Groups are generally superior to individuals in making decisions. However, time constraints and authoritarian leaders could nullify the potential advantages provided by groups. This thesis proposes a hybrid collaborative Brain-Computer Interface (cBCI) for improving performance in group decision-making. Neural signals recorded via electroencephalography are integrated with other physiological and behavioural measures to predict the likelihood of the user being correct in a decision, i.e., decision confidence. Behavioural responses from multiple users are then weighed according to these confidence estimates to obtain group decisions. The proposed cBCI has been tested with a variety of decision-making tasks, including visual matching, visual ...
This paper reports a first step toward a brain-computer interface (BCI) for collaborative targeting....
Electroencephalogram (EEG) based brain-computer interfaces (BCI) have been studied since the 1970s. ...
This paper reports a first step toward a brain-computer interface (BCI) for collaborative targeting....
Objective: We aimed at improving group performance in a challenging visual search task via a hybrid ...
We look at the possibility of integrating the percepts from multiple non-communicating observers as ...
We look at the possibility of integrating the percepts from multiple non-communicating observers as ...
Groups have increased sensing and cognition capabilities that typically allow them to make better de...
We present a collaborative Brain-Computer Interface (cBCI) to aid group decision-making based on rea...
We look at the possibility of integrating the percepts from multiple non-communicating observers as ...
We look at the possibility of integrating the percepts from multiple non-communicating observers as ...
: The aim of this study is to maximize group decision performance by optimally adapting EEG confiden...
Abstract In this paper we present, and test in two realistic environments, collaborative Brain-Compu...
This paper presents a hybrid collaborative brain- computer interface (cBCI) to improve group-based r...
In this paper we use a collaborative brain-computer interface to integrate the decision confidence o...
Detecting a target in a complex environment can be a difficult task, both for a single individual an...
This paper reports a first step toward a brain-computer interface (BCI) for collaborative targeting....
Electroencephalogram (EEG) based brain-computer interfaces (BCI) have been studied since the 1970s. ...
This paper reports a first step toward a brain-computer interface (BCI) for collaborative targeting....
Objective: We aimed at improving group performance in a challenging visual search task via a hybrid ...
We look at the possibility of integrating the percepts from multiple non-communicating observers as ...
We look at the possibility of integrating the percepts from multiple non-communicating observers as ...
Groups have increased sensing and cognition capabilities that typically allow them to make better de...
We present a collaborative Brain-Computer Interface (cBCI) to aid group decision-making based on rea...
We look at the possibility of integrating the percepts from multiple non-communicating observers as ...
We look at the possibility of integrating the percepts from multiple non-communicating observers as ...
: The aim of this study is to maximize group decision performance by optimally adapting EEG confiden...
Abstract In this paper we present, and test in two realistic environments, collaborative Brain-Compu...
This paper presents a hybrid collaborative brain- computer interface (cBCI) to improve group-based r...
In this paper we use a collaborative brain-computer interface to integrate the decision confidence o...
Detecting a target in a complex environment can be a difficult task, both for a single individual an...
This paper reports a first step toward a brain-computer interface (BCI) for collaborative targeting....
Electroencephalogram (EEG) based brain-computer interfaces (BCI) have been studied since the 1970s. ...
This paper reports a first step toward a brain-computer interface (BCI) for collaborative targeting....