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Neuralink, Paradromics, And Synchron Brain-Computer Interface Technology

Has Neuralink made a breakthrough in brain implant technology?

Elon Musk's brain-computer interface firm Neuralink has released information about its first patient, Noland Arbaugh, controlling a computer cursor with his thoughts - is this the future?

Neuralink, the brain-computer interface company founded by Elon Musk, has revealed the identity of its first patient, who says the firm’s implant has “changed his life”. However, it isn’t yet clear that Neuralink has done anything beyond replicating existing research efforts, experts say.

Who is Neuralink’s first patient?

Musk announced in January that the first human patient had received a Neuralink implant, but little detail was released at the time. We now know – from a livestream video by the company – who that individual is and how the tests are going.

Noland Arbaugh explains in the video that an accident eight years ago dislocated his fourth and fifth vertebrae, leaving him with quadriplegia. He previously controlled his computer with a mouth interface, but he is shown moving the cursor by thought alone, apparently with his Neuralink implant.

“It just became intuitive for me to start imagining the cursor moving,” says Arbaugh in the video. “Basically, it was like using ‘the force’ on the cursor and I could get it to move wherever I wanted, just stare somewhere in the screen and it would move where I wanted it to, which was such a wild experience.”

He claims to have been using the device to read, learn languages and play computer games, including chess, for up to 8 hours at a time – at which point he needs to recharge the device. “It’s not perfect, we have run into some issues. But it has already changed my life,” he says.

What does the implant involve?

Neuralink didn’t respond to a request for interview, but the company’s website says the current generation of coin-sized implant called N1 records neural activity through 1024 electrodes distributed across 64 threads that extend into the user’s brain. These are so fine that they must be installed by a surgical robot.

In the livestream video, Arbaugh says he was released from hospital the day after the implant operation and that the surgery was a relatively simple process from his point of view.

The implant, whose small battery is charged through the skin by an inductance charger, communicates wirelessly with an app on a smartphone.

Does this mean the first human trial has worked?

Reinhold Scherer at the University of Essex, UK, says it is too early to tell if Neuralink’s first human trial has succeeded because the company “does not publish enough information to form an informed opinion”.

“While the video looks impressive and no doubt required a lot of hard R&D work to get to this stage, it’s unclear whether what’s been shown is new or groundbreaking,” he says. “Control looks to be stable, but most of the research and experiments they have showed so far are mainly replicating past research. Replication is good, but there are still major challenges ahead.” Who else is working on brain implants?

Neuralink is far from the only group investigating this idea. Many academic groups and commercial start-ups have already run human trials and succeeded in correctly interpreting brain signals into some kind of output.

One team at Stanford University in California placed two small sensors just under the surface of the brain of a man who is paralysed below the neck. Researchers could interpret the man’s brain signals when he thought of writing words with a pen on paper, and convert them into readable text on a computer.

We are a long way from this being a commercial product, with lots of testing and accreditation ahead, so it is too early to tell. But Musk has made it clear that he intends to commercialise the technology. The first planned product, named Telepathy, will allow anyone with an implant to control their phones and computers.


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Elon Musk’s Neuralink raises $650 million in fresh capital

Elon Musk’s brain tech startup Neuralink has closed a $650 million funding round, the company announced Monday.

ARK Invest, Founders Fund, Sequoia Capital, Thrive Capital, Lightspeed Venture Partners and other firms participated in the round, according to a press release. Neuralink said the fresh capital will help the company bring its technology to more patients and develop new devices that “deepen the connection between biological and artificial intelligence.”

Neuralink is building a brain-computer interface, or BCI, which is a system that translates brain signals into commands for external technologies.

The company’s first system, called Telepathy, involves 64 “threads” that are inserted directly into the brain. The threads are thinner than a human hair and record neural signals through 1,024 electrodes, according to Neuralink’s website.

The initial aim of the technology is to help patients with severe paralysis restore some independence. As of Monday, five patients have been implanted with Neuralink’s technology, and are able to “control digital and physical devices with their thoughts,” the release said.

Neuralink is currently carrying out four separate clinical trials around its Telepathy system.

BCIs have been studied in academia for decades, and several other companies, including Synchron, Paradromics and Precision Neuroscience, are developing their own systems.

Paradromics on Monday announced it successfully implanted its BCI in a human for the first time.

It’s not clear what devices Neuralink will look to develop next, but Musk has for years espoused grand ambitions for the brain tech startup. He has even claimed that he would be willing to get an implant himself.

One of the capabilities Musk has repeatedly highlighted is the ability to restore vision to blind patients.

Neuralink received a “Breakthrough Device” designation from the U.S. Food and Drug Administration for a device called Blindsight. This designation is granted to medical devices that have the potential to provide improved treatment for debilitating or life-threatening conditions.

In a post on his social media platform X in September, Musk said Blindsight will enable even those who have lost both eyes and their optic nerve to see.

Neuralink still has a long road ahead before it can commercialize these technologies.


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What Is Neuralink? What We Know So Far.

The Neuralink implant is a surgically-implanted brain-computer interface device designed to let users control a computer or mobile device using their brain activity. It is developed by Neuralink, a neurotechnology company founded by Elon Musk.

Neuralink is a neurotechnology company founded by Elon Musk that has built an implantable, brain-computer interface (BCI) capable of translating thought into action. Launched in 2016, the private venture claims its neural device will allow people with paraplegia to regain movement and restore vision to those born blind.

What Is Neuralink?

Neuralink is a company founded by Elon Musk in 2016 that’s developed a brain-computer interface (BCI) device called the N1 Implant or “the Link,” which is a surgically embedded neural-chip implant designed to decode and stimulate brain activity.

Neuralink implanted its first device in a patient’s brain in January 2024. The patient, who is paralyzed below the shoulders, has used the Neuralink device to play chess and is now using it to learn French and Japanese.

What Is Neuralink?

Neuralink is a neurotechnology company that has built a BCI device “designed to connect human brains directly to computers,” said Ramses Alcaide, CEO of Neurable, a neurotech company developing non-invasive, brain-computer interfaces in the form of headphones. “[Neuralink’s technology] is capable of recording and decoding neural signals and then transmitting information back to the brain using electrical stimulation.”

The implant is known as the N1 Implant or “the Link.” This coin-sized brain chip is surgically embedded under the skull, where it receives information from neural threads that fan out into different sections of a subject’s brain in control of motor skills. Each wire contains sensors capable of recording and emitting electrical currents that are “so fine that they can’t be inserted by the human hand,” according to Neuralink’s website. That’s why Neuralink has built a neurosurgical robot that’s designed to become fully automated.

The company has also developed a Neuralink-specific app that allows a person to manipulate a keyboard and mouse using only their mind.

“Neuralink is really at the vanguard of creating the commercialized, scalable versions of what has been pioneered in academia,” said Sumner Norman, a scientist at nonprofit startup Convergent Research and former chief brain-computer interface scientist at software firm AE Studio.

“There’s been decades of academic research to push this [field] as far as it can go,” he said, “but ultimately, it becomes a very expensive space to develop.”

How Does Neuralink Work?

Neuralink’s underlying technology works in the same way as electrophysiology, Norman explained.

The electrical chemical signals in our nervous system spark as neurons communicate with one another across gaps between nerve cells known as synapses. This brain activity is captured by electrodes, or sensors that detect voltages, measuring the change in “spikes” of when these voltages fire (or potentially fire).

In other words, our brain activity data is captured not only when we take action, but also if we think about taking action. That’s not to say the brain-computer interfacing that Neuralink does is on the same level as mind reading.

“It simply measures the brain activity and interprets it as an action,” said Sonal Baberwal, a Dublin City University-based researcher developing machine learning algorithms built into brain-computer interface wearables. “Similarly with your brain signals — eyes closed or opened, a relaxed or deep-sleep state, an action or focus state — all of these aspects can be detected.”

As these devices record complex data sets, machine learning algorithms and other artificial intelligence agents are then employed to make sense of the information.

What Will Neuralink Do?

According to Neuralink’s website, the company’s initial goal is to help those immobilized by paralysis regain lost communication skills. Down the line, it intends to pursue restoring motor, sensory and visual functions as well as treatment of neurological disorders.

“A Neuralink-like device has the potential to enhance human memory, processing speed and cognitive abilities by creating a direct interface between the human brain and digital devices,” Alcaide said.

Restore Mobility

Brain-computer interfaces can be used to control prosthetics or exoskeletons. This use case would enable people with paralysis or amputations to regain a certain level of mobility and independence, according to Alcaide.

Improve Communication for Non-Verbal Individuals

Neuralink’s main focus is to help people who are unable to speak or write communicate with others by allowing them to control a virtual mouse or keyboard or send messages by thought. For example, someone with paraplegia would be able to manipulate a computer or mobile device using speech or text synthesis to surf the web and create digital art.

Treat Neurological Conditions

By monitoring brain activity, brain-computer interfaces can also detect changes that may indicate neurological conditions such as epilepsy, bipolar disorder, obsessive-compulsive disorder, Alzheimer’s or Parkinson’s disease, Alcaide said.

They can also be used to monitor mental health symptoms. Electrical stimulation could be delivered to targeted areas in the brain as a treatment for burnout, fatigue, anxiety and depression, which, unlike motor skills that are localized to one area, are spread throughout the brain, Norman noted.

“Treating or curing paralysis, neurological disorders and injuries could make the world a substantially nicer place, where very few people have untreatable forms of depression or anxiety,” said Norman, who has spent a decade developing brain-computer interfaces and neuroprosthetics for people with neurological injury or disease. “Giving agency back to those who’ve lost it — that’s an undeniable benefit.”

Enhance Cognitive Abilities

This tech can also help people improve their focus, memory and attention by allowing them to train their brain using real-time biofeedback and other techniques. In Musk’s words, the Link is a sort of “Fitbit in your skull” with “all the sensors you’d expect to see in a smartwatch.”

“If suddenly you could get every neuron in the human brain and sense them all at once, what would you actually do with that data? We don’t know,” Norman said. “There’s 80 billion neurons in the brain with about 1,000 synapses in between them — how do you interpret that kind of data?”

Neuralink’s technology is currently detecting up to 10,000 of these connections — a big step up from the hundreds being studied in academic trials, Norman said.

Is Neuralink FDA Approved?

Yes. Neuralink announced on May 25, 2023, that it received U.S. Food and Drug Administration (FDA) clearance for an in-human clinical trial. The company began recruiting for the trial in September of 2023 and continues to provide PRIME Study progress updates on its blog page.

In May 2025, Neuralink also announced that it received Breakthrough Device Designation from the FDA, a program that aims to expedite the development, assessment and review of medical devices, helping them reach patients and healthcare providers more quickly. The designation for Neuralink in particular is to help the company restore communication for individuals with severe speech impairment — specifically those affected by amyotrophic lateral sclerosis (ALS), stroke, spinal cord injury, cerebral palsy, multiple sclerosis and other neurological conditions.

In other news, Precision Neuroscience, a brain-computer interface company and competitor to Neuralink, received FDA 510(k) clearance for its Layer 7 Cortical Interface BCI implant. The implant is intended to record, monitor and stimulate electrical activity on the surface of the brain for clinical applications, such as intraoperative brain mapping. Precision Neuroscience stated the FDA clearance “marks the first full regulatory clearance granted to a company developing a next-generation wireless BCI.”

Is Neuralink Being Used on Humans?

Yes. A human patient, 29-year-old Noland Arbaugh, received the first Neuralink implant on January 28, 2024. In a May 2024 blog post, Neuralink reported that, in the weeks following the surgery, Arbaugh had been successfully using the implant to control his laptop while lying down in bed. Although threads retracted from Arbaugh’s brain early on, they have since stabilized.

In August 2024, a second human patient named Alex also received the Neuralink implant, this time without any threads retracting. He has used Neuralink to play the first-person shooter game Counter-Strike 2, being able to simultaneously control a mouse and keyboard to perform more seamless gameplay.

In January 2025, Bradford Smith became the third human patient — plus the first patient with ALS and first non-verbal patient — to receive a Neuralink implant. Smith stated in a video on X that he cannot move a majority of his body due to ALS, though he is able to type, click, move his mouse cursor and even play Mario Kart with his thoughts by using Neuralink.

Frequently Asked Questions

What does Neuralink actually do?

Neuralink is a brain implant that can monitor and stimulate brain activity using electrical currents.

Neuralink aims to help people with paralysis communicate by allowing them to remotely control devices using brain activity. In the future, Neuralink may help enhance user memory and cognitive abilities, restore a user's motor, sensory and visual functions as well as treat neurological disorders.

What are the risks of Neuralink?

The potential risks of Neuralink include:

Brain injury or infection

Physical side effects like bleeding, headaches, nausea or seizures

Psychological side effects like mood changes

Allergic reaction to implanted materials

Movement of implanted threads and wires to other parts of the brain

Cybersecurity, hacking and privacy vulnerabilities

Unknown long-term effects of use

Who is eligible for Neuralink?

To be eligible for participation in the Neuralink clinical trial — known as the PRIME Study — participants must: Have quadriplegia (limited function in all 4 limbs) due to spinal cord injury or amyotrophic lateral sclerosis (ALS), and are at least 1-year post-injury (without improvement)

Be at least 22 years old

Have a consistent and reliable caregiver

How many humans have Neuralink?

As of May 2025, three people have received a Neuralink implant.

How expensive is a Neuralink?

There is currently no publicly available price for Neuralink and its required procedure. However, the Neuralink implant is estimated to cost $10,500 in examinations, parts and labor, with the cost from insurance companies expected to reach up to $50,000.


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Neuralink competitor Paradromics completes first human implant

Paradromics has implanted its brain-computer interface in a human for the first time.

The procedure took place at the University of Michigan with a patient who was already undergoing neurosurgery to treat epilepsy.

The company said the procedure demonstrated that its system can be safely implanted and record neural activity.

Neurotech startup Paradromics on Monday announced it has implanted its brain-computer interface in a human for the first time.

The procedure took place May 14 at the University of Michigan with a patient who was already undergoing neurosurgery to treat epilepsy. The company's technology was implanted and removed from the patient's brain in about 20 minutes during that surgery.

Paradromics said the procedure demonstrated that its system can be safely implanted and record neural activity. It's a major milestone for the nearly 10-year-old startup, as it marks the beginning of its next chapter as a clinical-stage company.

Once regulators give it the green light, Paradromics plans to kick off a clinical trial later this year that will study the long-term safety and use of its technology in humans.

"We've shown in sheep that our device is best in class from a data and longevity standpoint, and now we've also shown that it's compatible with humans," Paradromics founder and CEO Matt Angle told CNBC in an interview. "That's really exciting and raises a lot of excitement for our upcoming clinical trial."

A brain-computer interface, or BCI, is a system that deciphers brain signals and translates them into commands for external technologies. Paradromics' system is called the Connexus Brain-Computer Interface, and the company says it will initially help patients with severe motor impairments such as paralysis speak through a computer.

Paradromics' BCI has not been cleared by the U.S. Food and Drug Administration, and it still has a long road ahead before it reaches commercialization.

But for Angle, who founded the company in 2015, the procedure in May was a success, and one that was years in the making.

"You do all of these steps, you validate the hardware, you have this really high degree of rational certainty that things are going to work," he said, "but still emotionally when it works and when it happens the way you expected it to, it's still very, very gratifying."

Though Paradromics' BCI has not been officially cleared for use by regulators, organizations like the University of Michigan can use new devices for research as long as they can demonstrate that there is not a significant risk to patients.

Dr. Oren Sagher, professor of neurosurgery at the University of Michigan, oversaw the traditional clinical component of the procedure in May. Dr. Matthew Willsey, assistant professor of neurosurgery and biomedical engineering at the University of Michigan, led the research component, including the placement of Paradromics' device.

BCIs have been studied in academia for decades, and several other startups, including Elon Musk's Neuralink, are developing their own systems.

"It's absolutely thrilling," Willsey said in an interview. "It's motivating, and this is the kind of thing that helps me get up in the morning and go to work."

Each company's BCI is slightly different, but Paradromics is designing a BCI that can record brain activity at the level of individual neurons.

Angle compared this approach to placing microphones inside vs. outside a stadium. Inside a stadium, microphones would capture more detail, such as individual conversations. Outside a stadium, microphones would only capture the roar of the crowd, he said.

Other prominent BCI companies include Synchron, which is backed by Jeff Bezos and Bill Gates, and Precision Neuroscience. Both have implanted their systems in humans.

Paradromics has raised nearly $100 million as of February, according to PitchBook. The company announced a strategic partnership with Saudi Arabia's Neom in February, but declined to disclose the investment amount.

"The last demonstration stuff has been shown, and we're really excited about the clinical trial that's coming up," Angle said.


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Brain implant startup backed by Bezos and Gates is testing mind-controlled computing on humans

Synchron is part of an emerging crop of companies testing technology in the brain-computer interface industry.

The system is implanted through the blood vessels and allows patients to operate technology using only their minds.

“It helps them engage in ways that we take for granted,” Synchron CEO Tom Oxley said.

In a Brooklyn lab stuffed with 3D printers and a makeshift pickleball court, employees at a brain interface startup called Synchron are working on technology designed to transform daily life for people with paralysis.

The Synchron Switch is implanted through the blood vessels to allow people with no or very limited physical mobility to operate technology such as cursors and smart home devices using their mind. So far, the nascent technology has been used on three patients in the U.S. and four in Australia.

“I’ve seen moments between patient and partner, or patient and spouse, where it’s incredibly joyful and empowering to have regained an ability to be a little bit more independent than before,” Synchron CEO Tom Oxley told CNBC in an interview. “It helps them engage in ways that we take for granted.”

Founded in 2012, Synchron is part of the burgeoning brain-computer interface, or BCI, industry. A BCI is a system that deciphers brain signals and translates them into commands for external technologies. Perhaps the best-known name in the space is Neuralink, thanks to the high profile of founder Elon Musk, who is also the CEO of Tesla , SpaceX and Twitter.

But Musk isn’t the only tech billionaire wagering on the eventual transition of BCI from radical science experiment to flourishing medical business. In December, Synchron announced a $75 million financing round that included funding from the investment firms of Microsoft co-founder Bill Gates and Amazon founder Jeff Bezos.

‘More scalable’v In August 2020, the Food and Drug Administration granted Synchron the Breakthrough Device designation, which is for medical devices that have the potential to provide improved treatment for debilitating or life-threatening conditions. The following year, Synchron became the first company to receive an Investigational Device Exemption from the FDA to conduct trials of a permanently implantable BCI in human patients.

Synchron is enrolling patients in an early feasibility trial, which aims to show that the technology is safe to put in humans. Six patients will be implanted with Synchron’s BCI during the study, and Chief Commercial Officer Kurt Haggstrom said the company is currently about halfway through.

The company has no revenue yet, and a spokesperson said Synchron isn’t commenting on how much the procedure will eventually cost.

While many competitors have to implant their BCIs through open-brain surgery, Synchron relies on a less invasive approach that builds on decades of existing endovascular techniques, the company said.

Synchron’s BCI is inserted through the blood vessels, which Oxley calls the “natural highways” into the brain. Synchron’s stent, called the Stentrode, is fitted with tiny sensors and is delivered to the large vein that sits next to the motor cortex. The Stentrode is connected to an antenna that sits under the skin in the chest and collects raw brain data that it sends out of the body to external devices.

Peter Yoo, senior director of neuroscience at Synchron, said since the device is not inserted directly into the brain tissue, the quality of the brain signal isn’t perfect. But the brain doesn’t like being touched by foreign objects, Yoo said, and the less invasive nature of the procedure makes it more accessible.

“There’s roughly about 2,000 interventionalists who can perform these procedures,” Yoo told CNBC. “It’s a little bit more scalable, compared to, say, open-brain surgery or burr holes, which only neurosurgeons can perform.”

For patients with severe paralysis or degenerative diseases such as amyotrophic lateral sclerosis, or ALS, Synchron’s technology can help them regain their ability to communicate with friends, family and the outside world, whether through typing, texting or even accessing social media.

Patients can use Synchron’s BCI to shop online and manage their health and finances, but Oxley said what often excites them the most is text messaging.

“Losing the ability to text message is incredibly isolating,” Oxley said. “Restoring the ability to text message loved ones is a very emotional restoration of power.”

In December 2021, Oxley handed over his Twitter account to a patient named Philip O’Keefe, who has ALS and struggles to move his hands. About 20 months earlier, O’Keefe was implanted with Synchron’s BCI. v “hello, world! Short tweet. Monumental progress,” O’Keefe tweeted on Oxley’s page, using the BCI.

Synchron’s technology has caught the attention of its competitors. Musk approached the company to discuss a potential investment last year, according to a Reuters report. Synchron declined to comment about the report. Neuralink didn’t respond to a request for comment.

Neuralink is developing a BCI that’s designed to be inserted directly into the brain tissue, and while the company is not testing its device in humans yet, Musk has said he hopes it will do so this year.

Haggstrom said his company’s funding will help accelerate Synchron’s product development and push it toward a pivotal clinical trial that would bring the company closer to commercialization.

Khosla Ventures partner Alex Morgan, who led an earlier financing round, said that while Synchron’s device may seem like something out of science fiction, it’s grounded in “real science” and is already making a significant difference in patients’ lives.

“Synchron is actually helping people as of right now, today,” he said in an interview. “That, to me, is really exceptional.”

In January, the medical journal JAMA Neurology published the peer-reviewed, long-term safety results from a trial of Synchron’s BCI system in Australia. The study found that the technology remained safe and didn’t deteriorate in signal quality or performance over a 12-month period. v “That was a huge publication for us,” Haggstrom said.

Haggstrom said commercialization is key for all the players in the industry.

“I always like to be competitive, and so for me, being first to market is critical,” Haggstrom said. “We meet future patients to talk to about their needs and stuff, and so when you see that, and you talk to these families and the caregivers, you want to race as fast as you can to provide them assistance in their daily life.”


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ChatGPT

Neuralink, Paradromics, and Synchron Brain-Computer Interface Technology

Neuralink, Paradromics, and Synchron are three companies making significant strides in the development of brain-computer interface (BCI) technology, though each approaches the challenge with different techniques and goals.

Here’s an overview of each:

1. Neuralink

Founder: Elon Musk

Focus: Neuralink is one of the most well-known companies in the BCI space, aiming to create devices that allow for seamless communication between the brain and computers. Their goal is not only to assist people with severe neurological conditions (like paralysis) but also to eventually enhance human cognition and capabilities.

Technology:

Neural Lace: Neuralink is developing a "neural lace," a thin, flexible mesh that can be implanted into the brain. This device connects neurons to an external computer or device, allowing for real-time data transfer between the brain and the system.

Robotic Surgery: To implant these devices, Neuralink uses a robotic surgical system designed to insert the tiny electrodes with high precision, minimizing the risks associated with surgery.

Long-Term Goals: Neuralink’s long-term ambition is to help people with brain injuries or diseases (like ALS, stroke, or spinal cord injury) by enabling direct communication with computers or even controlling prosthetic limbs with thought. On an even more speculative level, Musk has mentioned the possibility of using the technology to merge human consciousness with AI, to ensure that humans can keep up with the progress of artificial intelligence.

Progress: Neuralink has demonstrated its technology with animal testing, showing the ability to read brain signals. In 2020, they showcased a pig with a Neuralink device, and in 2021, a monkey was shown playing video games using only its brain activity. However, human clinical trials are still ongoing.

2. Paradromics

Focus: Paradromics is focused on developing high-bandwidth brain-machine interfaces with an emphasis on medical applications. Their main goal is to help people who are completely paralyzed by enabling them to control devices and communicate through thought.

Technology:

High-Bandwidth Communication: Unlike some other BCI technologies that focus on simpler, lower-bandwidth signals (like motor control), Paradromics aims to capture a broad range of brain signals at a high bandwidth. This allows for much more detailed and nuanced control over devices, with the potential to restore complex functions like speech or even full limb control.

Brain-to-Machine Connectivity: Their system is designed to be able to decode complex patterns of neural activity and translate them into actionable commands, such as typing on a computer or controlling a robotic limb. They are working on creating a scalable system that could eventually enable people with neurological disorders to regain function.

Key Applications: Paradromics is targeting applications like deep brain stimulation (DBS) for conditions such as Parkinson’s disease, and they are also interested in advancing speech and communication restoration for those who have lost the ability to speak.

Progress: As of now, Paradromics is still in the early stages, focusing on refining their technology for clinical trials. They've shown some success with animal studies, and their technology holds promise for a wide range of neurological conditions.

3. Synchron

Focus: Synchron is another BCI company, but they are pursuing a slightly different approach than Neuralink. While Neuralink uses invasive surgery (with a robot to implant the device), Synchron is focusing on minimally invasive methods for brain-machine interfacing. Their product is designed to be implanted using a catheter through a vein in the neck, making it less invasive and potentially safer.

Technology:

Stentrode: Synchron's flagship product is the Stentrode, a device that is inserted into a blood vessel in the brain using a catheter. It works by capturing electrical signals from neurons as they pass through the vessel. The Stentrode is designed to decode these signals and use them to control external devices, such as computers or robotic arms.

Minimally Invasive: The primary advantage of Synchron’s approach is that it avoids the need for open-brain surgery. Instead, the device is inserted via a minimally invasive procedure, which could reduce risks and recovery time. This could make it a more viable option for patients who may not be suitable candidates for more invasive surgeries.

Applications: Synchron is focusing on helping patients with severe motor disabilities, particularly those suffering from conditions like ALS, where their ability to move or communicate is severely limited. The Stentrode allows them to potentially control devices using their brain activity, offering the possibility of improved quality of life.

Progress: Synchron has already conducted successful trials in humans. They have completed a small number of implantations in patients, and their technology has shown promise in early trials. For example, a patient with ALS was able to control a computer using their brain signals after the Stentrode implant.

Comparison and Key Differences

Invasiveness:

Neuralink: Invasive brain surgery with a robot implanting a flexible mesh (Neural Lace).

Paradromics: Also invasive but focuses on high-bandwidth signal capture.

Synchron: Minimally invasive, using a catheter-based implant (Stentrode) through blood vessels.

Technology Focus:

Neuralink: Primarily aims to enhance human cognition and interact with AI, along with medical applications.

Paradromics: Focuses on high-bandwidth BCIs for complex control and communication, especially for the disabled.

Synchron: Focuses on restoring mobility and communication in patients with severe motor disabilities, using a less invasive method.

Clinical Trials:

Neuralink: Limited human trials, still in early phases.

Paradromics: Early-stage animal research, planning for clinical trials.

Synchron: Already in human clinical trials with early positive results.

Future Implications

These companies are pushing the envelope of what's possible with brain-computer interfaces. Their ultimate goal could reshape the way humans interact with machines, potentially leading to:

Restoration of lost senses or motor functions: People with paralysis could regain movement, and those with speech impairments could communicate again.

Enhanced cognitive functions: While controversial, the idea of enhancing brain function or even merging human intelligence with AI is a tantalizing prospect that could alter what it means to be human.

New forms of therapy: BCIs could revolutionize the treatment of neurological conditions like Alzheimer's, Parkinson's, and epilepsy.

However, there are still challenges ahead, including technical limitations (like the longevity of implanted devices), ethical concerns, and the potential for unintended consequences in terms of privacy, autonomy, and accessibility.








Stargate Artificial Intelligence Project To Exclusively Serve OpenAI

Stargate, a high-profile artificial intelligence infrastructure will exclusively serve ChatGPT maker OpenAI, according to people familiar with the matter.

The venture planned to spend $100bn on Big Tech infrastructure projects, with the figure rising to as much as $500bn over the next four years, OpenAI and SoftBank, Stargate’s two main backers, said on Tuesday. Oracle and Abu Dhabi state AI fund MGX are also founding partners.

The SoftBank-backed initiative at a event attended by OpenAI chief Sam Altman and other tech executives was a resounding declaration of confidence in America’s potential.

“The intent is not to become a data centre provider for the world, it’s for OpenAI,” said one of the people.

SoftBank and OpenAI intend to put forward more than $15bn each for the project. The companies hope to raise a combination of equity from their existing backers and debt, which will be used to fund Stargate. Tokyo-based SoftBank will also inject existing funds into Stargate, according to one of the people.

OpenAI and SoftBank declined to comment.

Altman has spent well over a year working on boosting OpenAI’s access to data and computing power, a bottleneck he argues must be overcome if the company is to achieve its goal of creating AI capable of surpassing humans across most cognitive skills, supplanting them in the workforce and pushing the boundaries of scientific research.

That has meant looking beyond OpenAI’s exclusive relationship with Microsoft. The group, which has invested $13bn into OpenAI and is entitled to almost half the profits from the start-up’s for-profit subsidiary, is providing technological support to Stargate, but not capital.

Microsoft launched its own $30bn AI infrastructure fund with fund manager BlackRock in September last year, and on Wednesday chief executive Satya Nadella said his company would spend $80bn on infrastructure this year, separate from Stargate.

Altman had been speaking to SoftBank chair Masayoshi Son for as long as two years about AI projects, including a new AI device, according to people familiar with the discussions.

SoftBank also invested in OpenAI during a $6.6bn fundraising round in October, which valued the start-up at $157bn, and the Financial Times reported the Japanese group planned to purchase an additional $1.5bn of stock in the company in November. Son and Altman began having detailed talks on Stargate in the months before this week’s announcement, according to two people with direct knowledge of the matter.

While Altman’s infrastructure plans had been in the works for well over a year.

Stargate is incorporated in Delaware, with OpenAI, SoftBank, Oracle and MGX each taking stakes in the company. The group will appoint an independent chief executive and board, according to people with knowledge of the plans.

The company would be split into an operational unit, tasked with building and running the data centres and headed by OpenAI, and a unit responsible for raising capital, run by SoftBank, a person familiar with the project said.

Work is already under way on a first facility in Abilene, Texas.

Data centre start-up Crusoe has been building that facility for Oracle since June 2023. Crusoe secured $3.4bn in financing from Blue Owl in October to help fund its development. Oracle is expected to buy about $7bn worth of chips to power the Texas site and will provide that computing power to Microsoft, which will use it to power OpenAI.


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OpenAI and Nvidia among companies building Stargate AI infrastructure in UAE

OpenAI and Nvidia will join other companies to build Stargate UAE, an artificial intelligence infrastructure cluster, in a sister project to the recently unveiled push to expand AI infrastructure in the United States.

Appearing alongside President Donald Trump in January, the CEOs of OpenAI, SoftBank and Oracle said they would create a new company, called Stargate, to build out AI infrastructure in the US. The companies said they plan to invest up to $500 billion into the project in the coming years.

On Thursday, those three companies, as well as Nvidia, Cisco and local champion G42, announced in a statement their partnership to build Stargate UAE in Abu Dhabi. The project’s first part, a 200-megawatt AI “cluster,” is expected to go live in 2026, they said.

Sam Altman, CEO of OpenAI, said in the statement that the project in the oil-rich United Arab Emirates is “a step toward ensuring some of this era’s most important breakthroughs – safer medicines, personalized learning and modernized energy – can emerge from more places and benefit the world.”

In a separate statement on its website, OpenAI said Stargate UAE has the potential to provide AI infrastructure and computing capacity within a 2,000-mile radius, reaching up to half the world’s population. The project, agreed in close coordination with the US government, is the first international deployment of Stargate⁠, OpenAI’s AI infrastructure platform, the company also noted.

For his part, Jensen Huang, chief executive of Nvidia, said the project in the UAE would “power the country’s bold vision – to empower its people, grow its economy and shape its future.”

G42 will build the facility, with OpenAI and Oracle operating it, while Nvidia will provide some of the most advanced chips available.

Stargate UAE will run in the recently announced data center complex in Abu Dhabi, which will have 5 gigawatts of capacity – enough to power a major city.

The complex will be built by the US and the UAE and will eventually span 10 square miles.


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Artificial Intelligence

Stargate’s First AI Data Center in Texas: 

Stargate’s  AI push begins in Texas. 

Here are 10 key facts about the massive data center launched by OpenAI, Oracle, and SoftBank.

 A new vision for America’s role in artificial intelligence: a $500 billion public-private infrastructure initiative known as Stargate. At the heart of this initiative is a sprawling new data center under construction in Abilene, Texas, an ambitious project meant to power the next generation of AI.

1. The massive $500 billion AI project kicks off in Texas

Abilene, a quiet West Texas city better known for oil rigs and cattle ranches, is now the launchpad for what could be the biggest AI infrastructure project in America. The first Stargate AI data center, a joint effort by OpenAI, Oracle, and SoftBank, is rising on a 900-acre property west of Dallas.

2. The players: OpenAI, Oracle, SoftBank, and Crusoe

Stargate is a collaboration involving OpenAI, Oracle, and SoftBank, with support from Trump.

Each partner contributes distinct capabilities. OpenAI will operate the center and serve as its main customer. Oracle is leasing the site and providing server infrastructure. SoftBank is handling capital investment.

The physical buildout is led by Crusoe, a Denver-based infrastructure startup focused on AI compute. “I’ve never built anything of this scale,” said Chase Lochmiller, CEO of Crusoe, in an interview with Bloomberg Businessweek.

3. $15 billion and counting

According to The Wall Street Journal, Crusoe Energy, which is tasked with constructing the site, has secured $11.6 billion in new capital, bringing the total investment in the Abilene data center to approximately $15 billion.

The campus is set to grow from two to eight buildings, each filled with advanced AI chips. Each building will reportedly house up to 50,000 Nvidia Blackwell processors, engineered to train advanced AI models.

4. The power behind the power: Stargate built its own gas plant

A significant challenge for a facility of this magnitude is energy. The Abilene site is expected to require 1.2 gigawatts — enough to power hundreds of thousands of homes. To meet this demand, Crusoe and its partners are building an on-site natural gas power plant to secure uninterrupted electricity.

“One of the things that really surprised me… was just how many things feed into the mainline,” OpenAI CEO Sam Altman said in an interview.

5. A boon for Abilene

Altman said the city’s flexibility on energy and infrastructure made it an ideal first location. Abilene’s local government offered major tax incentives, and the city has committed to supporting the project’s water needs, which are lower than usual, thanks to a cooling system that recycles liquid.

“It will impact the rest of the economy — our restaurants, our home builders — with that many new people coming in and taking these jobs,” Abilene Mayor Weldon Hurt said.

While large data centers typically yield few permanent roles, Crusoe has committed to creating 357 full-time roles after construction. The bigger win may be the ripple effect for local businesses and the attention Abilene is suddenly getting from investors, developers, and tech vendors.

6. Microsoft is sidelined but not shut out

OpenAI’s primary cloud partner has been Microsoft. But the Stargate project marks a shift. Even Salesforce CEO Marc Benioff chimed in on X, saying Stargate marked the end of the “honeymoon” between OpenAI and Microsoft.

In January, OpenAI revised its contract with Microsoft, allowing partnerships with other providers as long as Microsoft retained first-refusal rights.

While Microsoft is not financially backing Stargate, it remains listed as a technology partner. Meanwhile, Oracle will lease the Abilene facility and manage the servers.

7. Critics call it ‘chaotic’ and ‘fake’

Not everyone believes Stargate can deliver on its ambitious promises. Elon Musk called it “fake,” while Anthropic’s Dario Amodei, one of the researchers behind the AI scaling theory that inspired Stargate, dismissed the effort as “chaotic.”

Still, Altman remains confident: “We need more compute and more capital,” he says.“ We want to have access to a lot of the machinery to make AI and run AI.”

8. Speed is the name of the game

Crusoe began construction in June 2024. The first two buildings are expected to go live in the first half of 2025. The second phase — six additional buildings — began in March 2025 and is expected to be operational by mid-2026.

“We’re trying to deliver on the fastest schedule that a 100-megawatt-or-greater data center has ever been built,” Lochmiller told reporters.

9. The name ‘Stargate’ isn’t just marketing

Altman said the name “Stargate” was inspired by an early OpenAI data center design that resembled the sci-fi portal from the 1994 film. “The hardest part was figuring out what the shape of the deal should be,” he said, referring to the entity’s structure.

10. Next stops: Amarillo, Oregon, and beyond

If successful in Abilene, the Stargate model could be replicated across the U.S. Crusoe is eyeing Amarillo, Texas, for the next site. OpenAI has also scouted Oregon, Pennsylvania, and Wisconsin. Internationally, a separate AI data center in Abu Dhabi is in development, though it will not operate under the Stargate LLC entity.


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OpenAI’s First Stargate Site to Hold Up to 400,000 Nvidia Chips

The first data center complex for OpenAI’s $100 billion Stargate infrastructure venture will have space for as many as 400,000 of Nvidia Corp.’s powerful AI chips — an amount that, if filled, would make it one of the largest known clusters of artificial intelligence computing power.

The construction for the site, in the small Texas city of Abilene, will be completed by mid-2026 with capacity of 1.2 gigawatts of power, according to developer Crusoe, which is set to announce the next phase of development on Tuesday. Though the facility will be large enough to support hundreds of thousands of advanced AI chips, it’s unclear how many have been committed to the project.

The Stargate joint venture was unveiled by OpenAI, SoftBank Group Corp. and Oracle Corp. at a White House event in January, with the goal of providing the physical infrastructure needed for more advanced AI models from the ChatGPT maker. OpenAI previously said Stargate will expand to as many as 10 sites around the country.

Oracle has already agreed to use the Abilene location’s full build for Stargate, according to people familiar with the matter, who spoke on condition of anonymity to discuss private information. OpenAI currently has plans to use roughly 1 gigawatt of capacity at the facility, one person said. Crusoe declined to comment on the site’s clients. OpenAI declined to comment. Oracle didn’t respond to a request for comment.

Stargate joins a race among leading tech companies to build up capacity of Nvidia’s latest chips. Elon Musk’s xAI recently inked a $5 billion deal with Dell Technologies Inc. for AI servers for a supercomputer in Memphis. Meta Platforms Inc. has said it planned to have computing power equal to 600,000 Nvidia H100s — a previous generation of the company’s data center semiconductors — by the end of 2024. And CoreWeave Inc., an AI-focused cloud provider, has more than 250,000 Nvidia graphics processing units across 32 data centers, it said in paperwork for an public offering earlier this month.

While Stargate was formally announced in January, the Abilene data center complex was in the works before that. “If you came here a year ago, this would be a field of mesquite trees and shrubs,” said Crusoe Chief Executive Officer Chase Lochmiller in an interview. “We broke ground in June of last year and have been on a very accelerated build pace.”

Currently, there are about 2,000 people working on construction for the project, with plans for that to increase to nearly 5,000 workers, Crusoe said. There will be eight data center buildings, each designed to hold as many as 50,000 Nvidia GB200 semiconductors, the company said. The White House announcement gave the long in-the-works project “tremendous credibility,” said Michael McNamara, CEO of energy startup Lancium, which is also developing the site and first inked an agreement with local officials to build a data center campus in Abilene in 2021. There’s now a sense among “all stakeholders that these projects need to be built bigger and faster,” he said.


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Stargate AI explained: What's in the $500 billion project

2025, the Trump administration announced a new AI infrastructure project called Stargate, led by the private sector and OpenAI. With a total investment of $500 billion over the next four years, this is a substantial financial undertaking intended to strengthen AI innovation in the U.S.

The announcement came shortly after President Donald Trump's inauguration. In the first few weeks of his second term in office, the president signed several tech-related executive orders -- such as his EO on cryptocurrency -- and shared he has complaints with the EU regarding its regulations over Big Tech.

Stargate AI launched as AI dominates media headlines. Advances in generative AI capabilities have been popular with both public and corporate entities, while large-scale models such as ChatGPT, DeepSeek and Grok 3 are attracting international attention. As competition within the AI sector heats up, the need for substantial infrastructure becomes greater -- and this is what Stargate aims to address. Yet, the project has received mixed reactions.

What is the goal of the Stargate AI project?

On a practical level, the goal of the Stargate AI project is to expand existing AI infrastructure for OpenAI by building large-scale data centers for additional support across the nation. The $500 billion total investment has not yet been allocated, but an initial $100 billion is being immediately deployed for building two data centers in Abilene, Texas. Construction has begun and is expected to conclude before the end of 2025. These data centers will help train and run the AI models that OpenAI is developing. The project announcement states that building the infrastructure will create numerous jobs.

More broadly, the Stargate AI project is part of the larger goal of establishing the United States as a leader in AI innovation. In its statement, OpenAI described the Stargate project as one that will "not only support the re-industrialization of the U.S. but also provide a strategic capability to protect the national security of America and its allies." Participants intend for this project to make a global statement; in Trump's announcement, he described the project as the largest AI infrastructure project in history.

Who is involved in the Stargate AI project?

Although Trump announced Stargate, the actual project is co-led by several private companies. OpenAI -- the artificial intelligence research organization -- is the primary company attached. Additional technology partners include Microsoft, Nvidia, Oracle and Arm. The computing system will be built and operated by a collaboration between OpenAI, Oracle and Nvidia.

There are plans for the $500 billion investment, but the first deployment of $100 billion comes from an initial group of equity funders -- SoftBank, OpenAI, Oracle and MGX. Softbank and OpenAI are the project's co-leaders, with Softbank assuming financial responsibility and OpenAI assuming operational responsibility.

In addition to this suite of formal partners, Stargate is now accepting requests from potential partners to construct the data centers. These partners will include land and power companies as well as architecture and engineering firms. Benefits and opportunities

Companies across the corporate landscape have embraced AI for tasks such as intelligence automation and greater analysis and understanding. With new advances consistently released, it is evident that the AI sector will continue to evolve -- if it can receive adequate support. By investing $500 billion in AI infrastructure, OpenAI, Softbank and the other partners are laying the foundations for this future innovation.

The benefits and opportunities of this AI expansion include the following:

The empowering of AI researchers with better infrastructure and support.

The expansion of available AI products and services by organizations in various industries such as healthcare and financial services.

The creation of jobs, which OpenAI estimates could reach 100,000 in number.

The chance for the United States to lead the world in AI development.

Ethical, environmental and governance concerns

A large investment in technical infrastructure could provide the support necessary to power considerable innovation -- and that is the intention of Stargate's partners. However, the practical implementation of this large-scale project is more complex.

With AI, there is a risk of bias and misinformation. Depending on the large language models used and the regulations applied, an AI program can carry biases from training that humans are vulnerable to, all while masquerading as a purely objective tool. The opportunity for these algorithms to accidentally discriminate against specific groups -- such as during hiring protocols -- has shown how important it is for all AI to be placed under clear regulations. This is equally true with misinformation; misuse of AI can lead to deepfakes and false narratives, which can cause serious harm. The scale and scope of Stargate's AI operations mean that any bias would be amplified, so there is concern about overusing truly objective data.

Another concern associated with Stargate's AI infrastructure is the environmental effect of data centers. Since the centers require a lot of power to compute vast quantities of data, those powered by electricity may drain the local grid. Data centers also use water to liquid-cool the servers, which increases overall water usage, and use microchips made of nonrenewable resources. The creation of Stargate's vast AI infrastructure has raised some concerns over its potential environmental impact. OpenAI has not announced how its centers will be powered but has expressed that it is open to working with construction partners from various backgrounds, including renewable and sustainable energies.

Lastly, the scale of Stargate makes governance a relevant and sensitive issue. OpenAI CEO Sam Altman has previously testified in front of Congress and called for greater regulation of AI technology. Still, the company has not yet outlined its regulatory approach for Stargate AI operations.

Stargate project timeline and developments

Here are some key dates in the Stargate project:

Jan. 21, 2025. Trump announces the Stargate AI project. He is joined by Altman, SoftBank CEO Masayoshi Son and Oracle co-founder Larry Ellison. Elon Musk posts "They don't have the money" under OpenAI's Stargate Project announcement on X.

Jan. 31, 2025. OpenAI updates its announcement to include information and resources on its plans and policies for prospective partners in land/power or architecture/engineering.

May 30, 2025. The estimated date for when construction will be completed on the first Stargate data center in Abilene.

Sept. 15, 2025. The estimated date for when construction will be completed on the second Stargate data center in Abilene.


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OpenAI's Stargate AI data centre expansion eyes new locations Stargate, OpenAI’s $500 billion AI data centre project, has announced plans to expand beyond Abilene, Texas.

The initiative, which was announced last month, plans an initial $100 billion investment in generative AI data centre campuses, with an additional $400 billion to follow over four years.

The first data centre site has been under development since last year at a Crusoe site within Lancium's campus, fully leased by Oracle for OpenAI.

However, despite discussions claiming around 10-20 data centres will be built in Abilene, the exact number and timeline remain uncertain.

In a LinkedIn post, OpenAI chief financial officer, Sarah Friar, said: “AI is transforming the world, and building the infrastructure to power it requires bold, long-term investment. That’s why we launched Stargate with our partners —a $500 billion initiative to supercharge American industry and expand the compute capacity needed to unlock AI’s full potential.”

She added the technology giant is also evaluating potential sites in Pennsylvania, Oregon and Wisconsin, with site visits scheduled for next week.

Meanwhile, the company has also solicited proposals from “top firms to design and build the facilities that will define the future of AI compute”, it added.

She concluded: “AI is moving fast. The next wave isn’t just better chatbots—it’s AI agents that can work independently over long periods of time, solving complex problems in science, medicine, and beyond. That level of intelligence requires massive compute infrastructure, and that’s what Stargate is designed to deliver.

“AI has the power to elevate humanity—but first, we need to build the foundation to support it. That’s what Stargate is: a bold, scalable, and enduring investment in the future.”