Vertebrate locomotion presents a major challenge for maintaining visual acuity due to head movements resulting from the intimate biomechanical coupling with the propulsive musculoskeletal system. Retinal image stabilization has been traditionally ascribed to the transformation of motion-related sensory feedback into counteracting ocular motor commands. However, extensive exploration of spontaneously active semi-intact and isolated brain/spinal cord preparations of the amphibian Xenopus laevis, have revealed that efference copies (ECs) of the spinal motor program that generates axial- or limb-based propulsion directly drive compensatory eye movements. During fictive locomotion in larvae, ascending ECs from rostral spinal central pattern gene...
In larval xenopus, locomotor-induced oculomotor behavior produces gaze-stabilizing eye movements to ...
International audienceSelf-generated body movements require compensatory eye and head adjustments in...
During active movements, neural replicas of the underlying motor commands may assist in adapting mot...
Vertebrate locomotion presents a major challenge for maintaining visual acuity due to head movements...
SummaryBackgroundSelf-generated body movements require compensatory eye and head adjustments in orde...
SummaryBackgroundSelf-generated body movements require compensatory eye and head adjustments in orde...
International audienceIn swimming Xenopus laevis tadpoles, gaze stabilization is achieved by efferen...
SummaryAccurate perception of the visual world plays a major role in animal survival. All vertebrate...
International audienceIn swimming Xenopus laevis tadpoles, gaze stabilization is achieved by efferen...
International audienceIn swimming Xenopus laevis tadpoles, gaze stabilization is achieved by efferen...
Vestibulo-ocular reflexes (VOR) ensure gaze stability during locomotion and passively induced head/b...
Vestibulo-ocular reflexes (VOR) ensure gaze stability during locomotion and passively induced head/b...
Vestibulo-ocular reflexes (VOR) ensure gaze stability during locomotion and passively induced head/b...
International audienceSelf-generated body movements require compensatory eye and head adjustments in...
International audienceSelf-generated body movements require compensatory eye and head adjustments in...
In larval xenopus, locomotor-induced oculomotor behavior produces gaze-stabilizing eye movements to ...
International audienceSelf-generated body movements require compensatory eye and head adjustments in...
During active movements, neural replicas of the underlying motor commands may assist in adapting mot...
Vertebrate locomotion presents a major challenge for maintaining visual acuity due to head movements...
SummaryBackgroundSelf-generated body movements require compensatory eye and head adjustments in orde...
SummaryBackgroundSelf-generated body movements require compensatory eye and head adjustments in orde...
International audienceIn swimming Xenopus laevis tadpoles, gaze stabilization is achieved by efferen...
SummaryAccurate perception of the visual world plays a major role in animal survival. All vertebrate...
International audienceIn swimming Xenopus laevis tadpoles, gaze stabilization is achieved by efferen...
International audienceIn swimming Xenopus laevis tadpoles, gaze stabilization is achieved by efferen...
Vestibulo-ocular reflexes (VOR) ensure gaze stability during locomotion and passively induced head/b...
Vestibulo-ocular reflexes (VOR) ensure gaze stability during locomotion and passively induced head/b...
Vestibulo-ocular reflexes (VOR) ensure gaze stability during locomotion and passively induced head/b...
International audienceSelf-generated body movements require compensatory eye and head adjustments in...
International audienceSelf-generated body movements require compensatory eye and head adjustments in...
In larval xenopus, locomotor-induced oculomotor behavior produces gaze-stabilizing eye movements to ...
International audienceSelf-generated body movements require compensatory eye and head adjustments in...
During active movements, neural replicas of the underlying motor commands may assist in adapting mot...