conclude that the VR headset allows for rapid P300 BCI communication in healthy users and may be a suitable display option for severely paralyzed persons. KW - speller performance KW - face perception KW - stimulus KW - rapid BCI KW - locked-in state KW - P300 KW - head-mounted display KW - brain-computer interface Y1 - 2015 U6 - http://nbn-resolving.de/urn/resolver.pl?urn:nbn:de:bvb:20-opus-148520 VL - 9 IS - 207 ER - TY - JOUR A1 - Käthner, Ivo A1 - Eidel, Matthias A1 - Häge, Anne-Sophie A1 - Gram, Annika A1 - Pauli, Paul T1 - Observing physicians acting with different levels of empathy modulates later assessed pain tolerance JF - British Journal of Health Psychology N2 - Objectives The patient–physician relationship is essential for treatment success. Previous studies demonstrated that physicians who behave empathic in their interaction with patients have a positive effect on health outcomes. In this study, we investigated if the mere perception of physicians as empathic/not empathic modulates pain despite an emotionally neutral interaction with the patients. Methods N = 60 women took part in an experimental study that simulated a clinical interaction. In the paradigm, each participant watched two immersive 360° videos via a head-mounted display from a patient’s perspective. The physicians in the videos behaved either empathic or not empathic towards a third person. Importantly, these physicians remained emotionally neutral in the subsequent virtual interaction with the participants. Finally, participants received a controlled, painful pressure stimulus within the narratives of the videos. Results The physicians in the high compared with the low empathy videos were rated as more empathic and more likable, indicating successful experimental manipulation. In spite of later neutral behaviour of physicians, this short observation of physicians’ behaviour towards a third person was sufficient to modulate pain tolerance of the participants. Conclusions The finding of this study that the mere observation of physicians’ behaviour towards a third person modulates pain, despite a neutral direct interaction with the participants, has important clinical implications. Further, the proposed paradigm enables investigating aspects of patient–physician communication that are difficult to examine in a clinical setting. KW - patient–physician relationship KW - empathy KW - psychology KW - pain KW - 360° videos Y1 - 2022 U6 - http://nbn-resolving.de/urn/resolver.pl?urn:nbn:de:bvb:20-opus-258368 VL - 27 IS - 2 ER - TY - JOUR A1 - Käthner, Ivo A1 - Bader, Thomas A1 - Pauli, Paul T1 - Heat pain modulation with virtual water during a virtual hand illusion JF - Scientific Reports N2 - Immersive virtual reality is a powerful method to modify the environment and thereby influence experience. The present study used a virtual hand illusion and context manipulation in immersive virtual reality to examine top-down modulation of pain. Participants received painful heat stimuli on their forearm and placed an embodied virtual hand (co-located with their real one) under a virtual water tap, which dispensed virtual water under different experimental conditions. We aimed to induce a temperature illusion by a red, blue or white light suggesting warm, cold or no virtual water. In addition, the sense of agency was manipulated by allowing participants to have high or low control over the virtual hand’s movements. Most participants experienced a thermal sensation in response to the virtual water and associated the blue and red light with cool/cold or warm/hot temperatures, respectively. Importantly, the blue light condition reduced and the red light condition increased pain intensity and unpleasantness, both compared to the control condition. The control manipulation influenced the sense of agency, but did not influence pain ratings. The large effects revealed in our study suggest that context effects within an embodied setting in an immersive virtual environment should be considered within VR based pain therapy. KW - Cognitive neuroscience KW - Neuroscience KW - Psychology Y1 - 2019 U6 - http://nbn-resolving.de/urn/resolver.pl?urn:nbn:de:bvb:20-opus-202221 VL - 9 ER - TY - JOUR A1 - Winter, Carla A1 - Kern, Florian A1 - Gall, Dominik A1 - Latoschik, Marc Erich A1 - Pauli, Paul A1 - Käthner, Ivo T1 - Immersive virtual reality during gait rehabilitation increases walking speed and motivation: a usability evaluation with healthy participants and individuals with multiple sclerosis and stroke JF - Journal of Neuroengineering and Rehabilitation N2 - Background: The rehabilitation of gait disorders in patients with multiple sclerosis (MS) and stroke is often based on conventional treadmill training. Virtual reality (VR)-based treadmill training can increase motivation and improve therapy outcomes. The present study evaluated an immersive virtual reality application (using a head-mounted display, HMD) for gait rehabilitation with patients to (1) demonstrate its feasibility and acceptance and to (2) compare its short-term effects to a semi-immersive presentation (using a monitor) and a conventional treadmill training without VR to assess the usability of both systems and estimate the effects on walking speed and motivation. Methods: In a within-subjects study design, 36 healthy participants and 14 persons with MS or stroke participated in each of the three experimental conditions (VR via HMD, VR via monitor, treadmill training without VR). Results: For both groups, the walking speed in the HMD condition was higher than in treadmill training without VR and in the monitor condition. Healthy participants reported a higher motivation after the HMD condition as compared with the other conditions. Importantly, no side effects in the sense of simulator sickness occurred and usability ratings were high. No increases in heart rate were observed following the VR conditions. Presence ratings were higher for the HMD condition compared with the monitor condition for both user groups. Most of the healthy study participants (89%) and patients (71%) preferred the HMD-based training among the three conditions and most patients could imagine using it more frequently. Conclusions For the first time, the present study evaluated the usability of an immersive VR system for gait rehabilitation in a direct comparison with a semi-immersive system and a conventional training without VR with healthy participants and patients. The study demonstrated the feasibility of combining a treadmill training with immersive VR. Due to its high usability and low side effects, it might be particularly suited for patients to improve training motivation and training outcome e. g. the walking speed compared with treadmill training using no or only semi-immersive VR. Immersive VR systems still require specific technical setup procedures. This should be taken into account for specific clinical use-cases during a cost-benefit assessment. KW - rehabilitation KW - gait disorder KW - virtual reality KW - multiple sclerosis KW - stroke KW - head-mounted display KW - motivation Y1 - 2021 U6 - http://nbn-resolving.de/urn/resolver.pl?urn:nbn:de:bvb:20-opus-258698 SN - 1743-0003 VL - 18 IS - 1 ER - TY - JOUR A1 - Käthner, Ivo A1 - Halder, Sebastian A1 - Hintermüller, Christoph A1 - Espinosa, Arnau A1 - Guger, Christoph A1 - Miralles, Felip A1 - Vargiu, Eloisa A1 - Dauwalder, Stefan A1 - Rafael-Palou, Xavier A1 - Solà, Marc A1 - Daly, Jean M. A1 - Armstrong, Elaine A1 - Martin, Suzanne A1 - Kübler, Andrea T1 - A Multifunctional Brain-Computer Interface Intended for Home Use: An Evaluation with Healthy Participants and Potential End Users with Dry and Gel-Based Electrodes JF - Frontiers in Neuroscience N2 - Current brain-computer interface (BCIs) software is often tailored to the needs of scientists and technicians and therefore complex to allow for versatile use. To facilitate home use of BCIs a multifunctional P300 BCI with a graphical user interface intended for non-expert set-up and control was designed and implemented. The system includes applications for spelling, web access, entertainment, artistic expression and environmental control. In addition to new software, it also includes new hardware for the recording of electroencephalogram (EEG) signals. The EEG system consists of a small and wireless amplifier attached to a cap that can be equipped with gel-based or dry contact electrodes. The system was systematically evaluated with a healthy sample, and targeted end users of BCI technology, i.e., people with a varying degree of motor impairment tested the BCI in a series of individual case studies. Usability was assessed in terms of effectiveness, efficiency and satisfaction. Feedback of users was gathered with structured questionnaires. Two groups of healthy participants completed an experimental protocol with the gel-based and the dry contact electrodes (N = 10 each). The results demonstrated that all healthy participants gained control over the system and achieved satisfactory to high accuracies with both gel-based and dry electrodes (average error rates of 6 and 13%). Average satisfaction ratings were high, but certain aspects of the system such as the wearing comfort of the dry electrodes and design of the cap, and speed (in both groups) were criticized by some participants. Six potential end users tested the system during supervised sessions. The achieved accuracies varied greatly from no control to high control with accuracies comparable to that of healthy volunteers. Satisfaction ratings of the two end-users that gained control of the system were lower as compared to healthy participants. The advantages and disadvantages of the BCI and its applications are discussed and suggestions are presented for improvements to pave the way for user friendly BCIs intended to be used as assistive technology by persons with severe paralysis. KW - end-user evaluation KW - brain-computer interface KW - EEG KW - practical electrodes KW - assistive technology Y1 - 2017 U6 - http://nbn-resolving.de/urn/resolver.pl?urn:nbn:de:bvb:20-opus-157925 VL - 11 IS - 286 ER -