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China develops first neural probe to record activity in macaque brain

CGTN

An illustration shows how a high-density, 1,024-channel neural probe, achieves a full-depth recording of neuronal activities in the brain of a macaque monkey. /Peking University
An illustration shows how a high-density, 1,024-channel neural probe, achieves a full-depth recording of neuronal activities in the brain of a macaque monkey. /Peking University

An illustration shows how a high-density, 1,024-channel neural probe, achieves a full-depth recording of neuronal activities in the brain of a macaque monkey. /Peking University

Chinese researchers have developed a high-density, 1,024-channel neural probe, achieving a full-depth recording of neuronal activities in the brain of a macaque monkey for the first time in the world.

The research team led by Duan Xiaojie at Peking University designed and produced the probe named Neuroscroll, which isolates single neuronal activities simultaneously from 1,024 densely spaced channels flexibly distributed across the probe.

The probe length is tunable from 1 cm to 10 cm, covering the brain sizes ranging from those of rodent species to primates.

The team used the probes to achieve simultaneous monitoring of the activities of over 700 single neurons covering the entire depth of the macaque monkey brain. In addition, they have realized stable neural recording in the rat brain for up to two years, demonstrating the excellent biocompatibility and long-term recording stability of the probe, said Duan.

The achievement was published online on Monday in the journal Nature Neuroscience.

A screenshot of the study published in the journal Nature Neuroscience, June 24, 2024.
A screenshot of the study published in the journal Nature Neuroscience, June 24, 2024.

A screenshot of the study published in the journal Nature Neuroscience, June 24, 2024.

Cheng Heping, director of the National Biomedical Imaging Center at Peking University, said that the breakthrough provides a powerful tool for simultaneously monitoring neuronal activities across multiple brain regions and exploring the relationship between neural activities and behavioral studies.

By implanting multiple probes, it will be possible to further achieve neural recordings from up to tens of thousands of channels, which will bring transformative impacts to basic neuroscience and translational neuroscience research, such as brain-machine interfaces, said Cheng.

Source(s): Xinhua News Agency
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