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Luc Rousseau – Mind, Brain, and Education, 2024
Despite considerable progress made in educational neuroscience, neuromyths persist in the teaching profession, hampering translational endeavors. The initial wave of interventions designed to dispel educational neuromyths was predominantly directed at preservice teachers. More recent work in the field, reviewed here, has shifted its focus…
Descriptors: Misconceptions, Neurosciences, Brain, Inservice Teacher Education
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Ellingson, Charlene; Dubinsky, Janet M. – Science Teacher, 2020
Effective science instruction requires knowledge of subject matter and scientific practices (Next Generation Science Standards (NGSS), 2013), as well as the context within which learning occurs (Anthony, Hunter and Hunter 2014). For science teachers, there is often a tension between the efficiency of lecture and student engagement that comes with…
Descriptors: Science Instruction, Neurosciences, Brain, Neurological Organization
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Tovar-Moll, Fernanda; Lent, Roberto – Prospects: Quarterly Review of Comparative Education, 2016
Education is a socially structured form of learning. It involves the brains of different players--students, teachers, family members, and others--in permanent interaction. The biological set of mechanisms by which these brains receive, encode, store, and retrieve mutually exchanged information is called "neuroplasticity". This is the…
Descriptors: Brain, Cognitive Processes, Neurological Organization, Cognitive Development
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Landa-Jiménez, M. A.; González-Gaspar, P.; Pérez-Estudillo, C.; López-Meraz, M. L.; Morgado-Valle, C.; Beltran-Parrazal, L. – Advances in Physiology Education, 2016
A Muscle-Computer Interface (muCI) is a human-machine system that uses electromyographic (EMG) signals to communicate with a computer. Surface EMG (sEMG) signals are currently used to command robotic devices, such as robotic arms and hands, and mobile robots, such as wheelchairs. These signals reflect the motor intention of a user before the…
Descriptors: Physiology, Neurosciences, Robotics, Muscular Strength
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Hollabaugh, Christopher R.; Milanick, Mark A. – Advances in Physiology Education, 2014
Analogies are often helpful for students to grasp key physiological concepts; sometimes the technical jargon makes the concept seem more complex than it actually is. In this article the authors provide several analogies for information transfer processes that sometimes confuse students. For an analogy to be useful, of course, it needs to be…
Descriptors: Scientific Concepts, Physiology, Logical Thinking, Information Transfer
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Adams, Wendy K.; Willis, Courtney – Physics Teacher, 2015
People find it easier to learn about topics that interest them. Recent neuroscience research has demonstrated that memory is improved when learning material about which we are curious. Therefore teaching in the context of what students are interested in should result in improved learning. How do we figure out what our students are curious about?…
Descriptors: Science Instruction, Physics, Neurosciences, Memory