Abstract—These days, many traditional end-user applications are said to “run fast enough ” on existing machines, so the search continues for novel applications that can leverage the new capabilities of our evolving hardware. Foremost of these potential applications are those that are clustered around information processing capabilities that humans have today but are lacking in computers. The fact that brains can perform these computations serves as an existence proof that these applications are realizable. At the same time, we often discover that the human nervous system, with its 80 billion neurons, on some metrics, is more powerful and energy-efficient than today’s machines. Both of these aspects make this class of applications a desirabl...
In this chapter I have provided a brief and somewhat superficial survey of the specialized hardware ...
Modern computational neuroscience seeks to explain the dynamics and function of the brain by constru...
Modern computational neuroscience strives to develop complex network models to explain dynamics and ...
As the technologies continue to evolve, our computers have more and more computing capacity, which d...
A major archetype of artificial intelligence is developing algorithms facilitating temporal efficien...
Reverse-engineering the human brain has been a grand challenge for researchers in machine learning, ...
Research in the brain and cognitive sciences attempts to uncover the neural mechanisms underlying in...
Marching along the DARPA SyNAPSE roadmap, IBM unveils a trilogy of innovations towards the TrueNorth...
For the first time in decades computers are evolving into a fundamentally new class of machine. Tran...
The success of deep networks and recent industry involvement in brain-inspired computing is igniting...
[Abstract] Background: The human brain is the most complex system in the known universe, it is there...
Supercomputing is increasingly available in neuroscience and boosts the ability to create models wit...
Presentation at CyberColombia\u27s Third HPC Summer School: Bio and Data Science Part 1 describes...
We are pursuing an investigation of neuromorphic computational models and architectures in order to ...
Ostrau C, Klarhorst C, Thies M, Rückert U. Benchmarking and Characterization of event-based Neuromor...
In this chapter I have provided a brief and somewhat superficial survey of the specialized hardware ...
Modern computational neuroscience seeks to explain the dynamics and function of the brain by constru...
Modern computational neuroscience strives to develop complex network models to explain dynamics and ...
As the technologies continue to evolve, our computers have more and more computing capacity, which d...
A major archetype of artificial intelligence is developing algorithms facilitating temporal efficien...
Reverse-engineering the human brain has been a grand challenge for researchers in machine learning, ...
Research in the brain and cognitive sciences attempts to uncover the neural mechanisms underlying in...
Marching along the DARPA SyNAPSE roadmap, IBM unveils a trilogy of innovations towards the TrueNorth...
For the first time in decades computers are evolving into a fundamentally new class of machine. Tran...
The success of deep networks and recent industry involvement in brain-inspired computing is igniting...
[Abstract] Background: The human brain is the most complex system in the known universe, it is there...
Supercomputing is increasingly available in neuroscience and boosts the ability to create models wit...
Presentation at CyberColombia\u27s Third HPC Summer School: Bio and Data Science Part 1 describes...
We are pursuing an investigation of neuromorphic computational models and architectures in order to ...
Ostrau C, Klarhorst C, Thies M, Rückert U. Benchmarking and Characterization of event-based Neuromor...
In this chapter I have provided a brief and somewhat superficial survey of the specialized hardware ...
Modern computational neuroscience seeks to explain the dynamics and function of the brain by constru...
Modern computational neuroscience strives to develop complex network models to explain dynamics and ...