sözaltı news Science
Science
EN AZ
Decode the chatter of birds with a neuroscientist

Decode the chatter of birds with a neuroscientist

phys.org 21.08.2026 00:20 33 baxış
If you're not a bird person, you may not be able to distinguish between the different sounds birds make. Birdsong—the courting and territorial vocalization of songbirds—has been studied for decades, but less is understoo

This article has been reviewed according to Science X's editorial process and policies. Editors have highlighted the following attributes while ensuring the content's credibility: If you're not a bird person, you may not be able to distinguish between the different sounds birds make. Birdsong—the courting and territorial vocalization of songbirds—has been studied for decades, but less is understood about bird chatter, or the other chirps made by all flock members throughout the day.

Now, we have new insights into the meanings of their chatter, thanks to Julie Elie, an associate project scientist in Berkeley's Department of Neuroscience. Elie has spent years listening to the zebra finch, a small, social songbird. Her patient studies have yielded new insights into the language of the tiny finches.

"Every day I'm coming to work and I'm trying to find out, okay, what is this animal telling me?" Elie says. Originally from France, she says she's always been interested in how animals communicate. She visited wild zebra finches in the Australian outback, spending weeks patiently recording their chatter, but found herself limited by field constraints (songbirds move around a lot!).

Identifying and understanding the contexts of the sounds she was hearing were key to unlocking their language but mostly inaccessible. Back on campus, in aviaries, it became easier to connect vocalizations to birds' behaviors. Elie was able to compile an audio dictionary of zebra finches' "words," or call types, describing their specific meanings, such as hunger, distress, alarm or a need for contact.

She then put her dictionary to the test and directly asked the birds, using operant vocalization-classification tasks that rewarded songbirds when they completed them. As she and her team slowly and systematically deepened their understanding of the information conveyed by these finch vocalizations, they were able to validate their dictionary. Comparing the performance of birds in the classification task with that of AI, they demonstrated that finches' perception of vocalizations goes beyond the acoustic properties of sounds.

While birds have a true understanding of their vocalizations, AI hears only meaningless chatter—and that leads to different responses, indicating that finches have a mental representation of the meaning of their vocalizations. The very human, multimodal observations of finches' behaviors were key to understanding their vocalizations. "Now, I can come into a colony, and I listen to the chat, and I can hear what's going on," Elie says with a smile.

Extract — continue reading at the source.

Read full story