Area of research
Cell Biology · Cellular and Molecular Neuroscience
Research interest
Research interests include Zebrafish Biomedical Research Applications, Neuroscience and Neuropharmacology Research, Neural dynamics and brain function, and Neurobiology and Insect Physiology Research.
A GPU-based computational framework that bridges neuron simulation and artificial intelligence
Conserved subcortical processing in visuo-vestibular gaze control
The CPGs for Limbed Locomotion–Facts and Fiction
The neural bases of vertebrate motor behaviour through the lens of evolution
Basal ganglia reign through downstream control of motor centers in midbrain and brain stem while updating cortex with efference copy information
The microcircuits of striatum in silico
The evolutionary origin of visual and somatosensory representation in the vertebrate pallium
Current Principles of Motor Control, with Special Reference to Vertebrate Locomotion
The role of the optic tectum for visually evoked orienting and evasive movements
The Enigmatic “Indirect Pathway” of the Basal Ganglia: A New Role
The Lamprey Pallium Provides a Blueprint of the Mammalian Layered Cortex
The Basal Ganglia Over 500 Million Years
Worldwide initiatives to advance brain research
Ciliated neurons lining the central canal sense both fluid movement and pH through ASIC3
The Spinal Cord Has an Intrinsic System for the Control of pH
The Lamprey Pallium Provides a Blueprint of the Mammalian Motor Projections from Cortex
The basal ganglia downstream control of brainstem motor centres — an evolutionarily conserved strategy
The intrinsic operation of the networks that make us locomote
Tectal microcircuit generating visual selection commands on gaze-controlling neurons
A Cambrian origin for vertebrate rods
Evolutionarily conserved organization of the dopaminergic system in lamprey: <scp>SN</scp>c/<scp>VTA</scp> afferent and efferent connectivity and <scp>D</scp>2 receptor expression
The lamprey blueprint of the mammalian nervous system
The evolutionary origin of the vertebrate basal ganglia and its role in action selection
Independent circuits in the basal ganglia for the evaluation and selection of actions
Dopamine Differentially Modulates the Excitability of Striatal Neurons of the Direct and Indirect Pathways in Lamprey
Evolution of the basal ganglia: Dual‐output pathways conserved throughout vertebrate phylogeny
A novel autonomous, bioinspired swimming robot developed by neuroscientists and bioengineers