Javascript must be enabled to continue!
Motor Cortex Causally Contributes to Vocabulary Translation following Sensorimotor-Enriched Training
View through CrossRef
The role of the motor cortex in perceptual and cognitive functions is highly controversial. Here, we investigated the hypothesis that the motor cortex can be instrumental for translating foreign language vocabulary. Human participants of both sexes were trained on foreign language (L2) words and their native language translations over 4 consecutive days. L2 words were accompanied by complementary gestures (sensorimotor enrichment) or pictures (sensory enrichment). Following training, participants translated the auditorily presented L2 words that they had learned. During translation, repetitive transcranial magnetic stimulation was applied bilaterally to a site within the primary motor cortex (Brodmann area 4) located in the vicinity of the arm functional compartment. Responses within the stimulated motor region have previously been found to correlate with behavioral benefits of sensorimotor-enriched L2 vocabulary learning. Compared to sham stimulation, effective perturbation by repetitive transcranial magnetic stimulation slowed down the translation of sensorimotor-enriched L2 words, but not sensory-enriched L2 words. This finding suggests that sensorimotor-enriched training induced changes in L2 representations within the motor cortex, which in turn facilitated the translation of L2 words. The motor cortex may play a causal role in precipitating sensorimotor-based learning benefits, and may directly aid in remembering the native language translations of foreign language words following sensorimotor-enriched training. These findings support multisensory theories of learning while challenging reactivation-based theories.SIGNIFICANCE STATEMENTDespite the potential for sensorimotor enrichment to serve as a powerful tool for learning in many domains, its underlying brain mechanisms remain largely unexplored. Using transcranial magnetic stimulation and a foreign language (L2) learning paradigm, we found that sensorimotor-enriched training can induce changes in L2 representations within the motor cortex, which in turn causally facilitate the translation of L2 words. The translation of recently acquired L2 words may therefore rely not only on auditory information stored in memory or on modality-independent L2 representations, but also on the sensorimotor context in which the words have been experienced.
Title: Motor Cortex Causally Contributes to Vocabulary Translation following Sensorimotor-Enriched Training
Description:
The role of the motor cortex in perceptual and cognitive functions is highly controversial.
Here, we investigated the hypothesis that the motor cortex can be instrumental for translating foreign language vocabulary.
Human participants of both sexes were trained on foreign language (L2) words and their native language translations over 4 consecutive days.
L2 words were accompanied by complementary gestures (sensorimotor enrichment) or pictures (sensory enrichment).
Following training, participants translated the auditorily presented L2 words that they had learned.
During translation, repetitive transcranial magnetic stimulation was applied bilaterally to a site within the primary motor cortex (Brodmann area 4) located in the vicinity of the arm functional compartment.
Responses within the stimulated motor region have previously been found to correlate with behavioral benefits of sensorimotor-enriched L2 vocabulary learning.
Compared to sham stimulation, effective perturbation by repetitive transcranial magnetic stimulation slowed down the translation of sensorimotor-enriched L2 words, but not sensory-enriched L2 words.
This finding suggests that sensorimotor-enriched training induced changes in L2 representations within the motor cortex, which in turn facilitated the translation of L2 words.
The motor cortex may play a causal role in precipitating sensorimotor-based learning benefits, and may directly aid in remembering the native language translations of foreign language words following sensorimotor-enriched training.
These findings support multisensory theories of learning while challenging reactivation-based theories.
SIGNIFICANCE STATEMENTDespite the potential for sensorimotor enrichment to serve as a powerful tool for learning in many domains, its underlying brain mechanisms remain largely unexplored.
Using transcranial magnetic stimulation and a foreign language (L2) learning paradigm, we found that sensorimotor-enriched training can induce changes in L2 representations within the motor cortex, which in turn causally facilitate the translation of L2 words.
The translation of recently acquired L2 words may therefore rely not only on auditory information stored in memory or on modality-independent L2 representations, but also on the sensorimotor context in which the words have been experienced.
Related Results
Linking lesions in sensorimotor cortex to contralateral hand function in multiple sclerosis: a 7 T MRI study
Linking lesions in sensorimotor cortex to contralateral hand function in multiple sclerosis: a 7 T MRI study
AbstractCortical lesions constitute a key manifestation of multiple sclerosis and contribute to clinical disability and cognitive impairment. Yet it is unknown whether local cortic...
Cerebral structures participating in motor preparation in humans: a positron emission tomography study
Cerebral structures participating in motor preparation in humans: a positron emission tomography study
1. Using positron emission tomography and measurement of regional cerebral blood flow (rCBF) as an index of cerebral activity we investigated the central processing of motor prepar...
Perbandingan Kinerja Perusahaan Dengan Metode Balanced Scorecard
Perbandingan Kinerja Perusahaan Dengan Metode Balanced Scorecard
The purpose of this study is to compare the performance of two Honda service companies with the Balanced Scorecard method. The research locations are Aneka Motor Denpasar and Niki ...
Thalamic projections to sensorimotor cortex in the macaque monkey: Use of multiple retrograde fluorescent tracers
Thalamic projections to sensorimotor cortex in the macaque monkey: Use of multiple retrograde fluorescent tracers
AbstractWe used several fluorescent dyes (Fast Blue, Diamidino Yellow, Rhodamine Latex Microspheres, Evans Blue, and Fluoro‐Gold) in each of eight macaques, to examine the patterns...
SPECIFIC TRAITS OF HUNGARIAN-UKRAINIAN POETRY TRANSLATION (BASED ON YURII SHKROBYNETS’ TRANSLATIONS)
SPECIFIC TRAITS OF HUNGARIAN-UKRAINIAN POETRY TRANSLATION (BASED ON YURII SHKROBYNETS’ TRANSLATIONS)
The article addresses matters related to the peculiarities of Hungarian-Ukrainian poetic translation. It was noted that the quality, complexity and overall mastery of literary tran...
Translation
Translation
The theoretical, empirical, and pedagogic study of translation is the concern of the interdisciplinary and international field of scholarship known, since 1972, as translation stud...
Sensorimotor learning and associated visual perception are intact but unrelated in autism spectrum disorder
Sensorimotor learning and associated visual perception are intact but unrelated in autism spectrum disorder
Humans show an astonishing capability to learn sensorimotor behaviours. However, data from sensorimotor learning experiments suggest the integration of efferent sensorimotor comman...
Visual Sensory Cortices Causally Contribute to Auditory Word Recognition Following Sensorimotor-Enriched Vocabulary Training
Visual Sensory Cortices Causally Contribute to Auditory Word Recognition Following Sensorimotor-Enriched Vocabulary Training
Abstract
Despite a rise in the use of “learning by doing” pedagogical methods in praxis, little is known as to how the brain benefits from these methods. Learning by...

