Abstract Microglia are the resident macrophages in the central nervous system. In the spinal cord dorsal horn, microglia stay in resting condition during physiological sensory processing, and are activated under pathological conditions such as peripheral nerve injury. In cases such as this, the nearby resting microglia increase their motility and accumulate at the site of injury. However, direct evidence to support that nerve activity can enhance the motility of microglia has not yet to be reported. In this study we investigated whether the activation of spinal microglia under in vivo nerve injury may be mimicked by neuronal activity in the spinal cord slice preparation. We found that local application of spinal excitatory neurotransmitters...
Peripheral nerve injury results in persistent motor deficits, even after the nerve regenerates and m...
Peripheral nerve injury results in persistent motor deficits, even after the nerve regenerates and m...
Peripheral nerve injury results in persistent motor deficits, even after the nerve regenerates and m...
Abstract Microglia are the resident macrophages in the central nervous system. In the ...
Abstract Microglia are the resident macrophages in the central nervous system. In the ...
The reactivity of microglia within the spinal cord in response to nerve injury, has been associated ...
Peripheral nerve injuries induce a pronounced immune reaction within the spinal cord, largely govern...
Peripheral nerve injuries induce a pronounced immune reaction within the spinal cord, largely govern...
Abstract Neuronal plasticity along the pathway for sensory transmission including the ...
Abstract Neuronal plasticity along the pathway for sensory transmission including the ...
Reactive astrocytes and activated microglia are the key players in several pathophysiologic modifica...
SummaryPeripheral nerve injury causes neuropathic pain accompanied by remarkable microgliosis in the...
Peripheral nerve injuries induce a pronounced immune reaction within the spinal cord, largely govern...
Reactive astrocytes and activated microglia are the key players in several pathophysiologic modifica...
Peripheral nerve injury results in persistent motor deficits, even after the nerve regenerates and m...
Peripheral nerve injury results in persistent motor deficits, even after the nerve regenerates and m...
Peripheral nerve injury results in persistent motor deficits, even after the nerve regenerates and m...
Peripheral nerve injury results in persistent motor deficits, even after the nerve regenerates and m...
Abstract Microglia are the resident macrophages in the central nervous system. In the ...
Abstract Microglia are the resident macrophages in the central nervous system. In the ...
The reactivity of microglia within the spinal cord in response to nerve injury, has been associated ...
Peripheral nerve injuries induce a pronounced immune reaction within the spinal cord, largely govern...
Peripheral nerve injuries induce a pronounced immune reaction within the spinal cord, largely govern...
Abstract Neuronal plasticity along the pathway for sensory transmission including the ...
Abstract Neuronal plasticity along the pathway for sensory transmission including the ...
Reactive astrocytes and activated microglia are the key players in several pathophysiologic modifica...
SummaryPeripheral nerve injury causes neuropathic pain accompanied by remarkable microgliosis in the...
Peripheral nerve injuries induce a pronounced immune reaction within the spinal cord, largely govern...
Reactive astrocytes and activated microglia are the key players in several pathophysiologic modifica...
Peripheral nerve injury results in persistent motor deficits, even after the nerve regenerates and m...
Peripheral nerve injury results in persistent motor deficits, even after the nerve regenerates and m...
Peripheral nerve injury results in persistent motor deficits, even after the nerve regenerates and m...
Peripheral nerve injury results in persistent motor deficits, even after the nerve regenerates and m...