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Dynamic control of decision and movement speed in the human basal ganglia
Medicine and HealthNature Communications

Dynamic control of decision and movement speed in the human basal ganglia

D. M. Herz, M. Bange, et al.

This groundbreaking research explores how the basal ganglia influence decision-making and movement speed, revealing independent control mechanisms in the subthalamic nucleus. Conducted by Damian M. Herz and colleagues, this study provides valuable insights into adaptive behavior in Parkinson's disease patients through advanced electrophysiological techniques.... show more
Abstract
To optimally adjust our behavior to changing environments we need to both adjust the speed of our decisions and movements. Yet little is known about the extent to which these processes are controlled by common or separate mechanisms. Furthermore, while previous evidence from computational models and empirical studies suggests that the basal ganglia play an important role during adjustments of decision-making, it remains unclear how this is implemented. Leveraging the opportunity to directly access the subthalamic nucleus of the basal ganglia in humans undergoing deep brain stimulation surgery, we here combine invasive electrophysiological recordings, electrical stimulation and computational modelling of perceptual decision-making. We demonstrate that, while similarities between subthalamic control of decision- and movement speed exist, the causal contribution of the subthalamic nucleus to these processes can be disentangled. Our results show that the basal ganglia independently control the speed of decisions and movement for each hemisphere during adaptive behavior.
Publisher
Nature Communications
Published On
Dec 07, 2022
Authors
Damian M. Herz, Manuel Bange, Gabriel Gonzalez-Escamilla, Miriam Auer, Keyoumars Ashkan, Petra Fischer, Huiling Tan, Rafal Bogacz, Muthuraman Muthuraman, Sergiu Groppa, Peter Brown
Tags
basal gangliasubthalamic nucleusdecision-makingmovement speedParkinson's diseaseelectrophysiological recordingsdeep brain stimulation
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