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Batz, L. R.

Publications and source records attributed to Batz, L. R..

2 recordsLinked to original sources

Age-related Increase in Locus Coeruleus Activity and Connectivity with Prefrontal Cortex during Ambiguity Processing

Interpreting ambiguous environmental cues, like facial expressions, becomes increasingly challenging with age, especially as cognitive resources decline. Managing these challenges requires adaptive neural mechanisms that are essential for maintaining mental well-being. The locus coeruleus (LC), the brains main norepinephrine source, regulates attention, arousal, and stress response. With extensive cortical connections, the LC supports adapting to cognitive demands and resolving conflicting cues from environment, particularly in later life. Previous research suggests that LC interacts with the prefrontal cortex (PFC) during high-conflict tasks. However, whether LC activity and its connectivity with the PFC support emotional ambiguity processing and contributes to emotional well-being in healthy aging remains unclear. To address this gap, we used 7T-MRI to examine LC function in 75 younger (25.8 {+/-} 4.02years, 35females) and 69 older adults (71.3 {+/-} 4.1 years, 35females) during facial-emotion-recognition task morphed with varying ambiguity: anchor (unambiguous happy or fearful), intermediate-ambiguity (30%happy-70%fearful and 40%happy-60%fearful expressions), and absolute-ambiguity (50%happy-fearful). Behaviorally, participants had longer response times and lower confidence during the absolute-ambiguity condition, while older adults perceived ambiguous faces as happy more frequently than younger adults. Neuroimaging results revealed older adults exhibited greater LC activity and enhanced connectivity with dorsolateral PFC (dlPFC) during absolute-ambiguity compared to younger adults. This heightened connectivity in older adults was linked to better task-independent self-reported mental well-being questionnaires and greater emotional resilience scores derived from principal component analysis. Overall, these findings suggest that greater LC activity supports managing cognitively demanding tasks, while enhanced LC-dlPFC connectivity promotes emotional well-being, highlighting this neural pathways role in healthy aging. Significance StatementUnderstanding how the brain adapts to cognitive and emotional demands with age is key to promoting healthy aging. This study examined whether the locus coeruleus (LC), a brain region critical for regulating attention and arousal, undergoes adaptive changes with age, especially during emotional ambiguity task. Using ultra-high-field imaging, we explored younger and older adults recognize facial expressions with varying ambiguity levels. Our findings indicated that compared to young, older adults showed heightened LC activity and LC-dorsolateral prefrontal cortex (dlPFC) connectivity when processing absolute-ambiguous facial expressions, with enhanced connectivity linked to improved mental well-being. These results suggest higher LC activity supports cognitive demands of ambiguity processing with LC-dlPFC connectivity promoting emotional well-being and resilience, offering insights into mechanisms underlying healthy aging.

neuroscience↗

Resilience-driven neural synchrony during naturalistic movie watching: an ultra-high field fMRI study

Psychological resilience protects individuals against the negative consequences of exposure to adversity. Despite increasing attention given to resilience for its role in maintaining mental health, a clear conceptualization of resilience remains elusive, and the intricacies of its neural correlates are poorly understood. Here, we recorded brain activity in healthy young adults using a 7T MRI scanner while they naturally watched movies. Stronger and more extensive resilience-driven neural synchrony, as estimated by inter-subject correlation, was observed in a wider set of brain regions in response to the negative movie compared to the neutral movie. Moreover, we found that high-resilience individuals had similar neural activities to their peers, while low-resilience individuals showed more variable neural activities. Intolerance of uncertainty (IU), a personality trait that shapes biased perception and cognition, damped the resilience-driven brain synchrony in regions related to attention, indicating IU may compromise resilience by affecting attentional functions. We propose that similarity of neural responses among resilient individuals highlights adaptive emotional processing. Conversely, the variability in neural responses indicates vulnerability to adverse psychological outcomes. These insights shed light on the mechanisms of resilience, highlighting that it operates as a system encompassing multiple neuropsychological processes crucial for adapting to external stimuli.

neuroscience↗