The relationship of pain, anxiety, and fatigue with knee position sense, balance, and dual task performance during menstrual cycle in females with multiple sclerosis

2020 ◽  
Vol 37 (4) ◽  
pp. 307-312
Author(s):  
Yasemin Ateş ◽  
Nezehat Özgül Ünlüer
1989 ◽  
Vol 41 (1) ◽  
pp. 1-17 ◽  
Author(s):  
William H. Gladstones ◽  
Michael A. Regan ◽  
Robert B. Lee

Two experiments are reported in which subjects performed two forced-paced serial reaction time tasks separately and together at their maximum sustainable rates of information processing. Experiment 1 investigated the effects on the relationship between single- and dual-task performance of using tasks with the same or different input and output modality characteristics; an additional condition tested the effects on this relationship of using tasks with higher S–R compatibility. Experiment 2 investigated the effects on the relationship between single- and dual-task performance of varying information load (number of S–R alternatives). No significant differences were found in subjects’ capacities to process information in single- and dual-task conditions. This finding was unaffected by: (a) the absolute information levels of the tasks, (b) whether inputs and/or outputs involved the same or different modalities, or (c) the level of S–R compatibility. The data from both experiments provide strong support for the single-channel hypothesis.


2014 ◽  
Vol 95 (10) ◽  
pp. e68 ◽  
Author(s):  
Michelle Keightley ◽  
Katia J. Sinopoli ◽  
Jen-Kai Chen ◽  
Alain Ptito ◽  
Tim Taha ◽  
...  

2019 ◽  
Vol 51 (Supplement) ◽  
pp. 346
Author(s):  
Samantha Everett ◽  
Chelsea Comeau ◽  
Virginia Thomas ◽  
Srikant Vallabhajosula

2019 ◽  
Author(s):  
Pierfilippo De Sanctis ◽  
Brenda R. Malcolm ◽  
Peter C. Mabie ◽  
Ana A. Francisco ◽  
Wenzhu B. Mowrey ◽  
...  

ABSTRACTIndividuals with a diagnosis of multiple sclerosis (MS) often present with deficits in the cognitive as well as the motor domain. The ability to perform tasks that rely on both domains may therefore be particularly impaired. Yet, behavioral studies designed to measure costs associated with performing two tasks at the same time such as dual-task walking have yielded mixed results. Patients may mobilize additional brain resources to sustain good levels of performance. To test this hypothesis, we acquired event-related potentials (ERP) in thirteen individuals with MS and fifteen healthy control (HC) participants performing a Go/NoGo response inhibition task while sitting (i.e., single task) or walking on a treadmill (i.e., dual-task). In previous work, we showed that the nogo-N2 elicited by the cognitive task was reduced when healthy adults are also asked to walk, and that nogo-N2 reduction was accompanied by sustained dual-task performance. We predicted that some MS patients, similar to their healthy peers, may mobilize N2-indexed brain resources and thereby reduce costs. Somewhat to our surprise, the HC group performed the Go/NoGo task more accurately while walking, thus showing a dual-task benefit, whereas, in line with expectation, the MS group showed a trend towards dual-task costs. The expected nogo-N2 reduction during dual-task walking was found in the HC group, but was not present at the group level in the MS group, suggesting that this group did not modulate the nogo-N2 process in response to higher task load. Regression analysis for the pooled sample revealed a robust link between nogo-N2 reduction and better dual-task performance. We conclude that impaired nogo-N2 adaptation reflects a neurophysiological marker of cognitive-motor dysfunction in MS.


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