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BackFormer OpenAI Researcher Joins Conduit to Pursue 'Telepathy' with Neural AI Models
Former OpenAI Researcher Joins Conduit to Pursue 'Telepathy' with Neural AI Models
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CryptoSlate2 days agoTech2 min read

Former OpenAI Researcher Joins Conduit to Pursue 'Telepathy' with Neural AI Models

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Naomi Bashkansky, a former OpenAI alignment researcher, joins Conduit as a founding researcher to develop neural AI models that can interpret non-invasive neural recordings into text, aiming for 'telepathy' capabilities by 2035.

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Why It Matters

Conduit aims to develop non-invasive brain-computer interfaces for controlling AI agents.

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Former OpenAI alignment researcher Naomi Bashkansky said she resigned from the AI company on July 23 and joined Conduit the next day as a founding researcher. At Conduit, she will work on models designed to turn non-invasive neural recordings into text that can direct AI agents, a goal her essay calls “telepathy.” Bashkansky said she spent about 1.5 years at OpenAI, and described the new role in an Aug. 4 essay. She predicted that a headband could decode rough intentions into prompts for an AI coding agent in 2027. Her later scenarios envision AI systems consuming neural representations directly by 2030 and two-way “read and write” technology by 2035. She called those vignettes optimistic predictions, and the essay includes no launch commitment for any of them. The data-scale bet In a December 2025 account, Conduit said it had gathered roughly 10,000 hours of neuro-language data from thousands of people. Participants wore multimodal headsets while typing, speaking, reading or listening during sessions with a language model. The company published a few claimed zero-shot examples, excluding aggregate performance metrics, its evaluation protocol or third-party replication. Bashkansky argued that Conduit’s results improve with increasing training hours and described the work as a greenfield alternative to the narrower research she could pursue at OpenAI. Meta reported in June that the results of its latest Brain2Qwerty reached 61% average word accuracy and 78% for its best participant, with performance improving log-linearly as data increased. The experiment recorded nine people with magnetoencephalography while they actively typed sentences. Where current systems fall short A Nature Communications study spanning 723 participants also found that performance improved with more EEG and MEG data. Yet it studied people reading or listening rather than producing language, and reported 20% top-1 accuracy in a 50-word comparison. The study's authors said practical non-invasive brain-to-text remained an open challenge. Conduit’s next evidentiary hurdle is to establish public aggregate performance by linking its 10,000-hour dataset to a portable system that decodes free-form thought. The company has not yet shown that result.

What to Watch

AI outlook — possibilities, not facts

  • Conduit will demonstrate portable system decoding free-form thought by 2027

    Possible · Within years

Open Questions

  • Will Conduit achieve its projected milestones?
  • How does Conduit's approach compare to other brain-computer interface research?

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This article was originally published by CryptoSlate.

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