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Recently, A Neurotech company Paradromics is said to have made headlines by successfully transplanting his brain-computer interface (BCI) in a human for the first time. The process took place during regular epilepsy surgery of a patient at the University of Michigan.
The device was placed in about 20 minutes and removed, a quick change for such complex techniques. This achievement is a great thing for paradromics, which has been working on this brain transplant technique for about 10 years.
This shows that its system can be safely transplanted into the brain and actually recorded nerve activity. With this milestone, the company is moving beyond research clinical trialsTesting long -term security and everyday use of their devices in people.
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Brain-computer interface (Paradromics)
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A brain-computer interface is a gadget that reads the signs of the brain and transforms them into orders for computer or other devices. Paradromics The version, connexus, is designed to help people with severe movement problems, such as due to paralysis, communicate using your ideas to control the computer.
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The device is still in the research phase and has not been approved by regulators. But recently transplant is a big step.
The company’s founder and CEO, Matt Angle said, “We are already shown in animals that our device is the top level for data quality and durability.” “Now, we have shown that it also works in humans, which actually creates speed for our upcoming clinical testing.”
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Inside Connexus BCI: is it standing outside
Connexus BCI stands out because it is an engineer for durability and is packed with state -of -the -art features. One of its most notable innovations contains 421 microelectrodes, each is thinner than a human hair, which allows the device to capture signs from individual brain cells with impressive accuracy. These electrodes are placed in a body made of titanium and platinum-iridium, materials that are widely reliable in medical transplants for their safety and compatibility with the human body, ensuring that the device is suitable for long-term use.
The indications detected by the electrode travel to a compact device transplanted from the brain to the chest, which then wirelessly leads the data to the exterior computer or gadget. Advanced AI and language models process this information, translate the user’s neural activity into speech or text, so people with severe motor loss can directly communicate or control digital devices with their ideas.
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How Connexus Bci works: step step by step
Connexus BCI replaces the brain activity through a simple yet sophisticated series in digital action, each is designed to make communication comfortable for people with severe motor losses.
Transplant the device: A surgeon holds Conxus BCI under the skin, uses techniques that are already well established in therapy.
Capture the signs of the brain: The small electrodes of the device pick up the signal from individual neurons in the motor cortex.
Send data to the chest: These signs travel to a small tool in the chest with a thin wire.
Wireless Transmission: The chest device sends data to a computer or smartphone in a wireless manner.
Turn ideas into words: Advanced software finds out what the user wants or wants to say and translates it to speech, text or digital command.
For those who cannot speak or move due to conditions like ALS or stroke, the technique of parsomix can be life-changing. This can communicate them at a natural speed and even control the computer with their ideas.
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Team behind success
The process was led by Professor of Neurosurgery, Dr. Oren Sagher was done, and Dr. Dr. Dr. Dr. Dr. Dr. Dr. Dr. Dr. Dr. Matthew Vilesi. His team includes both doctors and engineers, making sure that the implant was done safely and effectively. Dr. Wilsi shared that the Paradromics device has four times more than the number of sensors than other devices near the device, which means that it can capture a much more wide brain activity.
Brain-computer interface (Paradromics)
Paradromics vs other neurotech companies
Paradromics is not just a company working on a brain-computer interface. Others, such as NeurlinkSynchron and accurate neurosciences are also progressing. Each has a slightly different view, but paradromics focus on the recording of activity from individual brain cells, which can lead to more natural communication for people with paralysis. The founder compared the approach to installing a microphone inside a stadium instead of outside. Inside, you listen to every conversation. Outside, you just hear the noise of the crowd.
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Brain-computer interface (Paradromics)
Funding, partnership, and what’s coming next
Paradromics has so far raised around $ 100 million and has recently worked with Saudi Arabia’s Neom. The company is also part of a special FDA program that helps in speeding up the development of success medical equipment. Later this year, Paradromics planned to initiate a clinical test for people with severe movement problems from ALS, spinal cord injury or stroke. The goal is to help them communicate freely using digital devices.
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Brain-computer interface (Paradromics)
Kurt’s major takeaways
The first human transplant of paradromics is a big moment for the field of neurotechnology. While the device is still in the research phase, this successful test suggests that it is possible to use advanced brain-computer interface safely and effectively in people. As paradromics and other companies continue to move forward, the future looks promising to people with severe motor loss. The ability to communicate and interact with the world in new ways is closer than ever, and it is worth talking.
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