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Estimating Intention To Speak Using Non-Verbal Vocal Behavior
Estimating Intention To Speak Using Non-Verbal Vocal Behavior
Inferring Segments of Speaking Intention Using a Body-worn Accelerometer
Inferring Segments of Speaking Intention Using a Body-worn Accelerometer: Enhancing social interaction with AI-powered systems
Estimating Intentions to Speak Using Body Postures in Social Interactions
Estimating Intentions to Speak Using Body Postures in Social Interactions: Leveraging Different Machine Learning Techniques for Accurate Estimation of Intentions to Speak In-the-Wild
Estimating intentions to speak in social settings
Estimating intentions to speak in social settings: Speaker intention estimation using accelerometer data and non-verbal vocal behaviour
Estimating intentions to speak using Lexical information
Estimating intentions to speak using Lexical information: Leveraging Lexical Information to Facilitate Social Interactions with Artificial Agents
Detect chewing episodes with an Inertial Measurement Unit (IMU) sensor around the ear
Detect chewing episodes with an Inertial Measurement Unit (IMU) sensor around the ear: Detect chewing episodes with an Inertial Measurement Unit (IMU) sensor around the ear
Hierarchical Social Processes
Hierarchical Social Processes: Stochastic Meta-learning of Group and Individual-level Style
The effects on speech detection of low sample frequency audio data
The effects on speech detection of low sample frequency audio data
Revealing Hidden Conversations in Privacy-Sensitive Audio Using Neural Networks
Revealing Hidden Conversations in Privacy-Sensitive Audio Using Neural Networks
Laughter detection in privacy-sensitive audio
Laughter detection in privacy-sensitive audio
How Reduction in Sample Frequency Hinders the Detection of Words
How Reduction in Sample Frequency Hinders the Detection of Words
Automatic Detection of Mind Wandering Based on Eye Movement from the Mementos Data Set
Automatic Detection of Mind Wandering Based on Eye Movement from the Mementos Data Set
Automatic Detection of Mind Wandering Using Residual Network Generated Features
Automatic Detection of Mind Wandering Using Residual Network Generated Features
Automatic Detection of Mind-Wandering Based on Body and Hand Movements from “Mementos” Dataset
Automatic Detection of Mind-Wandering Based on Body and Hand Movements from “Mementos” Dataset
Detection of Mind-Wandering through Sound
Detection of Mind-Wandering through Sound
Assessing the influence of sensitivity and frequency on the performance of the Midge
Assessing the influence of sensitivity and frequency on the performance of the Midge
Effects of Changing the Midge’s Sampling Frequencies on Battery Life and Storage
Effects of Changing the Midge’s Sampling Frequencies on Battery Life and Storage
Automatic Detection of Mind-Wandering using Facial Expressions
Automatic Detection of Mind-Wandering using Facial Expressions
Finding Waldo and whom he is talking to a rotational approach to find social interaction groups
Finding Waldo and whom he is talking to a rotational approach to find social interaction groups
Identifying interaction groups using the bluetooth proximity data of the Conflab dataset
Identifying interaction groups using the bluetooth proximity data of the Conflab dataset
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