The launch of the United States' BRAIN Initiative brings with it a new era in systems neuroscience that is being driven by innovative neurotechnologies, increases in computational power and network-style artificial intelligence. A new conceptual framework for understanding cognitive behaviours based on the dynamical patterns of activity in large populations of neurons is emerging
Decades of heavy investment in laboratory-based brain imaging and neuroscience have led to foundatio...
Real-world environments are typically dynamic, complex, and multisensory in nature and require the s...
The overarching goal of the NIH BRAIN (Brain Research through Advancing Innovative Neurotechnologies...
The evolution of the field of neuroscience has been propelled by the advent of novel technological c...
The evolution of the field of neuroscience has been propelled by the advent of novel technological c...
Two colossal research programmes have been launched recently: the Human Brain Project of the Europea...
The ultimate aim of computational neuroscience is to explain how electrical and chemical signals are...
In 2014, the National Institutes of Health (NIH) began funding an ambitious research program, the Br...
International audienceUnderstanding the human brain is a "Grand Challenge" for 21st century research...
Mathematical and statistical models have played important roles in neuroscience, especially by descr...
Theoretical approaches have long shaped neuroscience, but current needs for theory are elevated and ...
The evolution of cognitive neuroscience has been largely driven by the development of quantitative m...
Understanding the human brain is a “Grand Challenge” for 21st century research. Computational approa...
Within the field of computational neuroscience there are great expectations of finding new ways to r...
The human brain is the best example of the unsurpassed interaction with the dynamic world. The most ...
Decades of heavy investment in laboratory-based brain imaging and neuroscience have led to foundatio...
Real-world environments are typically dynamic, complex, and multisensory in nature and require the s...
The overarching goal of the NIH BRAIN (Brain Research through Advancing Innovative Neurotechnologies...
The evolution of the field of neuroscience has been propelled by the advent of novel technological c...
The evolution of the field of neuroscience has been propelled by the advent of novel technological c...
Two colossal research programmes have been launched recently: the Human Brain Project of the Europea...
The ultimate aim of computational neuroscience is to explain how electrical and chemical signals are...
In 2014, the National Institutes of Health (NIH) began funding an ambitious research program, the Br...
International audienceUnderstanding the human brain is a "Grand Challenge" for 21st century research...
Mathematical and statistical models have played important roles in neuroscience, especially by descr...
Theoretical approaches have long shaped neuroscience, but current needs for theory are elevated and ...
The evolution of cognitive neuroscience has been largely driven by the development of quantitative m...
Understanding the human brain is a “Grand Challenge” for 21st century research. Computational approa...
Within the field of computational neuroscience there are great expectations of finding new ways to r...
The human brain is the best example of the unsurpassed interaction with the dynamic world. The most ...
Decades of heavy investment in laboratory-based brain imaging and neuroscience have led to foundatio...
Real-world environments are typically dynamic, complex, and multisensory in nature and require the s...
The overarching goal of the NIH BRAIN (Brain Research through Advancing Innovative Neurotechnologies...