A Stroke Survivor Speaks Again with the Help of an Experimental Brain-Computer Implant

The scientists used a synthesizer they built using her voice before her injury to create a speech sound that she would have spoken. (Getty Images)
The scientists used a synthesizer they built using her voice before her injury to create a speech sound that she would have spoken. (Getty Images)
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A Stroke Survivor Speaks Again with the Help of an Experimental Brain-Computer Implant

The scientists used a synthesizer they built using her voice before her injury to create a speech sound that she would have spoken. (Getty Images)
The scientists used a synthesizer they built using her voice before her injury to create a speech sound that she would have spoken. (Getty Images)

Scientists have developed a device that can translate thoughts about speech into spoken words in real time.

Although it’s still experimental, they hope the brain-computer interface could someday help give voice to those unable to speak.

A new study described testing the device on a 47-year-old woman with quadriplegia who couldn’t speak for 18 years after a stroke. Doctors implanted it in her brain during surgery as part of a clinical trial.

It "converts her intent to speak into fluent sentences," said Gopala Anumanchipalli, a co-author of the study published Monday in the journal Nature Neuroscience.

Other brain-computer interfaces, or BCIs, for speech typically have a slight delay between thoughts of sentences and computerized verbalization. Such delays can disrupt the natural flow of conversation, potentially leading to miscommunication and frustration, researchers said.

This is "a pretty big advance in our field," said Jonathan Brumberg of the Speech and Applied Neuroscience Lab at the University of Kansas, who was not part of the study.

A team in California recorded the woman’s brain activity using electrodes while she spoke sentences silently in her brain. The scientists used a synthesizer they built using her voice before her injury to create a speech sound that she would have spoken. They trained an AI model that translates neural activity into units of sound.

It works similarly to existing systems used to transcribe meetings or phone calls in real time, said Anumanchipalli, of the University of California, Berkeley.

The implant itself sits on the speech center of the brain so that it’s listening in, and those signals are translated to pieces of speech that make up sentences. It’s a "streaming approach," Anumanchipalli said, with each 80-millisecond chunk of speech – about half a syllable – sent into a recorder.

"It’s not waiting for a sentence to finish," Anumanchipalli said. "It’s processing it on the fly."

Decoding speech that quickly has the potential to keep up with the fast pace of natural speech, said Brumberg. The use of voice samples, he added, "would be a significant advance in the naturalness of speech."

Though the work was partially funded by the National Institutes of Health, Anumanchipalli said it wasn't affected by recent NIH research cuts. More research is needed before the technology is ready for wide use, but with "sustained investments," it could be available to patients within a decade, he said.



SHAMS Engages Community with New Coral Initiative for Red Sea Protection

SHAMS Engages Community with New Coral Initiative for Red Sea Protection
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SHAMS Engages Community with New Coral Initiative for Red Sea Protection

SHAMS Engages Community with New Coral Initiative for Red Sea Protection

The General Organization for the Conservation of Coral Reefs and Turtles in the Red Sea (SHAMS) is set to launch a new environmental initiative titled “Adopt a Coral” this Saturday. The initiative aims to involve community members in the restoration of coral reefs and raise awareness of the importance of their sustainability as part of national efforts to protect the Kingdom’s marine environment.

This initiative aligns with SHAMS’ goals of enhancing community partnership and increasing public involvement in marine conservation. It also supports Saudi Vision 2030’s sustainability objectives and complements national programs such as the Saudi Green Initiative, which aims to reduce ecosystem degradation and preserve biodiversity, SPA reported.

SHAMS emphasized that the initiative is the result of years of field experience in coral reef restoration. The organization has demonstrated its capabilities in accurately identifying degraded reef areas using scientific indicators, developing innovative restoration techniques, and implementing long-term monitoring programs to assess ecological recovery.

The “Adopt a Coral” initiative offers various opportunities for public participation, including hands-on involvement in coral planting following specialized field training, attending awareness workshops and events that highlight threats to coral reefs such as climate change and marine pollution.

These opportunities empower the diving community to engage in reef monitoring and environmental advocacy, and foster a shared sense of responsibility by enabling individuals and groups to “adopt” coral as a symbol of ongoing environmental commitment.

The first phase of the initiative will be carried out at a designated coral reef site along the Red Sea coast, with participation from volunteers, divers, and environmental enthusiasts. SHAMS plans to expand the initiative in future phases to ensure long-term ecological impact and sustainable community engagement.

Coral reefs in the Red Sea are a vital artery for marine ecosystems, a rich source of biodiversity, and a key driver of economic and eco-tourism activity. In response to growing environmental challenges, the initiative emerges as a forward-thinking model of community engagement in the restoration of sensitive ecosystems. Through this program, SHAMS seeks to redefine environmental protection by directly connecting the public with the stewardship of this valuable natural resource.