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J. Vos (ed.) | Akateeminen Kirjakauppa

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Plausible Neural Networks for Biological Modelling
Tekijä: H.A. Mastebroek (ed.); J.E. Vos (ed.)
Kustantaja: Springer (2012)
Saatavuus: Noin 16-19 arkipäivää
EUR   97,90
Effects of Crop Rotation on Potato Production in the Temperate Zones : Proceedings of the International Conference on Effects of
Tekijä: J. Vos (ed.); C.D. van Loon (ed.); G.J. Bollen (ed.)
Kustantaja: Springer (2011)
Saatavuus: Noin 16-19 arkipäivää
EUR   129,90
Genetics and Biotechnology of Lactic Acid Bacteria
Tekijä: Michael J. Gasson (ed.); W. de Vos (ed.)
Kustantaja: Springer (2012)
Saatavuus: Noin 16-19 arkipäivää
EUR   172,80
Professor Hein J.J. Wellens: 33 Years of Cardiology and Arrhythmology : 33 Years of Cardiology and Arrhythmology
Tekijä: J. Smeets (ed.); P.A.F.M. Doevendans (ed.); M. Josephson (ed.); Ch. Kirchhof (ed.); M. Vos (ed.)
Kustantaja: Springer (2012)
Saatavuus: Noin 16-19 arkipäivää
EUR   129,90
    
Plausible Neural Networks for Biological Modelling
97,90 €
Springer
Sivumäärä: 262 sivua
Asu: Pehmeäkantinen kirja
Painos: 2001
Julkaisuvuosi: 2012, 09.10.2012 (lisätietoa)
Kieli: Englanti
The expression 'Neural Networks' refers traditionally to a class of mathematical algorithms that obtain their proper performance while they 'learn' from examples or from experience. As a consequence, they are suitable for performing straightforward and relatively simple tasks like classification, pattern recognition and prediction, as well as more sophisticated tasks like the processing of temporal sequences and the context dependent processing of complex problems. Also, a wide variety of control tasks can be executed by them, and the suggestion is relatively obvious that neural networks perform adequately in such cases because they are thought to mimic the biological nervous system which is also devoted to such tasks. As we shall see, this suggestion is false but does not do any harm as long as it is only the final performance of the algorithm which counts. Neural networks are also used in the modelling of the functioning of (sub­ systems in) the biological nervous system. It will be clear that in such cases it is certainly not irrelevant how similar their algorithm is to what is precisely going on in the nervous system. Standard artificial neural networks are constructed from 'units' (roughly similar to neurons) that transmit their 'activity' (similar to membrane potentials or to mean firing rates) to other units via 'weight factors' (similar to synaptic coupling efficacies).

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