Cerebrovascular-balance relationships reveal mechanisms of neuromotor resilience to dual-task cognitive loading
Palmer, J. A.; Hazen, E. M.; Billinger, S.
Show abstract
BACKGROUNDAge-related decline in cerebrovascular health precipitates cognitive dysfunction and can be attenuated by habitual physical activity. Cognitive interference in balance control is well-known clinically and reflects compromised neuromotor resilience. However, whether cerebrovascular health affects cognitive-balance dual-tasking with aging is unclear. METHODSThirty participants (76{+/-}4years) completed clinical balance/cognitive testing under single-task and dual-task conditions. Balance performance was assessed as the total distance traversed during a challenging beam walking task. Cognitive performance was assessed as response time (RT) during a working-memory n-back test. Transcranial Doppler ultrasound was used to measure resting middle cerebral artery blood velocity (MCAv). We tested whether MCAv was associated with single-task and dual-task interference (DTI) in balance and cognitive performance and the effects of age and physical activity level on this relationship. RESULTSDuring single-tasking, higher MCAv associated with higher balance function (r=0.40, p=0.033), while no relationship was observed for cognitive performance. Dual-tasking strengthened relationships between MCAv and DTI across domains of balance (r=0.442, p=0.016) and cognition (r=0.328, p=0.089); for cognitive DTI, this effect was driven by individuals [≥]75years old (r=0.54, p=0.031). Individuals [≥]75years exhibited greater cognitive DTI (p=0.049), yet achieved similar balance DTI compared to those <75. Regardless of age, participants with higher MCAv demonstrated greater dual-task prioritization of balance control over cognitive performance (r=0.410, p=0.030). Physically-active participants with higher MCAv also showed less balance DTI (r=0.621, p=0.003), while there was no relationship in under-active/sedentary individuals or within the cognitive domain. CONCLUSIONSOur results support a key role of cerebrovascular health in neuromotor resilience to cognitive loading, which may emerge earlier in brain aging processes affecting balance control compared to cognition. Cerebrovascular health may support peoples ability to prioritize balance in the face of competing attentional demands, and may mediate the positive effects of physical activity on cortically-mediated balance control.
Matching journals
The top 3 journals account for 50% of the predicted probability mass.
Similar papers in this journal
- Your Brain Doesn't Look a Day Past 70! Cross-Sectional Associations with Brain-Predicted Age in the Cognitively-Intact Oldest-Old 94%
- Complementary value of molecular, phenotypic and functional aging biomarkers in dementia prediction 93%
- Attenuated cognitive decline in community-dwelling older adults with higher plasma adropin concentrations 93%
Similar papers in this journal
- Muscle mitochondrial bioenergetic capacities is associated with multimorbidity burden in older adults: the Study of Muscle, Mobility and Aging (SOMMA) 95%
- A Bayesian Network Analysis of Gait Speed Change Upon Transition to Uneven Surfaces in Older Adults 95%
- Nigrostriatal dopaminergic integrity in relation to prefrontal cortex activity and gait performance during dual-task walking in older adults 94%
Similar papers in this journal
- Enriching hippocampal memory function in older adults through real-world exploration 95%
- Functional connectivity of the anterior and posterior hippocampus: differential effects of glucose in younger and older adults 94%
- High blood uric acid is associated with reduced risks of mild cognitive impairment among older adults in China: a 9-year prospective cohort study 94%
Similar papers in this journal
Similar papers in this journal
- The impact of the COVID-19 pandemic on wellbeing and cognitive functioning of older adults 93%
- Bimanual digit training improves right-hand dexterity in older adults by reactivating declined ipsilateral motor-cortical inhibition 93%
- Cardiorespiratory fitness and cardiometabolic health are associated with distinct cognitive domains in cognitively healthy older adults. 92%
"Similar papers" are the closest papers from that journal in the model's embedding space. They show what the match is built on, but the ranking comes mostly from a classifier over the whole training set, not from these examples alone.