This AI tracks lung tumors as you breathe — and it might save lives

In radiation therapy, precision can save lives. Oncologists must carefully map the size and location of a tumor before delivering high-dose radiation to destroy cancer cells while sparing healthy tissue. But this process, called tumor segmentation, is still done manually, takes time, varies between doctors — and can lead to critical tumor areas being overlooked.

Now, a team of Northwestern Medicine scientists has developed an AI tool called iSeg that not only matches doctors in accurately outlining lung tumors on CT scans but can also identify areas that some doctors may miss, reports a large new study.

Unlike earlier AI tools that focused on static images, iSeg is the first 3D deep learning tool shown to segment tumors as they move with each breath — a critical factor in planning radiation treatment, which half of all cancer patients in the U.S. receive during their illness.

“We’re one step closer to cancer treatments that are even more precise than any of us imagined just a decade ago,” said senior author Dr. Mohamed Abazeed, chair and professor of radiation oncology at Northwestern University Feinberg School of Medicine.

“The goal of this technology is to give our doctors better tools,” added Abazeed, who leads a research team developing data-driven tools to personalize and improve cancer treatment and is a member of the Robert H. Lurie Comprehensive Cancer Center of Northwestern University.

The study was published today (June 30) in the journal npj Precision Oncology.

How iSeg was built and tested

The Northwestern scientists trained iSeg using CT scans and doctor-drawn tumor outlines from hundreds of lung cancer patients treated at nine clinics within the Northwestern Medicine and Cleveland Clinic health systems. That’s far beyond the small, single-hospital datasets used in many past studies.

After training, the AI was tested on patient scans it hadn’t seen before. Its tumor outlines were then compared to those drawn by physicians. The study found that iSeg consistently matched expert outlines across hospitals and scan types. It also flagged additional areas that some doctors missed — and those missed areas were linked to worse outcomes if left untreated. This suggests iSeg may help catch high-risk regions that often go unnoticed.

“Accurate tumor targeting is the foundation of safe and effective radiation therapy, where even small errors in targeting can impact tumor control or cause unnecessary toxicity,” Abazeed said.

“By automating and standardizing tumor contouring, our AI tool can help reduce delays, ensure fairness across hospitals and potentially identify areas that doctors might miss — ultimately improving patient care and clinical outcomes,” added first author Sagnik Sarkar, a senior research technologist at Feinberg who holds a Master of Science in artificial intelligence from Northwestern.

Clinical deployment possible ‘within a couple years’

The research team is now testing iSeg in clinical settings, comparing its performance to physicians in real time. They are also integrating features like user feedback and working to expand the technology to other tumor types, such as liver, brain and prostate cancers. The team also plans to adapt iSeg to other imaging methods, including MRI and PET scans.

“We envision this as a foundational tool that could standardize and enhance how tumors are targeted in radiation oncology, especially in settings where access to subspecialty expertise is limited,” said co- author Troy Teo, instructor of radiation oncology at Feinberg.

“This technology can help support more consistent care across institutions, and we believe clinical deployment could be possible within a couple of years,” Teo added.

This study is titled “Deep learning for automated, motion- resolved tumor segmentation in radiotherapy.”

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Ancient DNA reveals leprosy hit the Americas long before colonization

  • Hansen’s Disease (leprosy) is thought to have originated in Eurasia: previous studies on Mycobacterium leprae, the dominant form of leprosy, suggest the disease originated in Eurasia.
  • Ancient pathogen genomes from old bones: a team of scientists from Germany and Argentina have reconstructed two genomes of Mycobacterium lepromatosis in 4000-year-old human skeletons from Chile. This pathogen is regarded as a second, less common, cause of Hansen’s Disease.
  • A new American chapter for Hansen’s Disease: two pathogens that are responsible for the same disease evolved separately on opposite sides of the world for thousands of years.

Hansen’s Disease, more commonly known as leprosy, is a chronic disease that can lead to physical impairment. Today it exists in over 100 countries, and while the infection is treatable, access to treatment varies widely with socioeconomic conditions. Its mention in historical texts give us a glimpse into its past impact on population health in Europe and Asia. Prolonged untreated infection can result in characteristic changes in bone, and these have been documented in archaeological skeletons as early as 5000 years ago in Europe, Asia, and Oceania. So far, absence of these characteristic changes in the pre-contact American contexts suggests that leprosy was one of the many diseases introduced to the continent in the colonial period. Thereafter it afflicted humans and curiously also armadillos.

From a genetic perspective, Hansen’s Disease is caused by either the globally dominant Mycobacterium leprae or the newly identified and rare Mycobacterium lepromatosis. The recovery of M. leprae from archaeological bone in Europe suggests the disease originated in Eurasia sometime during the Neolithic transition about 7000 years ago. Similar emergence estimates have been proposed for other notorious diseases such as plague, tuberculosis, and typhoid fever. Ancient genomes for M. lepromatosis have remained elusive, and these may hold important clues on the history of Hansen’s Disease.

Past disease in the American continent

We know comparatively little about the infectious disease experience of the diverse communities of people living in the Americas before the colonial period. This accounts for almost 20,000 years of human history, and the diverse ecosystems into which humans integrated across the continent would have presented challenges to the immune system not otherwise encountered in other parts of the world. We know very little of these diseases, as they were smothered by the onslaught of pathogens that Europeans later brought with them. Archaeological study of human bones from the pre-contact Americas confirm that the time was far from disease-free, but often the traces seen on the bones aren’t specific enough to assign to a known disease.

“Ancient DNA has become a great tool that allows us to dig deeper into diseases that have had a long history in the Americas,” says Kirsten Bos, group leader for Molecular Paleopathology at the Max Planck Institute for Evolutionary Anthropology. She and her team have been studying pathological bone from American context for over a decade. Some diseases that the group has found were expected – just last year they found evidence that the family of diseases closely related to syphilis had its roots in the Americas, which many had suspected. “The advanced techniques now used to study ancient pathogen DNA allows us to look beyond the suspects and into other diseases that might not be expected from the context,” she adds.

Re-writing the history of Hansen’s Disease

Bos’s team worked closely with researchers from Argentina and Chile to both identify bones suitable for analysis and to carry out the meticulous work of isolating the DNA of ancient pathogens. Doctoral candidate Darío Ramirez of the University of Córdoba, Argentina, worked extensively with such material, and was the first to identify a genetic signature related to leprosy in some 4000-year-old skeletons from Chile. “We were initially suspicious, since leprosy is regarded a colonial-era disease, but more careful evaluation of the DNA revealed the pathogen to be of the lepromatosis form.” This provided the first clue that M. lepromatosis and M. leprae, though nominally both pathogens that cause Hansen’s Disease, might have very different histories. Reconstruction of the genome was key in looking into this. While putting the molecular puzzle of an ancient genome back together is never an easy task, these pathogens in particular had “amazing preservation, which is uncommon in ancient DNA, especially from specimens of that age,” comments Lesley Sitter, a postdoctoral researcher in Bos’s team who carried out the analysis.

The pathogen is related to all known modern forms of M. lepromatosis, but as there are so few genomes available for comparison, there is still much to be learned about it. This work has shown that a pathogen considered rare in a modern context caused disease for thousands of years in the Americas. Rodrigo Nores, professor of Anthropology at the University of Córdoba, Argentina is convinced that more cases, both ancient and modern, will be identified in the coming years: “this disease was present in Chile as early as 4000 years ago, and now that we know it was there, we can specifically look for it in other contexts.” Once more genomes surface, we’ll be able to piece out further details of its history and better understand its global distribution today. The pathogen has recently been discovered in squirrel populations from the United Kingdom and Ireland, but in the Americas it has yet to be found in any species other than humans. With such little data, mystery still surrounds its origin. “It remains to be determined if the disease originated in the Americas, or if it joined some of the first settlers from Eurasia,” adds Bos. “So far the evidence points in the direction of an American origin, but we’ll need more genomes from other time periods and contexts to be sure.”

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What should you look for when choosing sunscreen?

What to look for when choosing sunscreen and how to apply it to get the maximum protection.

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Covid inquiry to look at impact on care services

The Covid inquiry will examine the impact of the pandemic on care services, starting on Monday.

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Make healthy food more appealing, government tells supermarkets

Supermarkets will be challenged to sell healthier food, under a new government obesity plan.

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New Orleans is sinking—and so are its $15 billion flood defenses

Parts of New Orleans and its surrounding wetlands are gradually sinking, and while most of the city remains stable, a new study from Tulane University researchers suggests that sections of the region’s $15 billion post-Katrina flood protection system may need regular upgrades to outpace long-term land subsidence.

The study, published in Science Advances, used satellite radar data to track subtle shifts in ground elevation across Greater New Orleans between 2002 and 2020. The study found that some neighborhoods, wetlands and even sections of floodwalls are sinking by more than an inch per year — with some areas experiencing up to 47 millimeters (nearly 2 inches) of elevation loss annually.

“In a city like New Orleans, where much of the land is already near sea level, even minor drops in elevation can increase flood risk,” said Simone Fiaschi, lead author of the study and a former researcher with Tulane’s Department of River-Coastal Science and Engineering, now employed at TRE-Altamira.

The findings underscore how both natural and human-driven forces are reshaping the city’s landscape. Causes of the sinking — known as subsidence — include natural soil compaction, groundwater pumping, industrial development and the legacy of wetland drainage for urban growth.

The study used a remote sensing technique called InSAR (Interferometric Synthetic Aperture Radar), which detects millimeter-scale changes in land surface elevation by comparing satellite radar images taken over time. This allowed the researchers to build the most detailed map yet of vertical land motion in New Orleans — including areas like wetlands that had previously lacked reliable data.

Among the most troubling findings: some of the concrete floodwalls and levees built to protect the city after Katrina are themselves sinking. In a few cases, parts of the Hurricane and Storm Damage Risk Reduction System (HSDRRS) are losing elevation faster than sea levels are rising, reducing their capacity to block storm surges.

“These results are a wake-up call,” said co-author Prof. Mead Allison, also of Tulane. “We need ongoing monitoring and maintenance to ensure that our flood defenses don’t lose their level of protection beneath us.”

The study also found pockets of sinking around industrial sites, the airport and newer residential developments — areas where soil compression and groundwater withdrawal are likely contributors. In contrast, some areas such as parts of Michoud showed modest land uplift, likely due to the halt of industrial groundwater pumping and recovery of the water table.

Wetlands east of the city, long known for their ecological importance, are also sinking rapidly in places. In some spots, the loss of elevation could transform marshes into open water within a decade if trends continue. This has implications not just for wildlife but also for storm protection, as wetlands help buffer storm surges.

New Orleans, much of which lies below sea level, relies on an elaborate system of levees, pumps and drainage canals to keep water out. As sea levels rise and the ground sinks, the margin for error narrows.

Experts say that without sustained monitoring, including satellite data and ground-based measurements, it’s difficult to know where to reinforce levees or how to plan for future storms.

“This research shows that land movement isn’t uniform, and understanding these patterns is crucial for protecting lives and property in a city where inches truly matter,” Fiaschi said. “However, it’s crucial to remember that our results still require careful ground-truthing. This is especially true for critical areas like the floodwalls, where on-site verification was not possible during this project.”

The study highlights the potential of satellite monitoring to guide infrastructure maintenance and urban planning, not just in New Orleans but in coastal cities worldwide facing similar challenges.

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School sun safety lessons trialled to tackle skin cancer

The new pilot teaches children as young as five how to check UV levels and apply sunscreen.

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Emma is doing something she swore she never would – buying her kids vapes

One month on from the disposable vape ban, one mum says it has had little impact on her children’s nicotine consumption.

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Record-breaking 10-billion-year radio halo just rewrote the universe’s origin story

Astronomers have uncovered a vast cloud of energetic particles — a ‘mini halo’ — surrounding one of the most distant galaxy clusters ever observed, marking a major step forward in understanding the hidden forces that shape the cosmos.

The mini-halo is at a distance so great that it takes light 10 billion years to reach Earth, making it the most distant ever found, doubling the previous distance known to science.

The discovery demonstrates that entire galaxy clusters, among the largest structures in the universe, have been immersed in high-energy particles for most of their existence.

Such a mini-halo consists of highly energetic, charged particles in the vacuum between galaxies in a cluster, which together emanate radio waves which can be detected from Earth.

Accepted for publication in The Astrophysical Journal Letters, with the pre-print version of the paper published today. the findings show that even in the early universe, galaxy clusters were already shaped by energetic processes.

The international team of researchers behind the discovery was co-led by Julie Hlavacek-Larrondo of Université de Montréal and Roland Timmerman of the Institute for Computational Cosmology of Durham University, in the U.K.

The researchers analysed data from the Low Frequency Array (LOFAR) radio telescope, a vast network of over 100,000 small antennae spanning eight European countries. While studying a galaxy cluster named SpARCS1049, the researchers detected a faint, widespread radio signal.They found that it did not emanate from individual galaxies, but from a vast region of space filled with high-energy particles and magnetic fields.

Stretching over a million light-years, this diffuse glow is a telltale sign of a mini-halo,a structure astronomers have only been able to observe in the nearby universe up until now. “It’s as if we’ve discovered a vast cosmic ocean, where entire galaxy clusters are constantly immersed in high-energy particles,” said Hlavacek-Larrondo.

Added Timmerman: “It’s astonishing to find such a strong radio signal at this distance. It means these energetic particles and the processes creating them have been shaping galaxy clusters for nearly the entire history of the universe.”

Two likely explanations

There are two likely explanations behind the formation of the mini-halo.

One is that there are supermassive black holes at the hearts of galaxies within a cluster that can eject streams of high-energy particles into space. However, astronomers are still trying to understand how these particles would be able to migrate away from the black hole to create such a gigantic cloud of particles, while maintaining so much of their energy.

The second explanation is cosmic particle collisions. This is when charged particles within the hot plasma of the galaxy cluster collide at near-light speeds, smashing apart into the highly energetic particles that can be observed from Earth.

This new discovery provides a rare look at what galaxy clusters were like just after they formed, the astronomers say.

It not only shows that galaxy clusters have been infused with these high-energy particles for billions of years more than previously known, but it also allows astronomers to study where these high-energy particles come from.

It suggests that black holes and/or high-energy particle collisions have been enriching the environment of galaxy clusters much earlier than expected, keeping them energized over billions of years.

With newer telescopes being developed such as the Square Kilometer Array (SKA), scientists will be able to detect even fainter signals and further explore the role of magnetic fields, cosmic rays, and energetic processes in shaping the Universe, the astronomers say.

“We are just scratching the surface of how energetic the early Universe really was,” said Hlavacek-Larrondo. “This discovery gives us a new window into how galaxy clusters grow and evolve, driven by both black holes and high-energy particle physics.”

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Candy colors, THC inside: How cannabis edibles are tricking teen brains

Bright colors, fruit imagery, and labels like “locally made” or “vegan” might seem harmless — but when used on cannabis edibles, they can send misleading messages to teens.

That’s according to a new Washington State University-led study examining how adolescents perceive the packaging of cannabis-infused products such as gummies, chocolates and sodas. Despite regulations barring packaging that targets youth, many teens in the study found these products appealing — often likening them to everyday snacks or health foods.

The research, conducted in collaboration with Public Health – Seattle & King County, is part of a broader effort to reduce accidental cannabis exposure among teens. The findings could help shape new rules aimed at limiting underage appeal.

“What surprised us was how often these products were interpreted as healthy or natural,” said Jessica Willoughby, associate professor in WSU’s Murrow College of Communication and co- author of the study, published in the Journal of Health Communication. “When you combine that with vibrant packaging and familiar fruit flavors, it’s easy to see how these items start to look like snacks — not something potentially harmful or illegal for teens.”

Researchers conducted virtual focus groups and interviews with 28 Washington teens, ages 13 to 17, using real product photos from stores to prompt discussion. With parental permission, participants shared which packaging elements caught their eye and why.

The teens consistently pointed to bright, colorful designs and packaging that resembled healthy snacks as particularly appealing. Some said they’d display the packaging in their rooms or use it in social media posts. Others said terms like “locally made” and “vegan” made the products feel more aligned with their personal values — even if they knew the items contained cannabis.

“Our findings suggest that teens are drawn not just to the look of these packages, but to what the design represents,” said Stacey Hust, a professor in WSU’s Murrow College and the study’s lead author. “They saw these products as trendy, natural and aspirational — qualities that resonate with their identities and beliefs.”

The study also showed that teens with greater familiarity with cannabis — either through personal use or family exposure — were more likely to notice warning labels and dosage information. Those with less knowledge often overlooked health warnings or didn’t recognize cannabis symbols at all.

The results raise concerns for health educators and policymakers as cannabis edibles become more prevalent. The researchers recommend incorporating teen perspectives into regulatory discussions and increasing cannabis literacy through targeted education efforts.

“Teens are telling us what speaks to them — and sometimes it’s not what adults expect,” said Sarah Ross-Viles, youth cannabis prevention manager with King County and study co-author. “If we’re serious about making cannabis packaging less appealing to youth, we need to use their insights to guide smarter, more effective regulations.”

The WSU team recently worked with Public Health – Seattle & King County health officials and the Washington State Liquor & Cannabis Board to conduct a follow-up quantitative study exploring how packaging elements correlate with perceived teen appeal and intent to use.

While broad changes like plain packaging may ultimately be difficult to implement, the researchers say practical updates — such as clearer warnings and limiting branding that mimics health food — could help reduce youth attraction.

“We’re not calling for a marketing ban,” Hust said. “We’re asking for thoughtful regulations that balance the rights of adult consumers with the need to protect kids.”

Ross-Viles agreed: “This is about ensuring cannabis packaging serves its real purpose — informing adult consumers — without confusing or enticing teens. And now, for the first time, we are getting direct feedback from Washington youth to help make that possible.”

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