The striatum is critically involved in value-based decision making. However, it is unclear how striatal direct and indirect pathways work together to make optimal choices in a dynamic and uncertain environment. Here, we examined the effects of selectively inactivating D1 receptor (D1R)- or D2 receptor (D2R)-expressing dorsal striatal neurons (corresponding to direct- and indirect-pathway neurons, respectively) on mouse choice behavior in a reversal task with progressively increasing reversal frequency and a dynamic two-armed bandit task. Inactivation of either D1R- or D2R-expressing striatal neurons impaired performance in both tasks, but the pattern of altered choice behavior differed between the two animal groups. A reinforcement learning...
The dorsal striatum has been implicated in reward-based decision making, but the role played by spec...
In order to investigate roles of dopamine receptor subtypes in reward-based learning, we examined ch...
For decisions both great and small, the brain utilizes an extensive network that integrates value as...
The striatum is critically involved in value-based decision making. However, it is unclear how stria...
The striatum is critically involved in value-based decision making. However, it is unclear how stria...
Dopamine has been implicated in value-based learning and decision making by signaling reward predict...
Dopamine has been implicated in value-based learning and decision making by signaling reward predict...
Dopamine has been implicated in value-based learning and decision making by signaling reward predict...
Dopamine has been implicated in value-based learning and decision making by signaling reward predict...
In changing environments, animals must adaptively select actions to achieve their goals. In tasks in...
In changing environments, animals must adaptively select actions to achieve their goals. In tasks in...
Decision-making is necessary to adapt to the variable environment in everyday life. During this proc...
Cortico-basal ganglia circuits are critical regulators of reward-based decision making.Reinforcement...
The dorsal striatum has been implicated in reward-based decision making, but the role played by spec...
The dorsal striatum has been implicated in reward-based decision making, but the role played by spec...
The dorsal striatum has been implicated in reward-based decision making, but the role played by spec...
In order to investigate roles of dopamine receptor subtypes in reward-based learning, we examined ch...
For decisions both great and small, the brain utilizes an extensive network that integrates value as...
The striatum is critically involved in value-based decision making. However, it is unclear how stria...
The striatum is critically involved in value-based decision making. However, it is unclear how stria...
Dopamine has been implicated in value-based learning and decision making by signaling reward predict...
Dopamine has been implicated in value-based learning and decision making by signaling reward predict...
Dopamine has been implicated in value-based learning and decision making by signaling reward predict...
Dopamine has been implicated in value-based learning and decision making by signaling reward predict...
In changing environments, animals must adaptively select actions to achieve their goals. In tasks in...
In changing environments, animals must adaptively select actions to achieve their goals. In tasks in...
Decision-making is necessary to adapt to the variable environment in everyday life. During this proc...
Cortico-basal ganglia circuits are critical regulators of reward-based decision making.Reinforcement...
The dorsal striatum has been implicated in reward-based decision making, but the role played by spec...
The dorsal striatum has been implicated in reward-based decision making, but the role played by spec...
The dorsal striatum has been implicated in reward-based decision making, but the role played by spec...
In order to investigate roles of dopamine receptor subtypes in reward-based learning, we examined ch...
For decisions both great and small, the brain utilizes an extensive network that integrates value as...