
Precision Neuroscience
Precision neuroscience is developing brain-computer interfaces (bcis).
Date | Investors | Amount | Round |
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- | investor investor investor investor investor | €0.0 | round |
investor investor | €0.0 | round | |
N/A | €0.0 | round | |
N/A | €0.0 Valuation: €0.0 | round | |
investor investor investor investor | €0.0 | round | |
* | N/A | Late VC | |
Total Funding | 000k |
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Precision Neuroscience is a cutting-edge startup operating in the neural engineering sector. The company's primary focus is on the development and implementation of high-resolution electrode arrays, which are part of a complete, implantable system designed to create a seamless connection between the human brain and a computer. This technology is aimed at restoring freedom to individuals suffering from paralysis by enabling them to operate digital devices through the decoding of their neural signals.
The company's innovative approach involves a novel, minimally invasive cranial micro-slit technique for implanting the electrode arrays. This method is designed to be fully reversible and non-damaging to brain tissue, with the arrays configured to conform to the surface of the brain, maximizing bandwidth.
Precision Neuroscience's business model revolves around the manufacturing and sale of these brain-computer interfaces. The company recently acquired a manufacturing facility in Dallas, allowing it to oversee the end-to-end fabrication of its microelectrode array while iterating quickly on product development. This strategic move indicates the company's commitment to quality control and rapid innovation.
The company has also recently completed its first-in-human procedures for a pilot clinical study of its neural implant system, marking a significant milestone in its journey. Founded in 2021 by a co-founder of Neuralink, Elon Musk’s brain-computer interface startup, Precision Neuroscience is carving out a niche in the market, serving patients with paralysis and potentially revolutionizing the way we interact with digital devices.
Keywords: Precision Neuroscience, Neural Engineering, Brain-Computer Interface, High-Resolution Electrode Arrays, Minimally Invasive Surgery, Paralysis, Digital Devices, Neural Signals, Manufacturing Facility, Clinical Study.