complex task performance
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2019 ◽  
Vol 74 ◽  
pp. 102777 ◽  
Author(s):  
Troy A.W. Visser ◽  
Angela D. Bender ◽  
Vanessa K. Bowden ◽  
Stephanie C. Black ◽  
Jayden Greenwell-Barnden ◽  
...  

2017 ◽  
Vol 71 (3) ◽  
pp. 7103190030p1
Author(s):  
Juan Pablo Saa ◽  
Meghan Doherty ◽  
Alexis Young ◽  
Meredith Spiers ◽  
Emily Leary ◽  
...  

2016 ◽  
Vol 116 (3) ◽  
pp. 1434-1448 ◽  
Author(s):  
Curren Katz ◽  
André Knops

The cerebellum's role in nonmotor processes is now well accepted, but cerebellar interaction with cerebral targets is not well understood. Complex cognitive tasks activate cerebellar, parietal, and frontal regions, but the effective connectivity between these regions has never been tested. To this end, we used psycho-physiological interactions (PPI) analysis to test connectivity changes of cerebellar and parietal seed regions in complex (2-digit by 1-digit multiplication, e.g., 12 × 3) vs. simple (1-digit by 1-digit multiplication, e.g., 4 × 3) task conditions (“complex − simple”). For cerebellar seed regions (lobule VI, hemisphere and vermis), we found significantly decreased cerebellar-parietal, cerebellar-cingulate, and cerebellar-frontal connectivity in complex multiplication. For parietal seed regions (PFcm, PFop, PFm) we found significantly increased parietal-parietal and parietal-frontal connectivity in complex multiplication. These results suggest that decreased cerebellar-cerebral connectivity contributes to complex task performance. Interestingly, BOLD activity contrasts revealed partially overlapping parietal areas of increased BOLD activity but decreased cerebellar-parietal PPI connectivity.


Author(s):  
Benjamin A. Clegg ◽  
Christopher D. Wickens ◽  
Alex Z. Vieane ◽  
Robert S. Gutzwiller ◽  
Angelia L. Sebok

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