Every neuron is part of a network, exerting its function by transforming multiple spatiotemporal synaptic input patterns into a single spiking output. This function is specified by the particular shape and passive electrical properties of the neuronal membrane, and the composition and spatial distribution of ion channels across its processes. For a variety of physiological or pathological reasons, the intrinsic input/output function may change during a neuron’s lifetime. This process results in high variability in the peak specific conductance of ion channels in individual neurons. The mechanisms responsible for this variability are not well understood, although there are clear indications from experiments and modeling that degeneracy and c...
The transformation of synaptic input into action potential output is a fundamental single-cell compu...
International audienceThe large number of ion channels found in all nervous systems poses fundamenta...
International audienceThe large number of ion channels found in all nervous systems poses fundamenta...
Every neuron is part of a network, exerting its function by transforming multiple spatiotemporal syn...
Every neuron is part of a network, exerting its function by transforming multiple spatiotemporal syn...
Every neuron is part of a network, exerting its function by transforming multiple spatiotemporal syn...
Every neuron is part of a network, exerting its function by transforming multiple spatiotemporal syn...
Neuron types (e.g., pyramidal cells) within one area of the brain are often considered homogeneous, ...
The fundamental role of any neuron within a network is to transform complex spatiotemporal synaptic ...
Hippocampal pyramidal neurons are endowed with signature excitability characteristics, exhibit theta...
The transformation of synaptic input into action potential output is a fundamental single-cell compu...
The transformation of synaptic input into action potential output is a fundamental single-cell compu...
The transformation of synaptic input into action potential output is a fundamental single-cell compu...
The transformation of synaptic input into action potential output is a fundamental single-cell compu...
The transformation of synaptic input into action potential output is a fundamental single-cell compu...
The transformation of synaptic input into action potential output is a fundamental single-cell compu...
International audienceThe large number of ion channels found in all nervous systems poses fundamenta...
International audienceThe large number of ion channels found in all nervous systems poses fundamenta...
Every neuron is part of a network, exerting its function by transforming multiple spatiotemporal syn...
Every neuron is part of a network, exerting its function by transforming multiple spatiotemporal syn...
Every neuron is part of a network, exerting its function by transforming multiple spatiotemporal syn...
Every neuron is part of a network, exerting its function by transforming multiple spatiotemporal syn...
Neuron types (e.g., pyramidal cells) within one area of the brain are often considered homogeneous, ...
The fundamental role of any neuron within a network is to transform complex spatiotemporal synaptic ...
Hippocampal pyramidal neurons are endowed with signature excitability characteristics, exhibit theta...
The transformation of synaptic input into action potential output is a fundamental single-cell compu...
The transformation of synaptic input into action potential output is a fundamental single-cell compu...
The transformation of synaptic input into action potential output is a fundamental single-cell compu...
The transformation of synaptic input into action potential output is a fundamental single-cell compu...
The transformation of synaptic input into action potential output is a fundamental single-cell compu...
The transformation of synaptic input into action potential output is a fundamental single-cell compu...
International audienceThe large number of ion channels found in all nervous systems poses fundamenta...
International audienceThe large number of ion channels found in all nervous systems poses fundamenta...