To characterize the neuronal basis of the sensorimotor integration of sound stimuli in the zebrafish auditory system responsible for the generation of long-latency tail movements (LLTMs), I used two-photon and light-sheet calcium imaging in intact, behaving zebrafish larvae. I monitored neural activity elicited by auditory stimuli while simultaneously recording tail movements. I found a low-dimensional representation of frequency information, maintained throughout the development of the larvae. Low frequencies (150–450 Hz) were locally processed in the hindbrain and elicited LLTMs. Higher frequencies (900–1,000 Hz) rarely induced motor behaviors and were represented in the hindbrain and in the midbrain. Finally, I found that the sensorimoto...
In the presence of moving visual stimuli, animals follow the Fourier, or first-order, motion energy ...
We present a paradigm for recording anywhere in the brain, from several thousands of individual neur...
SummarySpontaneous neuronal activity is spatiotemporally structured, influencing brain computations....
To characterize the neuronal basis of the sensorimotor integration of sound stimuli in the zebrafish...
The Zebrafish larva is a model for the study of vertebrate central nervous system. Mutants have been...
La larve de poisson-zèbre est un animal modèle pour l'étude du système nerveux des vertébrés, dont c...
The neural networks that underlie locomotion are complex and require integration of sensory input an...
The vestibular system, which reports on motion and gravity, is essential to postural control, balanc...
The vestibular system in the inner ear plays a central role in sensorimotor control by informing the...
AbstractOur senses of hearing and balance rely on the function of specialized receptor neurons calle...
This thesis traces the investigation of representations of whole field motion, a highly behaviorally...
L’appareil vestibulaire fournit aux animaux des informations relatives à la posture et aux mouvemen...
The first part of this thesis presents an historical overview of neural recording techniques, follow...
A fundamental question in neuroscience is how entire neural circuits generate behaviour and adapt it...
Understanding how the central nervous system generates motor sequences, coordinates limbs and body o...
In the presence of moving visual stimuli, animals follow the Fourier, or first-order, motion energy ...
We present a paradigm for recording anywhere in the brain, from several thousands of individual neur...
SummarySpontaneous neuronal activity is spatiotemporally structured, influencing brain computations....
To characterize the neuronal basis of the sensorimotor integration of sound stimuli in the zebrafish...
The Zebrafish larva is a model for the study of vertebrate central nervous system. Mutants have been...
La larve de poisson-zèbre est un animal modèle pour l'étude du système nerveux des vertébrés, dont c...
The neural networks that underlie locomotion are complex and require integration of sensory input an...
The vestibular system, which reports on motion and gravity, is essential to postural control, balanc...
The vestibular system in the inner ear plays a central role in sensorimotor control by informing the...
AbstractOur senses of hearing and balance rely on the function of specialized receptor neurons calle...
This thesis traces the investigation of representations of whole field motion, a highly behaviorally...
L’appareil vestibulaire fournit aux animaux des informations relatives à la posture et aux mouvemen...
The first part of this thesis presents an historical overview of neural recording techniques, follow...
A fundamental question in neuroscience is how entire neural circuits generate behaviour and adapt it...
Understanding how the central nervous system generates motor sequences, coordinates limbs and body o...
In the presence of moving visual stimuli, animals follow the Fourier, or first-order, motion energy ...
We present a paradigm for recording anywhere in the brain, from several thousands of individual neur...
SummarySpontaneous neuronal activity is spatiotemporally structured, influencing brain computations....