Electrical signaling in neurons is mediated by the opening and closing of large numbers of individual ion channels. The ion channels' state transitions are stochastic and introduce fluctuations in the macroscopic current through ion channel populations. This creates an unavoidable source of intrinsic electrical noise for the neuron, leading to fluctuations in the membrane potential and spontaneous spikes. While this effect is well known, the impact of channel noise on single neuron dynamics remains poorly understood. Most results are based on numerical simulations. There is no agreement, even in theoretical studies, on which ion channel type is the dominant noise source, nor how inclusion of additional ion channel types affects voltage nois...
It has been recently argued and experimentally shown that ion channel noise in neurons may have resu...
http://deepblue.lib.umich.edu/bitstream/2027.42/112533/1/12868_2009_Article_1225.pd
Voltage-gated ion channels in neuronal membranes fluctuate randomly between different conformational...
Electrical signaling in neurons is mediated by the opening and closing of large numbers of individua...
Electrical signaling in neurons is mediated by the opening and closing of large numbers of individua...
Ion channels open and close stochastically. The fluctuation of these channels represents an intrinsi...
Voltage-gated ion channels in neuronal membranes fluctuate randomly between different conformational...
Stochastic fluctuations of voltage-gated ion channels generate current and voltage noise in neurona...
Ion channels open and close stochastically. The fluctuation of these channels represents an intrinsi...
Stochastic fluctuations of voltage-gated ion channels generate current and voltage noise in neurona...
Stochastic channel gating is the major source of intrinsic neuronal noise whose functional consequen...
Ion channels open and close stochastically. The fluctuation of these channels represents an intrinsi...
Random ion channel gating is an important source of noise at the single neuron level. For mesoscale ...
Stochastic channel gating is the major source of intrinsic neuronal noise whose functional consequen...
Stochastic fluctuations of voltage-gated ion channels generate current and voltage noise in neuronal...
It has been recently argued and experimentally shown that ion channel noise in neurons may have resu...
http://deepblue.lib.umich.edu/bitstream/2027.42/112533/1/12868_2009_Article_1225.pd
Voltage-gated ion channels in neuronal membranes fluctuate randomly between different conformational...
Electrical signaling in neurons is mediated by the opening and closing of large numbers of individua...
Electrical signaling in neurons is mediated by the opening and closing of large numbers of individua...
Ion channels open and close stochastically. The fluctuation of these channels represents an intrinsi...
Voltage-gated ion channels in neuronal membranes fluctuate randomly between different conformational...
Stochastic fluctuations of voltage-gated ion channels generate current and voltage noise in neurona...
Ion channels open and close stochastically. The fluctuation of these channels represents an intrinsi...
Stochastic fluctuations of voltage-gated ion channels generate current and voltage noise in neurona...
Stochastic channel gating is the major source of intrinsic neuronal noise whose functional consequen...
Ion channels open and close stochastically. The fluctuation of these channels represents an intrinsi...
Random ion channel gating is an important source of noise at the single neuron level. For mesoscale ...
Stochastic channel gating is the major source of intrinsic neuronal noise whose functional consequen...
Stochastic fluctuations of voltage-gated ion channels generate current and voltage noise in neuronal...
It has been recently argued and experimentally shown that ion channel noise in neurons may have resu...
http://deepblue.lib.umich.edu/bitstream/2027.42/112533/1/12868_2009_Article_1225.pd
Voltage-gated ion channels in neuronal membranes fluctuate randomly between different conformational...