Role of transport performance for neuron cell morphology
The compartmental model is a basic tool for studying signal propagation in neurons; if the model parameters are adequately redefined, it can also be helpful in the study of electrical or fluid transport in other biological systems. Here we show that the input resistance in different networks that si...
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Acceso en línea: | http://hdl.handle.net/20.500.12110/paper_08926638_v21_n3_p866_Louis |
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todo:paper_08926638_v21_n3_p866_Louis2023-10-03T15:41:34Z Role of transport performance for neuron cell morphology Louis, E. Degli Esposti Boschi, C. Ortega, G.J. Fernández, E. Compartmental model Passive properties article cell size cell structure cell transport compartment model electricity fluid transport nerve cell nerve conduction priority journal signal transduction synapse Animals Biological Transport Models, Neurological Nerve Net Neurons Synapses Synaptic Transmission The compartmental model is a basic tool for studying signal propagation in neurons; if the model parameters are adequately redefined, it can also be helpful in the study of electrical or fluid transport in other biological systems. Here we show that the input resistance in different networks that simulate the morphology of neurons is the result of the interplay between the relevant conductances, neuron morphology, and neuron size. The results suggest that neurons may grow in such a way that facilitates the current flow to the synapses, concurrently minimizing power consumption. © FASEB. JOUR info:eu-repo/semantics/openAccess http://creativecommons.org/licenses/by/2.5/ar http://hdl.handle.net/20.500.12110/paper_08926638_v21_n3_p866_Louis |
institution |
Universidad de Buenos Aires |
institution_str |
I-28 |
repository_str |
R-134 |
collection |
Biblioteca Digital - Facultad de Ciencias Exactas y Naturales (UBA) |
topic |
Compartmental model Passive properties article cell size cell structure cell transport compartment model electricity fluid transport nerve cell nerve conduction priority journal signal transduction synapse Animals Biological Transport Models, Neurological Nerve Net Neurons Synapses Synaptic Transmission |
spellingShingle |
Compartmental model Passive properties article cell size cell structure cell transport compartment model electricity fluid transport nerve cell nerve conduction priority journal signal transduction synapse Animals Biological Transport Models, Neurological Nerve Net Neurons Synapses Synaptic Transmission Louis, E. Degli Esposti Boschi, C. Ortega, G.J. Fernández, E. Role of transport performance for neuron cell morphology |
topic_facet |
Compartmental model Passive properties article cell size cell structure cell transport compartment model electricity fluid transport nerve cell nerve conduction priority journal signal transduction synapse Animals Biological Transport Models, Neurological Nerve Net Neurons Synapses Synaptic Transmission |
description |
The compartmental model is a basic tool for studying signal propagation in neurons; if the model parameters are adequately redefined, it can also be helpful in the study of electrical or fluid transport in other biological systems. Here we show that the input resistance in different networks that simulate the morphology of neurons is the result of the interplay between the relevant conductances, neuron morphology, and neuron size. The results suggest that neurons may grow in such a way that facilitates the current flow to the synapses, concurrently minimizing power consumption. © FASEB. |
format |
JOUR |
author |
Louis, E. Degli Esposti Boschi, C. Ortega, G.J. Fernández, E. |
author_facet |
Louis, E. Degli Esposti Boschi, C. Ortega, G.J. Fernández, E. |
author_sort |
Louis, E. |
title |
Role of transport performance for neuron cell morphology |
title_short |
Role of transport performance for neuron cell morphology |
title_full |
Role of transport performance for neuron cell morphology |
title_fullStr |
Role of transport performance for neuron cell morphology |
title_full_unstemmed |
Role of transport performance for neuron cell morphology |
title_sort |
role of transport performance for neuron cell morphology |
url |
http://hdl.handle.net/20.500.12110/paper_08926638_v21_n3_p866_Louis |
work_keys_str_mv |
AT louise roleoftransportperformanceforneuroncellmorphology AT degliespostiboschic roleoftransportperformanceforneuroncellmorphology AT ortegagj roleoftransportperformanceforneuroncellmorphology AT fernandeze roleoftransportperformanceforneuroncellmorphology |
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1807316355941138432 |