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Anyone who has ever learned a foreign language knows how laborious it is to acquire vocabulary and grammar. In contrast, children acquire their first language seemingly effortlessly. By the age of four, many children are already speaking without errors and can draw on a large vocabulary. But how can the brain accomplish this? In a study published in the journal "Cerebral Cortex", scientists from MPI CBS now describe that the development of language ability in three to four year olds is accompanied by the maturation of brain areas within the same language network that is also responsible for understanding and producing language in adults.
Grammar is essential to our linguistic understanding. Why? Individual words carry the meaning of the sentence, but it is grammar that puts the words in relation to each other and in their proper place. In the statement "That the dog the rabbit push," where only the basic form of the words is used, we might guess that the dog pushed the rabbit. Only when we apply grammatical rules and form the sentence "The dog that the rabbit pushed" from the same words, it becomes clear, exactly the opposite is the case. Children have to learn these rules first and master them without anyone explaining it to them explicitly. "By their third birthday, children can already use simpler rules, but it is not until the age of four that they begin to understand and produce more complicated sentences. With our study, we wanted to find out which maturation processes in the brain accompany this milestone in language development," says Cheslie C. Klein from the Max Planck Institute for Human Cognitive and Brain Sciences in Leipzig. Together with her colleagues from the Department of Neuropsychology and the research group Milestones of Early Cognitive Development, she studied the grammar level of children between the ages of three and four, both in understanding and speaking sentences, using different language games.
In addition to language ability, an image of the children's brains was taken in a magnetic resonance imaging (MRI) scanner to determine the maturity of specific brain areas. The researchers observed that the development of the children's general and grammatical language abilities were accompanied by the maturation of brain structures within the so-called 'language network'. "In adults, it has been repeatedly shown that different brain areas in this network work together to enable language comprehension and production. The results of our study show that the maturation of the language network also supports general language and specifically grammar acquisition in children between the ages of three and four," explains Cheslie C. Klein, who is first author of the study.
Angela D. Friederici, director of the Department of Neuropsychology at MPI CBS and co-author of the study, highlights, "It was particularly exciting for us to see that the maturation of a specific brain region—which is considered the core region for grammar—was related to the grammar skills of four-year-old children, but not to those of three-year-olds. Children do not learn to understand and produce more complex sentence structures until the age of four. So our results suggest that this milestone in language acquisition is only made possible by the support of Broca's area in the processing of complex grammar. Thus, our findings provide new insight into the neural processes that contribute to successful language development. Findings like these are very important because they also provide a better understanding of developmental delays or even disorders in language acquisition.”
Cheslie C. Klein
doctoral researcher
cklein@cbs.mpg.de
Cheslie C Klein, Philipp Berger, Tomás Goucha, Angela D Friederici, Charlotte Grosse Wiesmann
Children’s syntax is supported by the maturation of BA44 at 4 years, but of the posterior STS at 3 years of age
Cerebral Cortex
https://doi.org/10.1093/cercor/bhac430
https://www.cbs.mpg.de/2070954/news_publication_19584930_transferred?c=7533
The scientists studied the grammar level of children between the ages of three and four, using diffe ...
Source: MPI CBS
Copyright: MPI CBS
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