Research on the neural correlates of risk-related behaviors and personality traits has provided insight into mechanisms underlying both normal and pathological decision-making. Task-based neuroimaging studies implicate a distributed network of brain regions in risky decision-making. What remains to be understood are the interactions between these regions and their relation to individual differences in personality variables associated with real-world risk-taking.We employed resting state functional magnetic resonance imaging (R-fMRI) and resting state functional connectivity (RSFC) methods to investigate differences in the brain's intrinsic functional architecture associated with beliefs about the consequences of risky behavior. We obtained ...
Previous research has implicated a large network of brain regions in the processing of risk during d...
Previous research has implicated a large network of brain regions in the processing of risk during d...
This thesis investigates the neural basis of risk-taking in humans across different incentive domain...
Research on the neural correlates of risk-related behaviors and personality traits has provided insi...
Background: Research on the neural correlates of risk-related behaviors and personality traits has p...
Background: Research on the neural correlates of risk-related behaviors and personality traits has p...
Background: Research on the neural correlates of risk-related behaviors and personality traits has p...
Background: Research on the neural correlates of risk-related behaviors and personality traits has p...
Value-based decision making (VBDM) is a principle that states that humans and other species adapt th...
Risk-taking is subject to considerable individual differences. In the current study, we tested wheth...
<div><p>Risk-taking is subject to considerable individual differences. In the current study, we test...
Value-based decision making (VBDM) is a principle that states that humans and other species adapt th...
Risk-taking is subject to considerable individual differences. In the current study, we tested wheth...
Risk-taking is subject to considerable individual differences. In the current study, we tested wheth...
Human risk taking is characterized by a large amount of individual heterogeneity. In this study, we ...
Previous research has implicated a large network of brain regions in the processing of risk during d...
Previous research has implicated a large network of brain regions in the processing of risk during d...
This thesis investigates the neural basis of risk-taking in humans across different incentive domain...
Research on the neural correlates of risk-related behaviors and personality traits has provided insi...
Background: Research on the neural correlates of risk-related behaviors and personality traits has p...
Background: Research on the neural correlates of risk-related behaviors and personality traits has p...
Background: Research on the neural correlates of risk-related behaviors and personality traits has p...
Background: Research on the neural correlates of risk-related behaviors and personality traits has p...
Value-based decision making (VBDM) is a principle that states that humans and other species adapt th...
Risk-taking is subject to considerable individual differences. In the current study, we tested wheth...
<div><p>Risk-taking is subject to considerable individual differences. In the current study, we test...
Value-based decision making (VBDM) is a principle that states that humans and other species adapt th...
Risk-taking is subject to considerable individual differences. In the current study, we tested wheth...
Risk-taking is subject to considerable individual differences. In the current study, we tested wheth...
Human risk taking is characterized by a large amount of individual heterogeneity. In this study, we ...
Previous research has implicated a large network of brain regions in the processing of risk during d...
Previous research has implicated a large network of brain regions in the processing of risk during d...
This thesis investigates the neural basis of risk-taking in humans across different incentive domain...