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B J Wilkes

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Neuroscience and Biobehavioral Reviews|May 27, 2018
The neural circuitry of restricted repetitive behavior: Magnetic resonance imaging in neurodevelopmental disorders and animal modelsB J Wilkes, M H Lewis
Dystonia (Lausanne, Switzerland)|July 30, 2025
Altered Functional Brain Connectivity in Dyt1 Knock-in mouse modelsR Z Adury, B J Wilkes, P Girdhar, et al.
Experimental Neurology|June 13, 2021
Cell-specific effects of Dyt1 knock-out on sensory processing, network-level connectivity, and motor deficitsB J Wilkes, J C DeSimone, Y Liu, et al.
Clinical Neurophysiology : Official Journal of the International Federation of Clinical Neurophysiology|December 4, 2019
Effects of ventral intermediate nucleus deep brain stimulation across multiple effectors in essential tremorB J Wilkes, A Wagle Shukla, A Casamento-Moran, et al.
Experimental Neurology|June 15, 2023
Cell-specific Dyt1 ∆GAG knock-in to basal ganglia and cerebellum reveal differential effects on motor behavior and sensorimotor network functionB J Wilkes, R Z Adury, D Berryman, et al.
Pageof 1

Showing results (1-10 of 5) with videos related to

Sort By:
Pageof 1
Neuroscience and Biobehavioral Reviews|May 27, 2018
The neural circuitry of restricted repetitive behavior: Magnetic resonance imaging in neurodevelopmental disorders and animal modelsB J Wilkes, M H Lewis
Dystonia (Lausanne, Switzerland)|July 30, 2025
Altered Functional Brain Connectivity in Dyt1 Knock-in mouse modelsR Z Adury, B J Wilkes, P Girdhar, et al.
Experimental Neurology|June 13, 2021
Cell-specific effects of Dyt1 knock-out on sensory processing, network-level connectivity, and motor deficitsB J Wilkes, J C DeSimone, Y Liu, et al.
Clinical Neurophysiology : Official Journal of the International Federation of Clinical Neurophysiology|December 4, 2019
Effects of ventral intermediate nucleus deep brain stimulation across multiple effectors in essential tremorB J Wilkes, A Wagle Shukla, A Casamento-Moran, et al.
Experimental Neurology|June 15, 2023
Cell-specific Dyt1 ∆GAG knock-in to basal ganglia and cerebellum reveal differential effects on motor behavior and sensorimotor network functionB J Wilkes, R Z Adury, D Berryman, et al.
Pageof 1