Post-training TMS abolishes performance improvement and releases future learning from interference

scientific article published on 27 August 2019

Post-training TMS abolishes performance improvement and releases future learning from interference is …
instance of (P31):
scholarly articleQ13442814

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P356DOI10.1038/S42003-019-0566-4
P932PMC publication ID6711956
P698PubMed publication ID31482139

P50authorDiana MiltonQ93089200
Dobromir RahnevQ46800298
P2093author name stringTakeo Watanabe
Ji Won Bang
Yuka Sasaki
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Retinoic acid delays transcription of human retinal pigment neuroepithelium marker genes in ARPE-19 cellsQ40875603
Overlearning hyperstabilizes a skill by rapidly making neurochemical processing inhibitory-dominantQ42320201
Human middle temporal cortex, perceptual bias, and perceptual memory for ambiguous three-dimensional motion.Q43195221
Perceptual learning of line orientation modifies the effects of transcranial magnetic stimulation of visual cortexQ45172354
Theta burst stimulation of the human motor cortexQ45233486
Involvement of the parietal cortex in perceptual learning (Eureka effect): an interference approach using rTMS.Q46155465
Theta-burst repetitive transcranial magnetic stimulation suppresses specific excitatory circuits in the human motor cortex.Q46449934
Posttraining transcranial magnetic stimulation of striate cortex disrupts consolidation early in visual skill learning.Q46978424
Visuomotor rotations of varying size and direction compete for a single internal model in motor working memoryQ47186391
P304page(s)320
P577publication date2019-08-27
P1433published inCommunications BiologyQ60029756
P1476titlePost-training TMS abolishes performance improvement and releases future learning from interference
P478volume2

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