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Neural Fields

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Neural Fields
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108,08 USD
Typical price905,82 PLN
Lowest (90 days)77,00 PLN
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Last updatedمنذ أسبوع
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Price history (90 days)
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2026-08-08 2026-08-15
سجل الأسعار
تاريخ التحديثالسعر
2026-08-0889,00
2026-08-1577,00
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SP SpringerNatureLink Shop INT 93,08 USD 15,00 USD 108,08 USD متوفر منذ يوم View offer
SP SpringerNatureLink Shop INT 15 729,00 JPY free 15 729,00 JPY متوفر منذ 18 ساعة View offer
SP Springer Nature Author 15 729,00 JPY 29,00 JPY 15 758,00 JPY متوفر منذ أسبوع View offer
SP SpringerNatureLink Shop INT 109,99 USD 19,00 USD 128,99 USD متوفر منذ 22 ساعة View offer
SP SpringerNatureLink Shop INT 119,99 USD 25,00 USD 144,99 USD متوفر منذ 22 ساعة View offer
SP SpringerNatureLink Shop INT 119,99 USD 29,00 USD 148,99 USD متوفر منذ 22 ساعة View offer
SP SpringerNatureLink Shop INT 130,00 EUR 29,00 EUR 159,00 EUR متوفر منذ 21 ساعة View offer

قد تتغيّر الأسعار والتوفر. آخر تحديث: 08.08.2026 22:11.

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Neural field theory has a long-standing tradition in the mathematical and computational neurosciences. Beginning almost 50 years ago with seminal work by Griffiths and culminating in the 1970ties with the models of Wilson and Cowan, Nunez and Amari, this important research area experienced a renaissance during the 1990ties by the groups of Ermentrout, Robinson, Bressloff, Wright and Haken. Since then, much progress has been made in both, the development of mathematical and numerical techniques and in physiological refinement und understanding. In contrast to large-scale neural network models described by huge connectivity matrices that are computationally expensive in numerical simulations, neural field models described by connectivity kernels allow for analytical treatment by means of methods from functional analysis. Thus, a number of rigorous results on the existence of bump and wave solutions or on inverse kernel construction problems are nowadays available. Moreover, neural fields provide an important interface for the coupling of neural activity to experimentally observable data, such as the electroencephalogram (EEG) or functional magnetic resonance imaging (fMRI). And finally, neural fields over rather abstract feature spaces, also called dynamic fields, found successful applications in the cognitive sciences and in robotics. Up to now, research results in neural field theory have been disseminated across a number of distinct journals from mathematics, computational neuroscience, biophysics, cognitive science and others. There is no comprehensive collection of results or reviews available yet. With our proposed book Neural Field Theory, we aim at filling this gap in the market. We received consent from some of the leading scientists in the field, who are willing to write contributions for the book, among them are two of the founding-fathers of neural field theory: Shun-ichi Amari and Jack Cowan.

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