From Guardrails to Potholes, AI is Becoming the New Eyes on America’s Roads

Chelsea Palacio, public information manager for the City of San Jose, showcases how a small detection camera uses AI to detect road hazards and potholes, in San Jose, Calif., Wednesday, Nov. 12, 2025. (AP Photo/Godofredo A. Vásquez)
Chelsea Palacio, public information manager for the City of San Jose, showcases how a small detection camera uses AI to detect road hazards and potholes, in San Jose, Calif., Wednesday, Nov. 12, 2025. (AP Photo/Godofredo A. Vásquez)
TT

From Guardrails to Potholes, AI is Becoming the New Eyes on America’s Roads

Chelsea Palacio, public information manager for the City of San Jose, showcases how a small detection camera uses AI to detect road hazards and potholes, in San Jose, Calif., Wednesday, Nov. 12, 2025. (AP Photo/Godofredo A. Vásquez)
Chelsea Palacio, public information manager for the City of San Jose, showcases how a small detection camera uses AI to detect road hazards and potholes, in San Jose, Calif., Wednesday, Nov. 12, 2025. (AP Photo/Godofredo A. Vásquez)

As America’s aging roads fall further behind on much-needed repairs, cities and states are turning to artificial intelligence to spot the worst hazards and decide which fixes should come first.

Hawaii officials, for example, are giving away 1,000 dashboard cameras as they try to reverse a recent spike in traffic fatalities. The cameras will use AI to automate inspections of guardrails, road signs and pavement markings, instantly discerning between minor problems and emergencies that warrant sending a maintenance crew, said The Associated Press.

“This is not something where it’s looked at once a month and then they sit down and figure out where they’re going to put their vans,” said Richard Browning, chief commercial officer at Nextbase, which developed the dashcams and imagery platform for Hawaii.

After San Jose, California, started mounting cameras on street sweepers, city staff confirmed the system correctly identified potholes 97% of the time. Now they're expanding the effort to parking enforcement vehicles.

Texas, where there are more roadway lane miles than the next two states combined, is less than a year into a massive AI plan that uses cameras as well as cellphone data from drivers who enroll to improve safety.

Other states use the technology to inspect street signs or build annual reports about road congestion.

Every guardrail, every day Hawaii drivers over the next few weeks will be able to sign up for a free dashcam valued at $499 under the “Eyes on the Road” campaign, which was piloted on service vehicles in 2021 before being paused due to wildfires.

Roger Chen, a University of Hawaii associate professor of engineering who is helping facilitate the program, said the state faces unique challenges in maintaining its outdated roadway infrastructure.

“Equipment has to be shipped to the island,” Chen said. “There’s a space constraint and a topography constraint they have to deal with, so it’s not an easy problem.”

Although the program also monitors such things as street debris and faded paint on lane lines, the companies behind the technology particularly tout its ability to detect damaged guardrails.

“They’re analyzing all guardrails in their state, every single day,” said Mark Pittman, CEO of Blyncsy, which combines the dashboard feeds with mapping software to analyze road conditions.

Hawaii transportation officials are well aware of the risks that can stem from broken guardrails. Last year, the state reached a $3.9 million settlement with the family of a driver who was killed in 2020 after slamming into a guardrail that had been damaged in a crash 18 months earlier but never repaired.

In October, Hawaii recorded its 106th traffic fatality of 2025 — more than all of 2024. It's unclear how many of the deaths were related to road problems, but Chen said the grim trend underscores the timeliness of the dashboard program.

Building a larger AI database San Jose has reported strong early success in identifying potholes and road debris just by mounting cameras on a few street sweepers and parking enforcement vehicles.

But Mayor Matt Mahan, a Democrat who founded two tech startups before entering politics, said the effort will be much more effective if cities contribute their images to a shared AI database. The system can recognize a road problem that it has seen before — even if it happened somewhere else, Mahan said.

“It sees, ‘Oh, that actually is a cardboard box wedged between those two parked vehicles, and that counts as debris on a roadway,’” Mahan said. “We could wait five years for that to happen here, or maybe we have it at our fingertips.”

San Jose officials helped establish the GovAI Coalition, which went public in March 2024 for governments to share best practices and eventually data. Other local governments in California, Minnesota, Oregon, Texas and Washington, as well as the state of Colorado, are members.

Some solutions are simple Not all AI approaches to improving road safety require cameras.

Massachusetts-based Cambridge Mobile Telematics launched a system called StreetVision that uses cellphone data to identify risky driving behavior. The company works with state transportation departments to pinpoint where specific road conditions are fueling those dangers.

Ryan McMahon, the company's senior vice president of strategy & corporate development, was attending a conference in Washington, D.C., when he noticed the StreetVision software was showing a massive number of vehicles braking aggressively on a nearby road.

The reason: a bush was obstructing a stop sign, which drivers weren't seeing until the last second.

“What we’re looking at is the accumulation of events,” McMahon said. “That brought me to an infrastructure problem, and the solution to the infrastructure problem was a pair of garden shears."

Texas officials have been using StreetVision and various other AI tools to address safety concerns. The approach was particularly helpful recently when they scanned 250,000 lane miles (402,000 kilometers) to identify old street signs long overdue for replacement.

“If something was installed 10 or 15 years ago and the work order was on paper, God help you trying to find that in the digits somewhere,” said Jim Markham, who deals with crash data for the Texas Department of Transportation. “Having AI that can go through and screen for that is a force multiplier that basically allows us to look wider and further much faster than we could just driving stuff around.”

Autonomous vehicles are next Experts in AI-based road safety techniques say what's being done now is largely just a stepping stone for a time when a large proportion of vehicles on the road will be driverless.

Pittman, the Blyncsy CEO who has worked on the Hawaii dashcam program, predicts that within eight years almost every new vehicle — with or without a driver — will come with a camera.

“How do we see our roadways today from the perspective of grandma in a Buick but also Elon and his Tesla?” Pittman said. “This is really important nuance for departments of transportation and city agencies. They're now building infrastructure for humans and automated drivers alike, and they need to start bridging that divide.”



Moon Race: How China is Challenging the US

China is challenging the United States' supremacy in spaceflight. Pedro Pardo / AFP/File
China is challenging the United States' supremacy in spaceflight. Pedro Pardo / AFP/File
TT

Moon Race: How China is Challenging the US

China is challenging the United States' supremacy in spaceflight. Pedro Pardo / AFP/File
China is challenging the United States' supremacy in spaceflight. Pedro Pardo / AFP/File

Walking on the Moon by 2030, building a lunar base, and then perhaps on to Mars: after 30 years of honing its expertise, China is challenging the United States' supremacy in spaceflight.

As US space agency NASA prepares for its crewed lunar flyby mission, Artemis II, we take a look at China's ambitions in space:

- What is China's crewed program? -

China's crewed space program -- known as Project 921 -- was launched on September 21, 1992, aiming to develop its own expertise and space station.

The program has conducted around 15 crewed missions since the first flight of a Chinese astronaut, Yang Liwei, in 2003.

Blocked from the International Space Station (ISS) in 2011 by the United States, China built its own orbital hub.

The Tiangong, or "Heavenly Palace", space station welcomed its first occupants in 2021.

Three Chinese astronauts -- known as "taikonauts" -- are currently staying there.

The station allows China to accumulate crucial experience in spacewalks, docking, maintenance and effects on the body.

None of China's crewed launches have been fatal, and the program is following a long-term roadmap rather than a series of isolated projects.

"This effectiveness stems from strong political commitment at the highest level of the state, stable funding... and the integration of the entire industrial chain into the project," said Richard de Grijs, professor of physics and astronomy at Australia's Macquarie University.

"Compared to the Western, and particularly US, approach, where priorities can shift with each political cycle, this model offers clear advantages in terms of predictability and risk management," he told AFP.

While China's space program has been historically slower, "it won't change course at the whim of its leadership either".

- When will Chinese astronauts land on the Moon? -

The Chinese space agency (CNSA) hopes to put astronauts on the Moon by 2030.

China has already sent several robots to the Moon and brought back lunar samples.

But a crewed mission requires different equipment, which is currently being tested.

China is set to conduct a test flight of its new Mengzhou ("Dream Ship") spacecraft in 2026. Replacing the ageing Shenzhou, it will carry astronauts into lunar orbit.

Engineers are also developing a new ultra-powerful rocket around 90-metres (295-feet) long -- the Long March-10, essential for propelling the spacecraft to the Moon. It made its first low-altitude flight on February 11.

The Lanyue ("Seize the Moon") lander, which will transport the astronauts from orbit to the lunar surface, could also make its maiden flight between 2028 and 2029.

- Does China want a lunar base? -

China hopes to build a basic version of a crewed scientific base, called the International Lunar Research Station (ILRS), by 2035.

The base will be built near the Moon's south pole, where water in the form of ice is believed to be present.

China is collaborating with Russia on the project.

The base is expected to be built with bricks made on-site from lunar soil using 3D printers. Tested on Earth and on Tiangong, the technique is to be tested on the Moon during the uncrewed Chang'e-8 mission, scheduled for around 2028.

The CNSA says it wants to carry out archaeological research into the origin of the Moon, achieve breakthroughs in strategic technologies and exploit lunar resources.

An expanded version of the base is planned for around 2040.

China is also developing a constellation of relay satellites around the Moon to communicate between its far side and Earth.

- Is this a race with the United States? -

China never talks about a "Moon race" or competition with the United States.

"They are ambitious for the future of their program and see the Moon as the logical next step, for its own sake, not for any rivalry. I don't think it would change anything for them if America wasn't going," said Jonathan McDowell, astrophysicist and space analyst.

"Having said that," he added, "the establishment of a lunar base by China would be a real challenge to America's ability to establish such a base -- there's only a small amount of suitable area near the lunar south pole."

For now, China lags behind the United States in terms of crewed flights, according to Chen Lan, a specialist in the Chinese space program.

NASA's Dragon and Orion spacecraft remain superior compared to China's Shenzhou, he noted.

"However, I expect when China realizes manned lunar landing by 2030 with the new spaceship and lunar landing vehicle, it will catch up with the US in the human spaceflight field."

- Mars next? -

After 2040, the Chinese lunar base will be used to "validate technology and capabilities for a manned mission to Mars", according to the CNSA.

Chinese space manufacturing companies and scientists have previously pointed to the Red Planet as a potential destination for astronauts.

"But I don't think that there will be serious plans to Mars before completion of the lunar landing and the initial lunar base," Chen said.


3-limbed Sea Turtle Being Tracked at Sea by Satellite

An adult female Kemp's ridley sea turtle is seen swimming in a tank at Loggerhead Marinelife Center after a satellite tracking device was attached to its shell in Juno Beach, Fla. on Tuesday, March 24, 2026. (AP Photo/Cody Jackson)
An adult female Kemp's ridley sea turtle is seen swimming in a tank at Loggerhead Marinelife Center after a satellite tracking device was attached to its shell in Juno Beach, Fla. on Tuesday, March 24, 2026. (AP Photo/Cody Jackson)
TT

3-limbed Sea Turtle Being Tracked at Sea by Satellite

An adult female Kemp's ridley sea turtle is seen swimming in a tank at Loggerhead Marinelife Center after a satellite tracking device was attached to its shell in Juno Beach, Fla. on Tuesday, March 24, 2026. (AP Photo/Cody Jackson)
An adult female Kemp's ridley sea turtle is seen swimming in a tank at Loggerhead Marinelife Center after a satellite tracking device was attached to its shell in Juno Beach, Fla. on Tuesday, March 24, 2026. (AP Photo/Cody Jackson)

The veterinary staff at a Florida sea turtle hospital is getting help from space to monitor the animals they have rehabilitated. They're particularly interested in amputees.

Using satellite tracking devices in a collaboration between the Loggerhead Marinelife Center and the Smithsonian Conservation Biology Institute, scientists are learning how well sea turtles can survive in the wild after losing a limb.

Amelie, a Kemp's ridley sea turtle who lost her right forelimb to a predator — most likely a shark, the center said — was taken to the beach on Wednesday for her highly anticipated release. The turtle paused for about 30 seconds, then slowly made her way into the Atlantic Ocean as onlookers cheered.

Amelie had been rescued and brought to the center by the Inwater Research Group in Port St. Lucie, Florida, seven weeks earlier after a traumatic amputation. She underwent surgery to clean and close the wound, and was treated for pneumonia while in a tank at the center.

When veterinarians deemed her healthy enough to return to the sea, they glued a tracking device to her shell.

A rehabilitated adult female Kemp's ridley sea turtle crawls toward the ocean during a release in Juno Beach, Fla. on Wednesday, March 25, 2026. (AP Photo/Cody Jackson)

An ultrasound confirmed that Amelie is developing eggs, giving researchers another reason to track her movements.

Kemp's ridley turtles, the rarest of sea turtle species, are more typically found on Florida's Gulf Coast, so treating Amelie was especially significant, said Andy Dehart, the center's president and CEO.

Amelie is actually the fourth amputee sea turtle being tracked by the enter, Loggerhead research director Sarah Hirsch said. They include a three-limbed turtle named Pyari who has traveled nearly 700 miles since her release in January, her tracker shows.

“We do know that they can be successful in the wild because we have seen them on our nesting beaches, but we really want to understand their dive behaviors, how they’re migrating once they’re back in the wild," The Associated Press quoted Hirsch as saying.

The satellite tags have a saltwater switch that detects when the turtle comes up to the surface to breathe, triggering the transmission of data to the satellites. Their location appears online after a 24-hour delay. To view Amelie and other turtles tracked for various research projects, visit the Loggerhead website.

“They’ve been through a lot," Hirsch said. "They’ve gotten a lot of medical care here, and to see them be able to go back out and contribute to the population is really rewarding.”


Genetic Study Identifies Earliest-known Dog, Dating to 15,800 Years Ago

FILE PHOTO: A woman gives her dog a kiss as they watch the sunset at Anchor Bay outside Mellieha, Malta, January 26, 2018.  REUTERS/Darrin Zammit Lupi/File Photo
FILE PHOTO: A woman gives her dog a kiss as they watch the sunset at Anchor Bay outside Mellieha, Malta, January 26, 2018. REUTERS/Darrin Zammit Lupi/File Photo
TT

Genetic Study Identifies Earliest-known Dog, Dating to 15,800 Years Ago

FILE PHOTO: A woman gives her dog a kiss as they watch the sunset at Anchor Bay outside Mellieha, Malta, January 26, 2018.  REUTERS/Darrin Zammit Lupi/File Photo
FILE PHOTO: A woman gives her dog a kiss as they watch the sunset at Anchor Bay outside Mellieha, Malta, January 26, 2018. REUTERS/Darrin Zammit Lupi/File Photo

Dogs have been loyal companions to people since we made them our first domesticated animals, descending long ago from gray wolves - though precisely when, where and why have remained unanswered. New genetic research now is offering valuable insight, including identifying the earliest-known dog, dating to 15,800 years ago, Reuters reported.

This dog, known from bones found at the Pinarbasi rock shelter site in Türkiye used by ancient human hunter-gatherers, is about 5,000 years older than the previous earliest-known, genetically confirmed canine, the researchers said.

The date of the Pinarbasi dog and several others almost as old identified at other sites in Europe shows that dogs already were widely distributed and an integral part of human culture millennia before the advent of agriculture, they said.

The new findings were presented in two scientific papers published on Wednesday in the journal Nature.

William Marsh, a postdoctoral researcher in the Ancient Genomics Laboratory at the Francis Crick Institute in London who was co-lead author of one of the studies, said the DNA evidence suggests dogs were present in various locales in western Eurasia by 18,000 years ago and already ⁠were quite different ⁠genetically from wolves.

"We putatively predict that dog and wolf populations diverged a lot earlier, likely before the last glacial maximum (of the Ice Age), so before 24,000 years ago. Although saying that, there is still a great degree of uncertainty," Marsh said.

The dog, descended from an ancient wolf population separate from modern wolves, was the first animal domesticated by people, with animals such as goats, sheep, cattle and cats coming later.

"Dogs have been by our side as humans underwent major lifestyle transitions and complex societies emerged," said geneticist Anders Bergström of the University of East Anglia in England, lead author of the other study.

"I think it's also interesting that, unlike most ⁠other domesticated animals, dogs do not always have very clearly defined roles or purposes for humans. Perhaps their primary role is often just to provide companionship," Bergström said.

The upper jaw of a domesticated dog from the Kesslerloch cave in Thayngen, Switzerland, dating to about 14,000 years ago, is seen in this photograph from July 2019. Cantonal Archaeological Service of Schaffhausen/Ivan Ivic/Handout via REUTERS

Bergström and his team performed a large-scale search for the early dogs of Europe, using a new method to differentiate genetically between wolves and dogs among 216 ancient remains ranging from 46,000 to 2,000 years old from Belgium, Denmark, France, Germany, the Netherlands, Scotland, Sweden, Switzerland and Türkiye. This was the largest study of such remains to date.

The researchers managed to identify 46 dogs and 95 wolves. Because the skeletons of dogs and wolves were so similar in the early stages of canine domestication, genetic studies are needed to distinguish between them in ancient remains.

The oldest of the dogs identified by Bergström's team was one dating to 14,200 years ago from Switzerland's Kesslerloch Cave site. The oldest of the European dogs identified in this study were found to have shared an origin with dogs in Asia and the rest of the world, showing that ⁠these various canine populations did not ⁠arise from separate domestication events.

The Pinarbasi dog, identified in the study Marsh worked on, showed how much dogs were valued by the hunter-gatherers who kept them.

"At Pinarbasi, we have both human and dog burials, with dogs buried alongside humans," Marsh said.

There also was evidence that the people at Pinarbasi fed their dogs fish.

This study identified five dogs dating to between 15,800 and 14,300 years ago, including canine remains from Gough's Cave near Cheddar in England.

"At Gough's Cave, we have butchering and processing of humans after death that included cannibalism, as a funerary behavior akin to burial. Similar post-mortem modification, albeit not definitively for consumption, was found on the dog remains," Marsh said.

The Pinarbasi and Gough's Cave dogs were found to be more closely related to the ancestors of present-day European and Middle Eastern breeds such as boxers and salukis than to Arctic breeds like Siberian huskies.

Beyond companionship, the ancient dogs may have helped people hunt or perhaps served as watchdogs, sort of Ice Age alarm systems, according to the researchers. Unlike the many exotic dog breeds around today, these early dogs still likely closely resembled the wolves from which they descended, they said.

"The questions of when, where and why people domesticated dogs still remain largely unanswered," Bergström said. "We think it probably happened somewhere in Asia, but more precisely remains to be determined."