Electrical coupling is important in rhythm generating systems. We examine its role in circuits controlling locomotion in a simple vertebrate model, the young Xenopus tadpole, where the hindbrain and spinal cord excitatory descending interneurons (dINs) that drive and maintain swimming have been characterised. Using simultaneous paired recordings, we show that most dINs are electrically coupled exclusively to other dINs (DC coupling coefficients ∼8.5%). The coupling shows typical low-pass filtering. We found no evidence that other swimming central pattern generator (CPG) interneurons are coupled to dINs or to each other. Electrical coupling potentials between dINs appear to contribute to their unusually reliable firing during swimming. To in...
Vertebrate central pattern generators (CPGs) controlling locomotion contain neurons which provide th...
During locomotion, reflex responses to sensory stimulation are usually modulated and may even be rev...
During locomotion, reflex responses to sensory stimulation are usually modulated and may even be rev...
Electrical coupling is important in rhythm generating systems. We examine its role in circuits contr...
The role of electrical coupling between neurons in the swimming rhythm generator of Xenopus embryos ...
Every type of neural rhythm has its own operational range of frequency. Neuronal mechanisms underlyi...
Every type of neural rhythm has its own operational range of frequency. Neuronal mechanisms underlyi...
1. In Xenopus embryos, the frequency of natural and fictive swimming usually drops slowly as swimmin...
Motor networks typically generate several related output patterns or gaits where individual neurons ...
Motor networks typically generate several related output patterns or gaits where individual neurons ...
Locomotion rhythms are thought to be generated by neurons in the central-pattern-generator (CPG) cir...
Locomotion rhythms are thought to be generated by neurons in the central-pattern-generator (CPG) cir...
Most neuronal networks are very complex and detailed information on the neurons and their connection...
Important questions remain about the origin of the excitation that drives locomotion in vertebrates ...
Effective movement is central to survival and it is essential for all animals to react in response ...
Vertebrate central pattern generators (CPGs) controlling locomotion contain neurons which provide th...
During locomotion, reflex responses to sensory stimulation are usually modulated and may even be rev...
During locomotion, reflex responses to sensory stimulation are usually modulated and may even be rev...
Electrical coupling is important in rhythm generating systems. We examine its role in circuits contr...
The role of electrical coupling between neurons in the swimming rhythm generator of Xenopus embryos ...
Every type of neural rhythm has its own operational range of frequency. Neuronal mechanisms underlyi...
Every type of neural rhythm has its own operational range of frequency. Neuronal mechanisms underlyi...
1. In Xenopus embryos, the frequency of natural and fictive swimming usually drops slowly as swimmin...
Motor networks typically generate several related output patterns or gaits where individual neurons ...
Motor networks typically generate several related output patterns or gaits where individual neurons ...
Locomotion rhythms are thought to be generated by neurons in the central-pattern-generator (CPG) cir...
Locomotion rhythms are thought to be generated by neurons in the central-pattern-generator (CPG) cir...
Most neuronal networks are very complex and detailed information on the neurons and their connection...
Important questions remain about the origin of the excitation that drives locomotion in vertebrates ...
Effective movement is central to survival and it is essential for all animals to react in response ...
Vertebrate central pattern generators (CPGs) controlling locomotion contain neurons which provide th...
During locomotion, reflex responses to sensory stimulation are usually modulated and may even be rev...
During locomotion, reflex responses to sensory stimulation are usually modulated and may even be rev...