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  1. Connexin 36 expression is required for electrical coupling between mouse rods and cones
  2. Loss of HCN1 enhances disease progression in mouse models of CNG channel-linked retinitis pigmentosa and achromatopsia
  3. Slow light response kinetics in rods points towards a perturbation of the normal cellular milieu
  4. A Cambrian origin for vertebrate rods
  5. Effective delivery of recombinant proteins to rod photoreceptors via lipid nanovesicles
  6. Mouse rods signal through gap junctions with cones
  7. Detecting single photons: A supramolecular matter?
  8. The photovoltage of rods and cones in the dark‐adapted mouse retina
  9. The hemisegmental locomotor network revisited
  10. Processing of Retinal Signals in Normal and HCN Deficient Mice
  11. Neuronal Substrates for State-Dependent Changes in Coordination between Motoneuron Pools during Fictive Locomotion in the Lamprey Spinal Cord
  12. High-Pass Filtering of Input Signals by the Ih Current in a Non-Spiking Neuron, the Retinal Rod Bipolar Cell
  13. Sodium-dependent potassium channels of a Slack-like subtype contribute to the slow afterhyperpolarization in lamprey spinal neurons
  14. Modelling self-sustained rhythmic activity in lamprey hemisegmental networks
  15. Mechanisms of Rhythm Generation in a Spinal Locomotor Network Deprived of Crossed Connections: The Lamprey Hemicord
  16. Effects of evoked and spontaneous motoneuronal firing on synapse competition and elimination in skeletal muscle
  17. Fast and Slow Locomotor Burst Generation in the Hemispinal Cord of the Lamprey
  18. Perinatal switch from synchronous to asynchronous activity of motoneurons: Link with synapse elimination
  19. Ion channels of importance for the locomotor pattern generation in the lamprey brainstem‐spinal cord