stimulus salience
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2021 ◽  
Author(s):  
Wenyi Zhang ◽  
Yang Xie ◽  
Tianming Yang

The orbitofrontal cortex (OFC) is essential for value-based learning and decision making. Understanding the attentional modulation of the representation of value in the OFC provides us key information on its functional roles and links the OFC to other cognitive processes. We examined how top-down and bottom-up attention modulates the value encoding in the OFC. Two macaque monkeys were trained to detect a luminance change at a cued location between a pair of visual stimuli, which were over-trained pictures associated with different amount of juice rewards and, thus, different salience. While the monkeys' behavior and the DLPFC neuronal activities indicated that the monkeys actively directed their attention toward the cued location during the task, the OFC neurons' value encoding, however, was dominated by the bottom-up attention based on stimulus salience and only reflected the top-down attention weakly. The disassociation between the top-down and bottom-up attention signals in the OFC indicates that the OFC occupies an early stage of value information processing in the brain.


2021 ◽  
Vol 47 (2) ◽  
pp. 183-199
Author(s):  
Eric A. Thrailkill ◽  
Noelle L. Michaud ◽  
Mark E. Bouton

2020 ◽  
Vol 10 (1) ◽  
Author(s):  
Kirsten Hilger ◽  
Jona Sassenhagen ◽  
Jan Kühnhausen ◽  
Merle Reuter ◽  
Ulrike Schwarz ◽  
...  

AbstractChildren with attention-deficit/hyperactivity disorder (ADHD) are characterized by symptoms of inattention, impulsivity, and hyperactivity. Neurophysiological correlates of ADHD include changes in the P3 component of event-related brain potentials (ERPs). Motivated by recent advances towards a more dimensional understanding of ADHD, we investigate whether ADHD-related ERP markers relate to continuous variations in attention and executive functioning also in typically-developing children. ERPs were measured while 31 school children (9–11 years) completed an adapted version of the Continuous Performance Task that additionally to inhibitory processes also isolates effects of physical stimulus salience. Children with higher levels of parent-reported ADHD symptoms did not differ in task performance, but exhibited smaller P3 amplitudes related to stimulus salience. Furthermore, ADHD symptoms were associated with the variability of neural responses over time: Children with higher levels of ADHD symptoms demonstrated lower variability in inhibition- and salience-related P3 amplitudes. No effects were observed for ERP latencies and the salience-related N2. By demonstrating that ADHD-associated neurophysiological mechanisms of inhibition and salience processing covary with attention and executive functioning in a children community sample, our study provides neurophysiological support for dimensional models of ADHD. Also, temporal variability in event-related potentials is highlighted as additional indicator of ADHD requiring further investigation.


2020 ◽  
Vol 15 (7) ◽  
pp. 789-801
Author(s):  
Katherine G Warthen ◽  
Alita Boyse-Peacor ◽  
Keith G Jones ◽  
Benjamin Sanford ◽  
Tiffany M Love ◽  
...  

Abstract Several studies have suggested that females and males differ in reward behaviors and their underlying neural circuitry. Whether human sex differences extend across neural and behavioral levels for both rewards and punishments remains unclear. We studied a community sample of 221 young women and men who performed a monetary incentive task known to engage the mesoaccumbal pathway and salience network. Both stimulus salience (behavioral relevance) and valence (win vs loss) varied during the task. In response to high- vs low-salience stimuli presented during the monetary incentive task, men showed greater subjective arousal ratings, behavioral accuracy and skin conductance responses (P < 0.006, Hedges’ effect size g = 0.38 to 0.46). In a subsample studied with functional magnetic resonance imaging (n = 44), men exhibited greater responsiveness to stimulus salience in the nucleus accumbens, midbrain, anterior insula and dorsal anterior cingulate cortex (P < 0.02, g = 0.86 to 1.7). Behavioral, autonomic and neural sensitivity to the valence of stimuli did not differ by sex, indicating that responses to rewards vs punishments were similar in women and men. These results reveal novel and robust sex differences in reward- and punishment-related traits, behavior, autonomic activity and neural responses. These convergent results suggest a neurobehavioral basis for sexual dimorphism observed in the reward system, including reward-related disorders.


eLife ◽  
2020 ◽  
Vol 9 ◽  
Author(s):  
Sarah Hersman ◽  
David Allen ◽  
Mariko Hashimoto ◽  
Salvador Ignacio Brito ◽  
Todd E Anthony

Assessing the imminence of threatening events using environmental cues enables proactive engagement of appropriate avoidance responses. The neural processes employed to anticipate event occurrence depend upon which cue properties are used to formulate predictions. In serial compound stimulus (SCS) conditioning in mice, repeated presentations of sequential tone (CS1) and white noise (CS2) auditory stimuli immediately prior to an aversive event (US) produces freezing and flight responses to CS1 and CS2, respectively (Fadok et al., 2017). Recent work reported that these responses reflect learned temporal relationships of CS1 and CS2 to the US (Dong et al., 2019). However, we find that frequency and sound pressure levels, not temporal proximity to the US, are the key factors underlying SCS-driven conditioned responses. Moreover, white noise elicits greater physiological and behavioral responses than tones even prior to conditioning. Thus, stimulus salience is the primary determinant of behavior in the SCS paradigm, and represents a potential confound in experiments utilizing multiple sensory stimuli.


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