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  1.  14
    Modeling Transcranial Direct-Current Stimulation-Induced Electric Fields in Children and Adults.Patrick Ciechanski, Helen L. Carlson, Sabrina S. Yu & Adam Kirton - 2018 - Frontiers in Human Neuroscience 12.
  2.  26
    Pediatric stroke and transcranial direct current stimulation: methods for rational individualized dose optimization.Bernadette T. Gillick, Adam Kirton, Jason B. Carmel, Preet Minhas & Marom Bikson - 2014 - Frontiers in Human Neuroscience 8.
  3.  7
    On the feasibility of simple brain-computer interface systems for enabling children with severe physical disabilities to explore independent movement.Erica D. Floreani, Danette Rowley, Dion Kelly, Eli Kinney-Lang & Adam Kirton - 2022 - Frontiers in Human Neuroscience 16:1007199.
    IntroductionChildren with severe physical disabilities are denied their fundamental right to move, restricting their development, independence, and participation in life. Brain-computer interfaces (BCIs) could enable children with complex physical needs to access power mobility (PM) devices, which could help them move safely and independently. BCIs have been studied for PM control for adults but remain unexamined in children. In this study, we explored the feasibility of BCI-enabled PM control for children with severe physical disabilities, assessing BCI performance, standard PM skills (...)
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  4.  7
    Advancing Brain-Computer Interface Applications for Severely Disabled Children Through a Multidisciplinary National Network: Summary of the Inaugural Pediatric BCI Canada Meeting.Eli Kinney-Lang, Dion Kelly, Erica D. Floreani, Zeanna Jadavji, Danette Rowley, Ephrem Takele Zewdie, Javad R. Anaraki, Hosein Bahari, Kim Beckers, Karen Castelane, Lindsey Crawford, Sarah House, Chelsea A. Rauh, Amber Michaud, Matheus Mussi, Jessica Silver, Corinne Tuck, Kim Adams, John Andersen, Tom Chau & Adam Kirton - 2020 - Frontiers in Human Neuroscience 14.
    Thousands of youth suffering from acquired brain injury or other early-life neurological disease live, mature, and learn with only limited communication and interaction with their world. Such cognitively capable children are ideal candidates for brain-computer interfaces. While BCI systems are rapidly evolving, a fundamental gap exists between technological innovators and the patients and families who stand to benefit. Forays into translating BCI systems to children in recent years have revealed that kids can learn to operate simple BCI with proficiency akin (...)
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  5.  13
    Effects of Transcranial Direct Current Stimulation on Motor Function in Children 8–12 Years With Developmental Coordination Disorder: A Randomized Controlled Trial. [REVIEW]Melody N. Grohs, Brandon T. Craig, Adam Kirton & Deborah Dewey - 2020 - Frontiers in Human Neuroscience 14.
    Background and objectives: Developmental coordination disorder is a neurodevelopmental motor disorder occurring in 5-6% of school-aged children. It is suggested that children with DCD show deficits in motor learning. Transcranial direct current stimulation enhances motor learning in adults and children but is unstudied in DCD. We aimed to investigate if tDCS, paired with motor skill training, facilitates motor learning in a pediatric sample with DCD.Methods: Twenty-eight children with diagnosed DCD were randomized and placed into a treatment or sham group. Anodal (...)
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