scholarly journals Recoding Arm Position to Learn Visuomotor Transformations

2001 ◽  
Vol 11 (10) ◽  
pp. 906-917 ◽  
Author(s):  
P. Baraduc
Author(s):  
Kaleb A. Lowe ◽  
Wolf Zinke ◽  
M. Anthony Phipps ◽  
Josh Cosman ◽  
Micala Maddox ◽  
...  

2021 ◽  
Vol 11 (1) ◽  
Author(s):  
Paul VanGilder ◽  
Ying Shi ◽  
Gregory Apker ◽  
Christopher A. Buneo

AbstractAlthough multisensory integration is crucial for sensorimotor function, it is unclear how visual and proprioceptive sensory cues are combined in the brain during motor behaviors. Here we characterized the effects of multisensory interactions on local field potential (LFP) activity obtained from the superior parietal lobule (SPL) as non-human primates performed a reaching task with either unimodal (proprioceptive) or bimodal (visual-proprioceptive) sensory feedback. Based on previous analyses of spiking activity, we hypothesized that evoked LFP responses would be tuned to arm location but would be suppressed on bimodal trials, relative to unimodal trials. We also expected to see a substantial number of recording sites with enhanced beta band spectral power for only one set of feedback conditions (e.g. unimodal or bimodal), as was previously observed for spiking activity. We found that evoked activity and beta band power were tuned to arm location at many individual sites, though this tuning often differed between unimodal and bimodal trials. Across the population, both evoked and beta activity were consistent with feedback-dependent tuning to arm location, while beta band activity also showed evidence of response suppression on bimodal trials. The results suggest that multisensory interactions can alter the tuning and gain of arm position-related LFP activity in the SPL.


2018 ◽  
Vol 120 (1) ◽  
pp. 239-249 ◽  
Author(s):  
James E. Gehringer ◽  
David J. Arpin ◽  
Elizabeth Heinrichs-Graham ◽  
Tony W. Wilson ◽  
Max J. Kurz

Although it is well appreciated that practicing a motor task updates the associated internal model, it is still unknown how the cortical oscillations linked with the motor action change with practice. The present study investigates the short-term changes (e.g., fast motor learning) in the α- and β-event-related desynchronizations (ERD) associated with the production of a motor action. To this end, we used magnetoencephalography to identify changes in the α- and β-ERD in healthy adults after participants practiced a novel isometric ankle plantarflexion target-matching task. After practicing, the participants matched the targets faster and had improved accuracy, faster force production, and a reduced amount of variability in the force output when trying to match the target. Parallel with the behavioral results, the strength of the β-ERD across the motor-planning and execution stages was reduced after practice in the sensorimotor and occipital cortexes. No pre/postpractice changes were found in the α-ERD during motor planning or execution. Together, these outcomes suggest that fast motor learning is associated with a decrease in β-ERD power. The decreased strength likely reflects a more refined motor plan, a reduction in neural resources needed to perform the task, and/or an enhancement of the processes that are involved in the visuomotor transformations that occur before the onset of the motor action. These results may augment the development of neurologically based practice strategies and/or lead to new practice strategies that increase motor learning. NEW & NOTEWORTHY We aimed to determine the effects of practice on the movement-related cortical oscillatory activity. Following practice, we found that the performance of the ankle plantarflexion target-matching task improved and the power of the β-oscillations decreased in the sensorimotor and occipital cortexes. These novel findings capture the β-oscillatory activity changes in the sensorimotor and occipital cortexes that are coupled with behavioral changes to demonstrate the effects of motor learning.


2003 ◽  
Vol 17 (7) ◽  
pp. 459-462 ◽  
Author(s):  
R T Netea ◽  
J W M Lenders ◽  
P Smits ◽  
Th Thien

2008 ◽  
Vol 18 (10) ◽  
pp. 2358-2368 ◽  
Author(s):  
Alit Stark ◽  
Ehud Zohary

2017 ◽  
Vol 32 (1) ◽  
pp. 8-12 ◽  
Author(s):  
Laura M Kok ◽  
Bionka MA Huisstede ◽  
Taco J Douglas ◽  
Rob GHH Nelissen

OBJECTIVE: In addition to known risk factors for musculoskeletal complaints in the general population, playing a musical instrument is an additional risk factor. In this pilot study, the prevalence of musculoskeletal complaints in student amateur musicians and their relation with playing posture and playing time were evaluated. METHODS: A cross-sectional web-based survey among amateur musicians studying at a Dutch university. RESULTS: 162 amateur musicians were included in this pilot study (response rate 17.6%). 46.9% of these amateur musicians played with an elevated arm position. Presence of complaints of the arm, neck and/or shoulder (CANS) was not statistically significantly related to arm position, except for complaints in the left shoulder with an elevated left arm position compared to neutral left arm position (OR 6.7, CI 95% 2.2–20.8) The number of hours playing per week did not significantly contribute to CANS (OR 1.0, CI 95% 0.95–1.17). CONCLUSIONS: In this pilot study among student amateur musicians, the occurrence of CANS was not significantly related to arm position, except for musicians playing with an elevated left arm position, which was associated with complaints of the left shoulder (OR 6.7). The number of hours playing per week did not significantly contribute to CANS in this group of musicians.


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