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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
Cohen, Jeremy – Journal of College Science Teaching, 2016
This column shares reflections or thoughtful opinions on issues of broad interest to the community. This month's issue discusses the importance of the insights that are gained through neuroscience research.
Descriptors: Neurosciences, Scientific Research, Teaching Methods, Science Instruction
Latimer, Benjamin; Bergin, David A.; Guntu, Vinay; Schulz, David J.; Nair, Satish S. – IEEE Transactions on Education, 2019
Contribution: This paper demonstrates curricular modules that incorporate engineering model-based approaches, including concepts related to circuits, systems, modeling, electrophysiology, programming, and software tutorials that enhance learning in undergraduate neuroscience courses. These modules can also be integrated into other neuroscience…
Descriptors: Integrated Curriculum, Models, Neurosciences, Interdisciplinary Approach
Youdell, Deborah; Lindley, Martin; Shapiro, Kimron; Sun, Yu; Leng, Yue – British Journal of Sociology of Education, 2020
In this paper we begin to explore how knowledges being generated in bioscience might be brought into productive articulation with the Sociology of Education, considering the potential for emerging transdisciplinary, 'biosocial' approaches to enable new ways of researching and understanding pressing educational issues. In this paper, as in our…
Descriptors: Interdisciplinary Approach, Neurosciences, Diagnostic Tests, Brain Hemisphere Functions
Chudler, Eric H.; Bergsman, Kristen Clapper – CBE - Life Sciences Education, 2016
Neural engineering is an emerging field of high relevance to students, teachers, and the general public. This feature presents online resources that educators and scientists can use to introduce students to neural engineering and to integrate core ideas from the life sciences, physical sciences, social sciences, computer science, and engineering…
Descriptors: Science Instruction, Neurosciences, Brain Hemisphere Functions, Educational Resources
Crossland, John – School Science Review, 2017
Part 1 in this four-part series of articles discussed Piaget's theories of learning and development (Crossland, 2016). Part 2 explores how post-Piagetian researchers have addressed criticisms of Piaget's theories by linking recent evidence including that from neuroscience. The outcomes show that good teachers make a difference by implementing…
Descriptors: Science Instruction, Neurosciences, Educational Research, Scientific Research
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
Crossland, John – School Science Review, 2017
Parts 1 and 2 in this four-part series of articles (Crossland, 2016, 2017a) discussed the recent research from neuroscience linked to concepts from cognitive development that brought Piaget's theories into the 21st century and showed the most effective provision towards more optimal learning strategies. Part 2 reviewed Demetriou's latest thinking…
Descriptors: Science Instruction, Neurosciences, Educational Research, Scientific Research
Crossland, John – School Science Review, 2017
Parts 1 and 2 in this four-part series of articles (Crossland, 2016, 2017) discussed the recent research from neuroscience linked to concepts from cognitive development that brought Piaget's theories into the 21st century and showed the most effective provision towards more optimal learning strategies. Then the discussion moved onto Demetriou's…
Descriptors: Science Instruction, Neurosciences, Educational Research, Scientific Research
Crossland, John – School Science Review, 2016
The research questions a teacher would ask of neuroscience require answers researched within a typical classroom context. Unfortunately this research has rarely been available. The Education Endowment Foundation recently set up six projects applying evidence from neuroscience and educational studies to the classroom context. Most of the evaluation…
Descriptors: Science Instruction, Neurosciences, Educational Research, Scientific Research
Kirby, Linda Faye – Forum on Public Policy Online, 2016
This paper is the sharing of a record, the personal history of an educator pursuing an interest in knowledge of the brain. Over the years, this fascination sparked the idea to create a course for teachers based on brain science, with a twist. Certain course assignments would require teachers to interpret knowledge of the brain in the context of…
Descriptors: Neurosciences, Teacher Education, Teacher Effectiveness, Masters Programs
Bohland, Cindy; Collver, Michael; Lally, David; Schmale, David G., III – Science Teacher, 2015
Autonomous vehicles are poised to become part of our everyday lives. Scientists are now studying ways to integrate similar robotic technology into living organisms. Insect and rodent cyborgs could one day be used for military intelligence, earthquake rescue operations, and as models for neurological studies. As this technology spreads, we need to…
Descriptors: Science Instruction, Hands on Science, Robotics, Technology Uses in Education
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
Blattner, Margaret; Hug, Barbara; Ogrodnik, Jon; Korol, Donna – Science Teacher, 2013
Generating, collecting, and analyzing data is an essential practice in the science classroom (NRC 2012). Taking this data and using it to craft an explanation that demonstrates understanding of content is another essential practice. But both practices can be challenging, and students often require teacher support to succeed. Accordingly, the…
Descriptors: Science Instruction, Teaching Methods, Secondary School Science, High Schools