An Architecture for Cognitive Modeling to Support Real-Time Adaptation and Motivational Responses in Video Games

Author(s):  
Juan Carlos Conde Ramírez ◽  
Abraham Sánchez López ◽  
Abraham Sánchez Flores
2017 ◽  
Vol 60 (6S) ◽  
pp. 1800-1809 ◽  
Author(s):  
Gabriel J. Cler ◽  
Talia Mittelman ◽  
Maia N. Braden ◽  
Geralyn Harvey Woodnorth ◽  
Cara E. Stepp

Purpose Video games provide a promising platform for rehabilitation of speech disorders. Although video games have been used to train speech perception in foreign language learners and have been proposed for aural rehabilitation, their use in speech therapy has been limited thus far. We present feasibility results from at-home use in a case series of children with velopharyngeal dysfunction (VPD) using an interactive video game that provided real-time biofeedback to facilitate appropriate nasalization. Method Five participants were recruited across a range of ages, VPD severities, and VPD etiologies. Participants completed multiple weeks of individual game play with a video game that provides feedback on nasalization measured via nasal accelerometry. Nasalization was assessed before and after training by using nasometry, aerodynamic measures, and expert perceptual judgments. Results Four participants used the game at home or school, with the remaining participant unwilling to have the nasal accelerometer secured to his nasal skin, perhaps due to his young age. The remaining participants showed a tendency toward decreased nasalization after training, particularly for the words explicitly trained in the video game. Conclusion Results suggest that video game–based systems may provide a useful rehabilitation platform for providing real-time feedback of speech nasalization in VPD. Supplemental Material https://doi.org/10.23641/asha.5116828


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