Can we decode the language of our primate cousins?

Are we able to differentiate between the vocal emissions of certain primates? A team asked volunteers to categorize the vocalizations of three species of great apes (Hominidae) and humans. During each exposure to these ''onomatopoeia'', brain activity was measured. Unlike previous studies, the scientists reveal that phylogenetic proximity -- or kinship -- is not the only factor influencing our ability to identify these sounds. Acoustic proximity -- the type of frequencies emitted -- is also a determining factor. These results show how the human brain has evolved to process the vocal emissions of some of our closest cousins more efficiently.

Can we decode the language of our primate cousins?
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Are we able to differentiate between the vocal emissions of certain primates? A team asked volunteers to categorize the vocalizations of three species of great apes (Hominidae) and humans. During each exposure to these ''onomatopoeia'', brain activity was measured. Unlike previous studies, the scientists reveal that phylogenetic proximity -- or kinship -- is not the only factor influencing our ability to identify these sounds. Acoustic proximity -- the type of frequencies emitted -- is also a determining factor. These results show how the human brain has evolved to process the vocal emissions of some of our closest cousins more efficiently.

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