Zobrazeno 1 - 10
of 50
pro vyhledávání: '"Andreas, Hartel"'
Autor:
Neil L. Harrison, Geoffrey W. Abbott, Martina Gentzsch, Andrei Aleksandrov, Anna Moroni, Gerhard Thiel, Stephen Grant, Colin G. Nichols, Henry A. Lester, Andreas Hartel, Kenneth Shepard, David Cabrera Garcia, Masayuki Yazawa
Publikováno v:
Communications Biology, Vol 5, Iss 1, Pp 1-3 (2022)
Externí odkaz:
https://doaj.org/article/412f76ba93c044a085d835ada304e2f3
Autor:
Akos F. Kungl, Sebastian Schmitt, Johann Klähn, Paul Müller, Andreas Baumbach, Dominik Dold, Alexander Kugele, Eric Müller, Christoph Koke, Mitja Kleider, Christian Mauch, Oliver Breitwieser, Luziwei Leng, Nico Gürtler, Maurice Güttler, Dan Husmann, Kai Husmann, Andreas Hartel, Vitali Karasenko, Andreas Grübl, Johannes Schemmel, Karlheinz Meier, Mihai A. Petrovici
Publikováno v:
Frontiers in Neuroscience, Vol 13 (2019)
The massively parallel nature of biological information processing plays an important role due to its superiority in comparison to human-engineered computing devices. In particular, it may hold the key to overcoming the von Neumann bottleneck that li
Externí odkaz:
https://doaj.org/article/02f287aab1c848de9460f647e80dcfb9
Autor:
Timo Wunderlich, Akos F. Kungl, Eric Müller, Andreas Hartel, Yannik Stradmann, Syed Ahmed Aamir, Andreas Grübl, Arthur Heimbrecht, Korbinian Schreiber, David Stöckel, Christian Pehle, Sebastian Billaudelle, Gerd Kiene, Christian Mauch, Johannes Schemmel, Karlheinz Meier, Mihai A. Petrovici
Publikováno v:
Frontiers in Neuroscience, Vol 13 (2019)
Neuromorphic devices represent an attempt to mimic aspects of the brain's architecture and dynamics with the aim of replicating its hallmark functional capabilities in terms of computational power, robust learning and energy efficiency. We employ a s
Externí odkaz:
https://doaj.org/article/f83627a5ea4d408f9841460347bb7ba7
Autor:
Yannik Stradmann, Korbinian Schreiber, Mitja Kleider, Karlheinz Meier, D. Stockel, Gerd Kiene, Benjamin Cramer, Christian Pehle, Johannes Schemmel, Sebastian Billaudelle, Timo C. Wunderlich, Mihai A. Petrovici, Dominik Dold, Andreas Grübl, Arthur Heimbrecht, Philipp Spilger, Andreas Baumbach, Oliver Breitwieser, Andreas Hartel, Eilif Muller, Akos F. Kungl, Vitali Karasenko, Julian Göltz, Walter Senn, Christian Mauch
Publikováno v:
ISCAS
We demonstrate five experiments that are performed on the novel BrainScaleS-2 neuromorphic architecture based on an analog neuro-synaptic core and augmented by embedded microprocessors for complex plasticity and experiment control. The high accelerat
Autor:
John M Harrington, Chris Scelsi, Andreas Hartel, Nicola G Jones, Markus Engstler, Paul Capewell, Annette MacLeod, Stephen Hajduk
Publikováno v:
PLoS ONE, Vol 7, Iss 9, p e44384 (2012)
The bloodstream developmental forms of pathogenic African trypanosomes are uniquely susceptible to killing by small hydrophobic peptides. Trypanocidal activity is conferred by peptide hydrophobicity and charge distribution and results from increased
Externí odkaz:
https://doaj.org/article/af5cb3b518034608a4441ac2a7ce2d32
Autor:
Akos F. Kungl, Sebastian Schmitt, Johann Klähn, Paul Müller, Andreas Baumbach, Dominik Dold, Alexander Kugele, Eric Müller, Christoph Koke, Mitja Kleider, Christian Mauch, Oliver Breitwieser, Luziwei Leng, Nico Gürtler, Maurice Güttler, Dan Husmann, Kai Husmann, Andreas Hartel, Vitali Karasenko, Andreas Grübl, Johannes Schemmel, Karlheinz Meier, Mihai A. Petrovici
Publikováno v:
Frontiers in Neuroscience, Vol 13 (2019)
The massively parallel nature of biological information processing plays an important role for its superiority to human-engineered computing devices. In particular, it may hold the key to overcoming the von Neumann bottleneck that limits contemporary
Externí odkaz:
https://explore.openaire.eu/search/publication?articleId=doi_dedup___::a48167fb5a55d96c25c46f929e4fdc42
Autor:
Andreas Hartel, Mihai A. Petrovici, Guillaume Bellec, Johannes Partzsch, Johannes Schemmel, Maurice Güttler, Mitja Kleider, Vitali Karasenko, Wolfgang Maass, Sebastian Jeltsch, Karlheinz Meier, Stefan Schiefer, Andreas Grübl, V. Thanasoulis, Eric Müller, Robert Legenstein, Bernhard Vogginger, Christian Mauch, Paul Müller, Stephan Hartmann, Rene Schuffny, Christian Mayr, Sebastian Schmitt, Alexander Kononov, Dan Husmann, Stefan Scholze, Christoph Koke, Johann Klähn, Kai Husmann
Publikováno v:
IJCNN
Emulating spiking neural networks on analog neuromorphic hardware offers several advantages over simulating them on conventional computers, particularly in terms of speed and energy consumption. However, this usually comes at the cost of reduced cont
Externí odkaz:
https://explore.openaire.eu/search/publication?articleId=doi_dedup___::0f401ef79a80b864fab07f3542f59249
http://arxiv.org/abs/1703.01909
http://arxiv.org/abs/1703.01909
Autor:
Andreas Hartel, Simon Friedmann, Johannes Schemmel, Andreas Grübl, Matthias Hock, Karlheinz Meier
Publikováno v:
IEEE Transactions on Biomedical Circuits and Systems
We present results from a new approach to learning and plasticity in neuromorphic hardware systems: to enable flexibility in implementable learning mechanisms while keeping high efficiency associated with neuromorphic implementations, we combine a ge
Autor:
D. Stockel, Ilja Bytschok, Dan Husmann, Mihai A. Petrovici, Johannes Bill, Johannes Schemmel, Maurice Güttler, Karlheinz Meier, Oliver Breitwieser, Wolfgang Maass, Robert Legenstein, Eric Müller, Johannes Partzsch, Anand Subramoney, Christian Mayr, Andreas Hartel, Anna Schroeder, Stephan Hartmann, Andreas Grübl, Alexander Kononov, Stefan Schiefer, Kai Husmann, Guillaume Bellec, Mitja Kleider, Johann Klähn, Stefan Scholze, Vitali Karasenko, Sebastian Schmitt, V. Thanasoulis, Christian Mauch, Paul Müller, Rene Schuffny, Bernhard Vogginger, Sebastian Jeltsch, Christoph Koke, Thomas Pfeil
Publikováno v:
ISCAS
Despite being originally inspired by the central nervous system, artificial neural networks have diverged from their biological archetypes as they have been remodeled to fit particular tasks. In this paper, we review several possibilites to reverse m
Externí odkaz:
https://explore.openaire.eu/search/publication?articleId=doi_dedup___::31acee2b3d44a20d0195408da94fcd42
Autor:
Marius Glogger, Motomu Tanaka, Anne Hermann, Andreas Hartel, Markus Engstler, Christopher Batram, Susanne F. Fenz, Nicola G. Jones, Wasim Abuillan
Publikováno v:
Nature Communications
Nature Communications, Vol 7, Iss 1, Pp 1-9 (2016)
Nature Communications, Vol 7, Iss 1, Pp 1-9 (2016)
The protein density in biological membranes can be extraordinarily high, but the impact of molecular crowding on the diffusion of membrane proteins has not been studied systematically in a natural system. The diversity of the membrane proteome of mos