Researchers are increasingly utilizing physiological data like electrodermal activity (EDA) to understand how stress "gets under the skin." Results of EDA studies in autistic children are mixed, with some suggesting autistic hyperarousal, others finding hypoarousal, and yet others detecting no difference compared to non-autistics. Some of this variability likely stems from the different techniques used to assess EDA. Therefore, the purpose of this study is to investigate and compare commonly used metrics of EDA (frequency of peaks, average amplitude of peaks, and standard deviation of skin conductance level) using two data processing programs (NeuroKit2 and Ledalab) and their link to observed child behavior. EDA data were collected using Empatica E4 wristbands from 60 autistic children and adolescents (5-18 years old) during a 7-min play interaction with their primary caregiver. The play interaction was coded for a range of child behaviors including mood, social responsiveness, dysregulation, and cooperation. Results indicate a strong correlation between NeuroKit2 and Ledalab and a weak correlation between metrics within each program. Furthermore, the frequency of peaks was associated with more positive child social behaviors, and the magnitude of peaks was associated with less adaptive child behaviors. Recommendations for replication and the need for generalizability of this research are given.
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http://www.ncbi.nlm.nih.gov/pmc/articles/PMC10901449 | PMC |
http://dx.doi.org/10.1002/dev.22461 | DOI Listing |
Background: There is ample evidence that music can boost brain activity and jog deeply embedded memories. Literature indicates a significant improvement in autobiographical memory (ABM) recall for different individuals during background music sessions. Existing research is based solely on qualitative data, although music has a significant impact on physiological activity.
View Article and Find Full Text PDFAlzheimers Dement
December 2024
Dementia Research Centre, UCL Queen Square Institute of Neurology, University College London, London, United Kingdom.
Background: Responses to individualized music in people living with dementia can be indicated by both verbal and non-verbal cues. Evidence suggests that elevated pupil dilation responses to familiar vs. unfamiliar music are preserved in people living with typical Alzheimer's disease (tAD), and to an extent in people with its atypical 'visual' variant (Posterior Cortical Atrophy; PCA) (Brotherhood et al.
View Article and Find Full Text PDFAlzheimers Dement
December 2024
Kentucky College of Osteopathic Medicine, PikeVille, KY, USA.
Background: Integrating humanoid robots, wearable sensors, and spatial technology into an intelligent dementia-friendly living space is crucial for tailoring personalized and supportive environments, thereby addressing the unique needs of individuals affected by dementia and maintaining quality of life.[1-10].
Methods: We programmed Pepper, a humanoid robot, for independent verbal communication to interact, tell jokes, and offer medications.
Alzheimers Dement
December 2024
University of Minnesota Duluth, Duluth, MN, USA.
Background: In this study humanoid robots were programmed to deliver mindfulness-based stress relief therapy to individuals with dementia. Precisely programmed, these robots aim to enhance well-being, providing tailored interventions for relaxation, mood enhancement, and heightened cognition in dementia care, showcasing technology's promise in improving overall quality of life [1, 2, 3, 4].
Methods: In this study, the humanoid robot was programmed with a carefully AI based design protocol incorporating calming activities, guided breathing exercises, and interactive engagement, tailored to the cognitive abilities and preferences of individuals with dementia, to effectively deliver mindfulness-based stress relief therapy.
Alzheimers Dement
December 2024
Kentucky College of Osteopathic Medicine, PikeVille, KY, USA.
Background: Integrating humanoid robots, wearable sensors, and spatial technology into an intelligent dementia-friendly living space is crucial for tailoring personalized and supportive environments, thereby addressing the unique needs of individuals affected by dementia and maintaining quality of life.[1-10].
Methods: We programmed Pepper, a humanoid robot, for independent verbal communication to interact, tell jokes, and offer medications.
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