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Robot soccer player dents wall with terrifying kicks

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Robot soccer player dents wall with terrifying kicks

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A robot soccer player just gave goalkeepers another reason to feel nervous. Booster Robotics titled its YouTube video “Try Stopping This Robot,” and after watching its T1 humanoid hammer soccer balls toward a goal, you can see why.

Most of the kicks hit the curtain behind the net. But several shots appear to hit with enough force to leave visible impact marks and dents in the wall. That part is what everyone is talking about.

At first, it just looks like a viral robot soccer video. Then the wall damage makes the whole thing feel a lot more serious. This video also raises an important question: What happens if someone were to end up in the path of a soccer ball kicked by one of these robots?

AUTONOMOUS HUMANOID ROBOT SOCCER DEBUTS IN CHINA

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Booster Robotics’ T1 humanoid robot lines up a soccer kick inside the company’s lab, where its shots hit with enough force to dent the wall. (Booster Robotics)

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What is the Booster T1 humanoid robot?

The Booster T1 is a humanoid robot from Beijing-based Booster Robotics. According to Booster, the T1 stands about 3 feet, 10 inches tall and weighs about 66 pounds. Booster says the T1 has 23 to 41 degrees of freedom, depending on the configuration. In everyday terms, that means it has enough moving joints to walk, turn, balance and perform athletic movements.

The company also says the T1 can walk for about two hours and stand for about four hours on a charge. It supports open-source tools, software frameworks and API interfaces. That makes it easier for teams to train the robot for new tasks. The company also says more than 50 robotics teams and research institutes already use the platform.

How robot soccer helps train humanoid robots

There is also a serious reason companies test robots this way. Soccer forces a humanoid robot to deal with movement, balance and split-second changes. The ball does not stay still. The robot has to adjust its body, shift its weight and decide what to do next. That makes soccer a useful test for machines that may one day work around people.

Those lessons can carry beyond the soccer field. A robot that learns how to recover from a fall or adjust to a moving object could be more useful in a warehouse, lab or disaster zone. That is why robot soccer has become a way for engineers to test how these machines handle pressure when the action does not go perfectly.

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ROBOT PLAYS TENNIS WITH HUMANS IN REAL TIME

The soccer ball bounces back from the damaged lab wall after Booster Robotics’ T1 delivers a powerful kick. (Booster Robotics)

Booster T1 robot is built for developers

The T1 is meant for research and development. Booster positions the robot as a platform for schools, labs and robotics teams. Developers can use it to test software, train motion models and build new robot behaviors.

The company also offers RoboCup-related tools, including an open-source reinforcement learning framework and a demo system. That demo system covers perception, localization and decision-making for robot matches.

In other words, the T1 works like a serious robot body that developers can teach. That also explains why the wall-denting video is such a strong showcase. It shows the power, balance and control of these robots.

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NEW CHINESE HUMANOID ROBOT SHOWS OFF ITS STRENGTH BY LIFTING 35 POUNDS PER HAND

Booster’s humanoid robot steps into a powerful kick, raising new questions about how much force these machines can safely use around people. (Booster Robotics)

Robot soccer power raises safety concerns

A robot strong enough to dent a wall can damage more than drywall. If a system fails, a powerful leg or arm could hurt someone nearby. That does not mean every humanoid robot poses a danger. It means companies need strong guardrails before these machines move into homes, hospitals, stores or public spaces.

Force limits matter. Emergency stops matter. Testing environments matter. Clear rules about where robots can operate matter. A robot in a lab can be impressive. A robot near the public needs a much higher safety bar.

RoboCup robot soccer has a bigger goal

Booster’s T1 is also part of the RoboCup world, which is basically an international robot soccer competition. But RoboCup isn’t only about robots kicking a ball around a field. The long-term goal is much bigger. RoboCup wants fully autonomous humanoid robots to eventually beat the human World Cup champions under official soccer rules.

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That may sound like a wild idea. However, there is serious research behind it. Robot soccer forces teams to improve how these machines balance, see the field, react to movement and make decisions on their own. Booster says the T1 was built around robot soccer and RoboCup standards. The company also offers tools that help teams create robot soccer demos more quickly.

So, while robot soccer may look like a game, it is also helping engineers figure out how humanoid robots could become more capable in places far beyond the soccer field.

What this means for you

You may not care about robot soccer. Still, this kind of demo says a lot about the future of everyday robotics. Humanoid robots are learning to move with more confidence. They can balance better, recover faster and use their bodies with more force. That progress could eventually help with useful jobs, including warehouse work, elder care support or disaster response.

At the same time, stronger robots create new questions. Who checks their safety? Who sets the rules? Who is responsible when a robot breaks something or injures someone? The T1 video shows why the next phase of robotics really needs testing, transparency and accountability.

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Kurt’s key takeaways

This robot soccer video makes you stop and think. Booster Robotics’ T1 can kick a soccer ball with enough force to leave visible dents and impact marks in a wall. That to me is scary. It also raises a real safety question. As humanoid robots get stronger, companies will need to prove they can control that power around people. A robot kicking soccer balls in a lab is one thing. A robot near players, workers or bystanders is a very different story. Robot soccer may look like a game today. But it may also be showing us what tomorrow’s machines will be able to do. That is why it is important to keep an eye on this technology as it develops.

When you see a robot kick with this much force, does it make you excited about what is coming next, or worried about how safe these machines will be around people? Let us know by writing to us at Cyberguy.com.

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Nintendo’s Switch 2 bundle that includes a game is $50 off

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Nintendo’s Switch 2 bundle that includes a game is  off

Discounts on the Nintendo Switch 2 are rare, but they do happen on occasion. There’s one happening now, actually, on the company’s $499.99 console bundle that includes a digital game (Mario Kart World, Donkey Kong Bananza, or Pokémon Pokopia). Usually, the bundle saves you $20 or $30, depending on the game you choose, but for $449.99 at Amazon, Nintendo is effectively giving a game to you for free.

If you’re considering grabbing a Switch 2, I highly recommend doing so now. The biggest motivator (aside from its great selection of games and near-complete compatibility with original Switch games) is that the console will get a price hike in September, going from $449.99 to $499.99. Also, it’s not clear if it will continue to include a discounted game with purchase at that point. So, you’re getting more value at $449.99 here than ever before.

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Humanoid robots perform live surgery in world first

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Humanoid robots perform live surgery in world first

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Humanoid robots have officially stepped up to the operating table, helping complete two surgeries for the first time. During the preclinical trial, surgeons remotely guided the machines through two gallbladder removal procedures. The robots copied the surgeons’ movements rather than making medical decisions, and no human patients were involved.

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Unlike bulky robotic systems fixed in place, these five-foot machines used standard surgical tools and worked inside an operating room built for people. The experiment offers an early look at how a specialist could someday operate through a mobile robot in a rural clinic or another place where surgical care is hard to reach. Here is what the team accomplished and what still needs to happen before this technology reaches human patients.

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Researchers say mobile humanoid robots could someday help bring specialist surgical care to rural clinics, field hospitals or remote locations. (UC San Diego Jacobs School of Engineering)

Two humanoid robots completed live surgeries

Researchers from the University of California San Diego reported the results in the journal Nature earlier this month. The team tested its system during two laparoscopic gallbladder removal procedures on pigs.

During one operation, a humanoid robot handled surgical instruments while a human surgeon assisted beside it. During the second procedure, two humanoid robots stood next to each other and worked as a team. Surgeons remotely controlled both robots throughout the operation. The experiment involved delicate tasks used during minimally invasive gallbladder surgery. The robots moved tissue and dissected around the gallbladder. They also helped place clips before removing it.

Researchers designed the trial as a proof of concept. They wanted to learn whether a general-purpose humanoid robot could handle standard surgical tools with enough control to complete an operation. It could. However, the trial also exposed problems that researchers must solve before testing the system on humans.

The trial marked the first time teleoperated humanoid robots successfully completed live gallbladder surgeries. Robotic gallbladder procedures have been performed before, but this experiment was the first to use general-purpose humanoid machines. The work builds on UC San Diego’s earlier research with the same type of robot. CyberGuy previously covered how a remotely controlled humanoid performed seven medical procedures, including physical exams and ultrasound-guided injections.

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How these humanoid robots fit into a standard operating room

The researchers created Surgie by modifying commercially available Unitree G1 humanoid robots. Each machine stands about 5 feet tall and weighs around 60 pounds. That makes Surgie dramatically smaller than many existing robotic surgery systems, which can weigh approximately 1,800 pounds.

Large surgical robots may require extensive setup and take up considerable space. Hospitals sometimes need to retrofit an operating room before installing one. Surgie can stand in a room designed for human medical workers. Researchers added adapters to its hands so the robot could grip standard laparoscopic instruments.

A surgeon then controlled the robot from a remote console. When the surgeon moved the controls, Surgie copied those movements at the operating table. That human-like design is important. A hospital may be able to bring the robot into an existing room instead of rebuilding the space around it. A medical team could also move it between rooms or transport it to a smaller facility. “We were surprised at how well Surgie meshed with our workspace and workflow,” said Nikita Thareja, MD, a general surgery resident at UC San Diego School of Medicine and a co-author of the study.

Unitree currently lists the base G1 at $13,500 before taxes and shipping. However, that price does not include the surgical adapters, instruments or remote-control equipment used in the study. The price still points to a potentially significant difference between a general-purpose humanoid and today’s specialized surgical systems. Da Vinci surgical robots can cost from about $700,000 to more than $3 million, depending on the model and configuration. Researchers have not disclosed the total cost of the complete Surgie setup.

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UC San Diego researchers remotely guided humanoid robots through two gallbladder surgeries on pigs in a preclinical trial.d (UC San Diego Jacobs School of Engineering)

Why use a humanoid instead of a surgical robot?

Modern robotic surgery systems already help doctors perform highly precise procedures. However, those machines usually stay in one location and depend on specialized equipment. A humanoid robot offers more flexibility because it can operate in spaces built for medical workers. It can also hold tools designed for human hands.

Researchers believe future versions could retrieve an instrument during surgery. The robot might also help prepare or clean the room after a procedure. Most importantly, a mobile system could potentially bring a specialist’s skills to an area where surgeons are difficult to find.

Michael Yip, a professor in UC San Diego’s Department of Electrical and Computer Engineering, said remotely operated humanoids could expand access to critical procedures. Researchers envision sending the robots to communities with limited medical staffing or temporary field hospitals.

The goal isn’t to hand medical decisions to a machine. A trained surgeon would remain in control while the robot carried out those movements at the patient’s location. That could give a trauma team on a battlefield access to a specialist located far away. The same approach could help a patient in a remote town avoid a long trip to a major medical center. Researchers have even discussed using the technology during future space missions.

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That idea is already moving beyond the laboratory with traditional surgical robots. In March, we reported on a London surgeon who remotely removed a patient’s prostate cancer from 1,500 miles away. The difference is that the London procedure used a specialized surgical platform. Surgie could eventually offer a smaller system that works inside a standard operating room.

The robots still needed plenty of help

The successful procedures do not mean hospitals are ready to start using humanoid robots on patients. Researchers had to recalibrate the robots several times during surgery. The operations also took much longer than procedures performed with established surgical systems.

Latency presents another concern. Latency is the delay between a surgeon moving a controller and the robot responding. A slight lag may feel annoying during a video call. During surgery, even a small delay could affect precision. That challenge becomes more serious when the surgeon and robot are separated by a long distance.

Researchers will need to improve the robot’s reliability and response time. They must also prove that the system can repeat its performance safely across many procedures. Hospitals would need a backup plan as well. A qualified surgical team would have to remain ready to step in if the robot stopped responding or the remote connection failed.

Could a humanoid robot eventually operate on its own?

For now, human surgeons control Surgie’s movements. The UC San Diego researchers eventually want to develop what they call an autonomous surgical assistant. That type of robot could recognize which tool a surgeon needs or complete a limited task under supervision.

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Researchers elsewhere are already testing a different approach to autonomous surgery. CyberGuy previously covered an AI-powered robot that independently completed a key phase of gallbladder removal on a lifelike surgical model. However, operating on a living patient presents a much greater challenge. Bleeding can begin without warning. A patient’s condition can also change in seconds.

A robot would need to recognize the problem and respond safely. Medical workers must also be able to take control immediately. Autonomous surgery raises difficult questions about responsibility. Hospitals would need clear rules covering who makes each decision and who is accountable when something goes wrong. Remote operation introduces another concern. Hospitals would have to protect the robot’s software and communications from unauthorized access. At the same time, the system would need to continue operating safely during a connection problem.

WOULD YOU PAY $8,000 FOR A ROBOT TO FOLD LAUNDRY?

Surgeons controlled the humanoid robots from a remote console while the machines copied their movements during live procedures. (UC San Diego Jacobs School of Engineering)

What this means to you

You will not see a humanoid robot independently performing your next surgery. This research remains at the preclinical stage, and the team tested the system on pigs rather than humans. Still, the experiment offers an early look at where robot-assisted medicine may be headed.

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A mobile surgical robot could eventually give you access to a specialist without requiring a long trip. It may also help a smaller hospital offer procedures that currently require transferring patients elsewhere. However, access should never come at the expense of safety. Before agreeing to a robot-assisted procedure, you should know who controls the machine. You should also ask what happens if the connection fails and whether a qualified surgical team will remain in the room. The robot may hold the instrument, but human judgment remains the most important part of the operation.

Kurt’s key takeaways

Watching two humanoid robots work over an operating table may make you uncomfortable. Still, the technology could address a serious healthcare problem if researchers can make it reliable and safe. Many communities struggle to attract enough surgeons. A compact robot that works with standard instruments could let a distant specialist enter the operating room without physically traveling there. The comparatively low starting price of the base robot could also make this approach easier to deploy than some specialized surgical systems. This experiment remains an early milestone. The robots needed recalibration, and the operations took longer than usual. Communication delays also remain a concern. The researchers now need to prove that Surgie can perform consistently before anyone considers human trials. Hospitals will also need strict safety protections and trained medical workers ready to take over.

Would you let a surgeon operate through a humanoid robot if it cut months off your wait for care? Let us know by writing to us at CyberGuy.com.

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Microsoft tests Windows Search without all the ads and fluff

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Microsoft tests Windows Search without all the ads and fluff

Microsoft is testing a cleaner version of the Windows 11 search menu that strips it of recommended content and ads. In a blog post on Monday, Microsoft announced that it’s rolling out the decluttered Search Box to Windows Insiders in the Experimental channel as the company looks to regain trust with users and fix Windows.

One of the biggest changes is a revamped search homescreen that displays only your recent searches. Currently, when you open the search menu, it shows your recent searches alongside several distracting tiles on the right pane, containing things like the image of the day, daily quizzes, trending searches, and game recommendations.

Microsoft is cleaning up web results, too, as the search menu will surface the “most relevant answer” first, rather than showing “related products and promotions.”

Aside from doing some decluttering, Microsoft is testing other notable improvements to its search menu. It will more clearly show metadata, along with a preview of the file in the pane on the right side of the search menu, making it easier to figure out where the result came from. The Windows 11 search system will also prioritize results from your local files, apps, and settings, which will “more reliably appear” ahead of web and Microsoft Store recommendations. Testers can now turn off web and Store recommendations entirely from the Settings menu.

There are a few quality-of-life updates, too, as Microsoft says the search system it’s piloting can better handle typos, extra letters, and partial words, while offering some performance improvements.

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