A Sales Forecasting Model for the Consumer Goods with Holiday Effects
In: Journal of risk analysis and crisis response, Band 10, Heft 2, S. 69
ISSN: 2210-8505
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In: Journal of risk analysis and crisis response, Band 10, Heft 2, S. 69
ISSN: 2210-8505
In: Materials and design, Band 105, S. 201-211
ISSN: 1873-4197
In: Children and youth services review: an international multidisciplinary review of the welfare of young people, Band 155, S. 107217
ISSN: 0190-7409
In: Children and youth services review: an international multidisciplinary review of the welfare of young people, Band 131, S. 106260
ISSN: 0190-7409
The accurate simulation of a neuron's ability to integrate distributed synaptic input typically requires the simultaneous solution of tens of thousands of ordinary differential equations. For, in order to understand how a cell distinguishes between input patterns we apparently need a model that is biophysically accurate down to the space scale of a single spine, i.e., 1 μm. We argue here that one can retain this highly detailed input structure while dramatically reducing the overall system dimension if one is content to accurately reproduce the associated membrane potential at a small number of places, e.g., at the site of action potential initiation, under subthreshold stimulation. The latter hypothesis permits us to approximate the active cell model with an associated quasi-active model, which in turn we reduce by both time-domain (Balanced Truncation) and frequency-domain (ℋ2 approximation of the transfer function) methods. We apply and contrast these methods on a suite of typical cells, achieving up to four orders of magnitude in dimension reduction and an associated speed-up in the simulation of dendritic democratization and resonance. We also append a threshold mechanism and indicate that this reduction has the potential to deliver an accurate quasi-integrate and fire model.
BASE
In: Environmental science and pollution research: ESPR, Band 30, Heft 19, S. 54657-54665
ISSN: 1614-7499
In: Materials and design, Band 219, S. 110693
ISSN: 1873-4197
In: Materials and design, Band 215, S. 110485
ISSN: 1873-4197
In: Defence Technology, Band 17, Heft 4, S. 1289-1295
ISSN: 2214-9147
In: CAOR-D-24-01059
SSRN
In: Environmental science and pollution research: ESPR, Band 29, Heft 53, S. 80581-80596
ISSN: 1614-7499
In: Ecotoxicology and environmental safety: EES ; official journal of the International Society of Ecotoxicology and Environmental safety, Band 233, S. 113309
ISSN: 1090-2414