The aim of this study was to measure the effects of synaptic input on motoneuron firing rate in an unanesthetized cat preparation, where activation of voltage-sensitive dendritic conductances may influence synaptic integration and repetitive firing. In anesthetized cats, the change in firing rate produced by a steady synaptic input is approximately equal to the product of the effective synaptic current measured at the resting potential (I N) and the slope of the linear relation between somatically injected current and motoneuron discharge rate (f-Islope). However, previous studies in the unanesthetized decerebrate cat indicate that firing rate modulation may be strongly influenced by voltage-dependent dendritic conductances. To quantify the...
Motoneuron activation is strongly influenced by persistent inward currents (PICs) flowing through vo...
Motoneuron activation is strongly influenced by persistent inward currents (PICs) flowing through vo...
Motoneuron discharge patterns reflect the interaction of synaptic inputs with intrinsic conductances...
The aim of this study was to measure the effects of synaptic input on motoneuron firing rate in an u...
The aim of this study was to measure the effects of synaptic input on motoneuron firing rate in an u...
The aim of this study was to measure the effects of synaptic input on motoneuron firing rate in an u...
The aim of this study was to measure the effects of synaptic input on motoneuron firing rate in an u...
The aim of this study was to measure the effects of synaptic input on motoneuron firing rate in an u...
The aim of this study was to measure the effects of synaptic input on motoneuron firing rate in an u...
The aim of this study was to measure the effects of synaptic input on motoneuron firing rate in an u...
The aim of this study was to measure the effects of synaptic input on motoneuron firing rate in an u...
The aim of this study was to measure the effects of synaptic input on motoneuron firing rate in an u...
Motoneuron activation is strongly influenced by persistent inward currents (PICs) flowing through vo...
Motoneuron activation is strongly influenced by persistent inward currents (PICs) flowing through vo...
Motoneuron activation is strongly influenced by persistent inward currents (PICs) flowing through vo...
Motoneuron activation is strongly influenced by persistent inward currents (PICs) flowing through vo...
Motoneuron activation is strongly influenced by persistent inward currents (PICs) flowing through vo...
Motoneuron discharge patterns reflect the interaction of synaptic inputs with intrinsic conductances...
The aim of this study was to measure the effects of synaptic input on motoneuron firing rate in an u...
The aim of this study was to measure the effects of synaptic input on motoneuron firing rate in an u...
The aim of this study was to measure the effects of synaptic input on motoneuron firing rate in an u...
The aim of this study was to measure the effects of synaptic input on motoneuron firing rate in an u...
The aim of this study was to measure the effects of synaptic input on motoneuron firing rate in an u...
The aim of this study was to measure the effects of synaptic input on motoneuron firing rate in an u...
The aim of this study was to measure the effects of synaptic input on motoneuron firing rate in an u...
The aim of this study was to measure the effects of synaptic input on motoneuron firing rate in an u...
The aim of this study was to measure the effects of synaptic input on motoneuron firing rate in an u...
Motoneuron activation is strongly influenced by persistent inward currents (PICs) flowing through vo...
Motoneuron activation is strongly influenced by persistent inward currents (PICs) flowing through vo...
Motoneuron activation is strongly influenced by persistent inward currents (PICs) flowing through vo...
Motoneuron activation is strongly influenced by persistent inward currents (PICs) flowing through vo...
Motoneuron activation is strongly influenced by persistent inward currents (PICs) flowing through vo...
Motoneuron discharge patterns reflect the interaction of synaptic inputs with intrinsic conductances...