Science
Top Research Stories of 2025 at UCalgary | News
Advances in Research and Discovery at UCalgary: Highlights from 2025
As we dive into the research landscape of the University of Calgary (UCalgary) in 2025, it’s evident that innovative thinking and collaborative efforts have propelled the scholarly community toward notable advancements. The most-read articles tracked by Google Analytics showcase not only the university’s breadth of discoveries but also its commitment to tackling complex global challenges. Let’s explore some of the groundbreaking research from the past year.
Early Humans Adapted to Harsh Conditions More Than a Million Years Ago
A fascinating study led by Dr. Julio Mercader reveals that Homo erectus mastered survival in extreme environments as early as 1.2 million years ago. This research challenges the assumption that only Homo sapiens could adapt to varied climes. The team, including co-author Dr. Jed Kaplan, utilized advanced landscape simulations of West Africa to illustrate how these early hominins not only survived but thrived in places as diverse as rainforests and deserts.
Mercader articulated the significance of the findings, noting, “We reveal how early humans were able to thrive under harsh conditions.” Their ability to navigate diverse environments, including constructing boats for island hopping, underscores a complex understanding of evolution and adaptation.
Scientists Explain White Patch Near Northern Lights
In a remarkable exploration of the aurora borealis, UCalgary researchers have identified a white patch often seen alongside the northern lights. This phenomenon, termed “structured continuum emission,” was analyzed by Dr. Emma Spanswick and her team using advancements in camera technology. Previously referenced but never fully understood, this phenomenon hints at heating in the atmosphere caused by the aurora, adding a new layer of complexity to our understanding of these stunning natural displays.
“This dynamic grey or white emission seems to arise in synchronicity with the vibrant greens and reds of the aurora,” Spanswick elaborated, highlighting the intricate dance of colors in the northern sky.
Toenail Clippings: The Unexpected Tool in Lung Cancer Research
In an innovative new study, UCalgary researchers have turned to toenail clippings as a method for investigating lung cancer’s environmental causes. Led by Dr. Aaron Goodarzi, the initiative seeks to engage up to 10,000 Canadians. Goodarzi explains that toenails can serve as a biological archive, revealing long-term exposure to toxicants like radon gas—an odorless, colorless radioactive gas identified as the second leading cause of lung cancer.
Dr. Michael Wieser, co-investigator, adds that their findings could revolutionize how individual exposure to radon is measured, potentially leading to groundbreaking advancements in cancer prevention strategies.
Identifying the Closest Known Ancestor of Tyrannosaurs
A team spearheaded by Jared Voris and Dr. Darla Zelenitsky identified a new dinosaur species, Khankhuuluu, believed to be the closest known ancestor of tyrannosaurs. This discovery provides a crucial insight into the evolutionary shift from medium-sized predators to the apex giants we recognize today.
Voris emphasized the importance of this transitional species: “This new species provides us that window into the ascent stage of tyrannosaurs,” shedding light on how these remarkable creatures evolved into the dominant predators depicted in popular media.
Researching the Acoustics of Clinical Care
Dr. Martina Ann Kelly is paving the way for a unique study focusing on the acoustic environment of clinical care. She emphasizes how understanding everyday sounds, from the buzz of medical equipment to the subtle silences in examination rooms, can transform patient experiences. Kelly aims to explore how these auditory cues influence clinical decision-making and patient interactions, highlighting a critical but often overlooked aspect of healthcare.
By linking auditory elements to patient care, Kelly’s research integrates social science with medical practice, striving for a holistic approach to healthcare.
Nobel Prize in Chemistry Linked to UCalgary Research
The Nobel Prize in Chemistry awarded in October brought recognition to UCalgary scientists, including Professor George Shimizu, for their work with metal-organic frameworks (MOFs). These versatile materials, likened to molecular sponges, can be customized for various applications, from drug delivery to environmental remediation.
Shimizu’s CALF-20 compound, developed in 2014, exemplifies the industrial application potential of MOFs, especially in carbon capture—a significant step in addressing climate change. This not only showcases UCalgary’s contributions to scientific advancements but also its role in fostering entrepreneurial initiatives.
Robotic Technology in Urban Planning
UCalgary’s Robocraft initiative heralded the arrival of a sophisticated robotic arm aimed at revolutionizing urban planning. Spearheaded by Dr. Alicia Nahmad Vazquez, this project leverages advanced robotic techniques for manufacturing urban infrastructure, enhancing accessibility and community participation.
As communities design and 3D-print elements like wheelchair ramps, this initiative blends technological innovation with practical urban development, ensuring environments respond to community needs.
New Implant Yields Promise for Spinal Cord Injury Patients
A groundbreaking clinical trial led by Dr. Aaron Phillips focused on employing a neurostimulation implant to stabilize blood pressure in spinal cord injury patients. This innovative approach has led to significant improvements in energy levels and overall cognitive clarity, addressing a critical aspect of post-injury care often overshadowed by physical rehabilitation.
The new therapy demonstrates a focused effort to enhance quality of life for individuals affected by such injuries, proving that medical research can lead to tangible improvements in patient outcomes.
UCalgary Killam Scholars Inspire Change Through Research
Reflecting on the dedication and innovation of graduate students, UCalgary celebrated the achievements of 16 PhD candidates recognized as Izaak Walton Killam Memorial Scholars. Their research ranges from health monitoring wearable devices to exploring the intersection of neuroplasticity and psychedelics, illustrating a commitment to making impactful contributions across disciplines.
Dean Dr. Tara Beattie praised these scholars for their transformative work, encapsulating how research not only advances knowledge but also strengthens community ties.
All Living Things Emit an Eerie Glow
In a study that captivated public interest, UCalgary scientists demonstrated that all living organisms emit ultra-weak light, a phenomenon that vanishes upon death. Dr. Christoph Simon and his team utilized quantum physics tools to capture this elusive glow, opening doors for potential applications ranging from ecological monitoring to medical diagnostics.
The research emphasizes the interconnectedness of life, highlighting how science can unveil hidden truths about the natural world.
These highlights from UCalgary’s research endeavors in 2025 illustrate a vibrant landscape of innovation and discovery, where interdisciplinary collaboration and cutting-edge science strive to address both age-old questions and contemporary challenges. As this journey unfolds, the university continues to push the boundaries of knowledge, inspiring future generations to explore and understand the complexities of our world.
Science
From ‘Psyops’ to ‘Hysterical Hysteria’: How GB News and Talk TV Lost Their Composure During Heatwaves | A Look at Climate Science Skepticism and Denial
The Heatwave Debate: A Clash of Perspectives on Climate Change
As the first heatwave of what turned out to be a record-breaking summer swept in on May 23, 2026, the discourse around climate and its impact heated up just as intensely. GB News host Cristo Foufas addressed the ongoing warnings of extreme temperatures with unmistakable frustration, stating, “I am sick to death of the naysayers saying firstly that we’re all going to die and that we have to put out heat alerts, because, you know, just drink some water and drink a bit less rosé in the sunshine.” His view resonated with an audience that appears unbothered by climate warnings, viewing them as an overreaction.
Co-host Renée Hoenderkamp, with her background as a medical doctor, provided a stark counterpoint, equating the realities of life and death in extreme conditions to “Darwinism.” This idea suggested that the natural order will prevail, a sentiment heartily echoed by fellow presenters on various platforms, including GB News contributor Will Kingston, who remarked, “People die each year from vending machines falling on them, and coconuts hitting their heads.” This cavalier attitude seemed to dismiss the very real risks associated with climate-induced heat, framing it as just another aspect of life’s unpredictability.
Over on TalkTV, the aplomb continued as another presenter, Julia Hartley-Brewer, dismissed concerns about heat-related deaths. “I’m very sorry if someone dies because of the heat, but I don’t think that’s a reason for us never to be allowed to take a flight again,” she stated while seemingly trivializing the seriousness of climate change. Hartley-Brewer’s comments highlighted a recurring theme among several hosts on these networks: a skepticism towards changes in lifestyle that might mitigate climate threats.
As temperatures soared, the direct consequences of the heatwaves became increasingly undeniable. Reports indicated that around 2,700 premature deaths occurred in England and Wales due to the heatwave in June alone. This was soon met with incredulity from some broadcasters. The TalkTV host Kevin O’Sullivan claimed that such statistics were merely “qualified” assertions and derided them as “disgraceful climate change scaremongering.” This kind of dismissal opens up a Pandora’s box regarding the handling of scientific findings in public discourse.
Then, as the data was re-evaluated on July 30, the UK Health Security Agency increased the death toll to 2,877, utilizing actual recorded deaths rather than predictive models. Yet this information was met with more skepticism. Kingston of GB News further belittled the accuracy of such data, echoing sentiments about the fallibility of modeling, a notion all too familiar to audiences conditioned by the COVID-19 pandemic.
In contrast, discussions hinting at a deeper understanding of climate issues were sorely lacking. Presenters like Ross Clark downplayed the significance of heatwave-related deaths, suggesting that many who succumbed to the heat were already at death’s door. The casual dismissal of these fatalities raises ethical concerns about whose lives are deemed valuable in the climate crisis discourse.
It’s noteworthy that while the frequency of winter-related deaths was spotlighted as a counterargument, no one seemed to inquire into the broader implications of heat-related mortality as climate change escalates. The most recent statistics from the Office of National Statistics revealed that the trend has shifted; there were more heat-related deaths in 2025 compared to cold-related deaths.
Amidst the chaotic discussions, the question of climate change denial bubbled to the surface. Presenters like Nana Akua on GB News referred to climate issues as a “scam” while others baselessly claimed that rising CO2 levels had plateaued, a viewpoint at odds with overwhelming scientific consensus. These tangential conspiracies highlight an unsettling tendency to equate mere discussion of climate change with hysteria.
Furthermore, claims regarding air conditioning—ironically necessary as British summers grow hotter—took on a life of their own. Foufas lamented about being encouraged to remove air conditioning under net-zero stipulations, merging personal inconvenience with a broader narrative against climate policy. On TalkTV, Hartley-Brewer lethargically stated that air conditioning is illegal in new builds, a claim definitively proven incorrect.
The narrative surrounding net-zero policies carries a particularly charged weight in these discussions. Contributors labeled such initiatives as “deranged” or an ideology “that doesn’t exist,” often aligning climate action with extreme political ideologies. This often leads to the reduction of complex climate science into simplistic, polarized debates—far removed from the grounded understanding that such global issues require a collective responsibility.
TalkTV hosts often drill down on economic critiques of these policies, invoking concerns about financial consequences while blissfully ignoring the long-term costs associated with inaction. Jacob Rees-Mogg was quoted suggesting that adapting to climate change’s effects would be cheaper than preventing them altogether, an argument directly contradicted by years of economic studies.
The warped logic manifested by some commentators reflects a broader resistance to both change and accountability. Claims that increased fossil fuel extraction could alleviate current economic pressures repeatedly ignore the overarching consequences on climate stability and future energy costs.
In summary, as the summer intensified temperatures, so too did the conversations surrounding climate, often veering into apathy, scapegoating, and disinformation. The ongoing discussion across platforms like GB News and TalkTV showcases a significant schism in understanding climate change’s reality, often opting for sensationalism over scientific consensus while trivializing the very real impacts of severe weather events. The dialogue surrounding these critical issues underscores a pressing need for climate education that can bridge the gap between individual perception and scientific truth.
Science
UK-Led Study Sheds Light on Fascinating Dark Matter Findings | Science and Technology Facilities Council
A Single Particle Interaction: A Glimpse into Dark Matter Using LZ Experiment

Looking up into the LZ outer detector, used to veto radioactivity that can mimic a dark matter signal. Credit: Matthew Kapust and Sanford Underground Research Laboratory
Dark matter, a mysterious component believed to constitute about 85% of the matter in the universe, has thus far eluded direct observation. However, the LUX-ZEPLIN (LZ) dark matter experiment has made headlines with a noteworthy analysis revealing a single particle interaction that has puzzled researchers. This event, spearheaded by the University of Bristol, could offer the best indication of dark matter yet, despite lacking the robust statistical backing needed to claim a definitive discovery.
The LZ experiment is a collaborative effort involving approximately 250 scientists and engineers worldwide. Situated nearly a mile underground at the Sanford Underground Research Facility (SURF) in South Dakota, it utilizes 10 tonnes of ultrapure liquid xenon to search for weakly interacting massive particles (WIMPs)—one of the leading theoretical candidates for dark matter.
Researchers from Bristol announced this single particle interaction during the 2026 TeV Particle Astrophysics conference in Japan. Their study, which will soon be available in a paper on arXiv and submitted to the journal Physical Review Letters, has ignited excitement and curiosity among physicists around the globe.
Sam Eriksen, a senior research associate at the University of Bristol and the lead author of the analysis, emphasized the importance of this finding. “We spent months investigating all possible causes of background events. Understanding our detector and the backgrounds so thoroughly allows us to consider even a single extraordinary event meaningful,” he said. “Dark matter events should be incredibly rare, after all, so identifying a handful could mark the first definitive detection of WIMP dark matter.”
If the particle interaction is indeed indicative of dark matter, it suggests that the WIMP in question has a mass surpassing 200 GeV/c², a figure more than 200 times that of a proton. This potential interaction does not neatly align with any basic theoretical models currently available, amplifying its intrigue.
The significance level of this finding sits at 2.6 sigma, implying a roughly 0.5% chance that it could stem solely from known backgrounds. While this is remarkable, it remains well short of the 5-sigma threshold recognized as a discovery in the realm of physics.
Data collection at SURF will continue, thereby providing an opportunity for researchers to monitor whether the indication of dark matter strengthens, weakens, or fades away with more data accumulation. “We’re very intrigued by this event appearing in the anticipated dark matter region, where competing backgrounds remain fairly low,” remarked Rick Gaitskell, a professor at Brown University and spokesperson for LZ. “However, we’re cautious; with just one event, we’re not claiming to have observed dark matter, but rather something noteworthy that merits sharing with the scientific community for further analysis.”
A Robust UK Involvement
The UK has played a pivotal role in the LZ experiment, with funding from the Science and Technology Facilities Council (STFC) bolstering both its construction and operations. A total of 10 UK teams contribute significantly, including prestigious institutions such as the University of Bristol, Imperial College London, and University of Edinburgh, among others.
Combining the expertise and efforts of around 250 researchers from 39 institutions, the collaboration features about 50 UK scientists who are engaged in operations, data analysis, and leadership roles since the project’s inception in 2021. The STFC’s national laboratories, specifically the Particle Physics and Technology Departments, along with the Boulby Underground Laboratory, have been integral in developing and delivering crucial components of the experiment.
Professor Henrique Araújo from Imperial College London and STFC’s Particle Physics Department leads the UK segment of the LZ project. He expressed pride in the Bristol group’s thorough scrutiny of this analysis, stating, “After a couple of years of hard work, they emerged with their findings. I eagerly anticipate examining more data. Our position today stems from the instrumental role we played in designing and constructing this fantastic apparatus.”
Professor Pawel Majewski, who heads the Dark Matter group at STFC’s Particle Physics Department and acts as an LZ co-investigator, highlighted the significance of the findings. “The achievements and advancements of LZ underscore the viability of liquid xenon technology and the necessity for ongoing explorations with larger experiments. With the results released today, transformative discoveries may be just around the corner.”
Looking Ahead: The Next Generation of Dark Matter Detection
LZ’s findings encompass notable observations, including the most significant identification of solar boron-8 neutrinos and the recent elusive signal, which could potentially hint at dark matter detection. Collectively, these results represent years of collaborative research and insist on the value of further endeavors through a larger next-generation experiment.
The UK team is actively collaborating with international partners on the XENON-LUX-ZEPLIN-DARWIN initiative, aimed at establishing a cutting-edge rare-event observatory for dark matter detection and neutrino physics. This promising project is currently backed by a preliminary activity from the UKRI Infrastructure Fund, with aspirations of setting it up at the Boulby Underground Laboratory in the near future.
Science
Unexpected Signal Discovered in LZ Detector Alters Dark Matter Search | Imperial News
Imperial researchers help analyze a mysterious particle interaction, the most intriguing seen to date in the search for dark matter by the LUX-ZEPLIN experiment.
Dark matter remains one of the universe’s great mysteries. Despite being thought to comprise most of the matter in existence, scientists have not yet been able to conclusively identify what it is. Recent findings from the LUX-ZEPLIN (LZ) experiment have shifted the focus back onto this enigmatic topic, reporting an unusual particle interaction that has captured the attention of the scientific community.
In a groundbreaking study, the LZ collaboration reported detecting a single particle interaction that defies explanation through known signals from ordinary particles. While this anomaly does not meet the criteria for a discovery, it marks the most compelling potential signal connected to dark matter identified by the experiment so far. This finding was officially presented at the 2026 TeV Particle Astrophysics conference in Japan, with plans for the paper to be published on arXiv and submitted to Physical Review Letters.
The LZ experiment stands as the world’s most sensitive dark matter detector, expertly designed to search for weakly interacting massive particles (WIMPs), considered as strong candidates for dark matter. Located nearly a mile underground at the Sanford Underground Research Facility (SURF) in South Dakota, the experiment utilizes liquid xenon to hunt for the rare collisions that might provide evidence of dark matter’s existence.
The intriguing event was identified in data collected over 220 live days from March 2023 to April 2024. Unlike earlier searches focusing on lower-energy interactions, this recent study examined higher-energy signals where they anticipated encountering episodes with minimal background interference. The discovery is particularly surprising, as early predictions indicated that any signal from WIMPs would present itself initially at lower energy levels.
If indeed this particle interaction is linked to dark matter, it could imply a heavier variant of WIMPs than previously anticipated. Rick Gaitskell, a professor at Brown University and the spokesperson for the LZ collaboration, expressed excitement, stating, “We’re intrigued to see this event in the data, in the region where we expect dark matter to show up and the competing backgrounds are very low.” However, Gaitskell emphasized caution, noting that with only one event observed, they are not making claims about discovering dark matter but rather sharing something noteworthy that warrants further investigation.
A Mystery Signal Scientists Can’t Yet Explain
The statistical significance of this surprising result is currently measured at 2.6 sigma. This indicates that the collaboration is proceeding with caution regarding its interpretation. The LZ team employs advanced methodologies, including multiple layers of active shielding, to filter out signals generated by cosmic rays, neutrons, and other background particles—essentially noise that could mask genuine signals from dark matter.
Professor Henrique Araújo from Imperial College and the STFC remarked, “We shouldn’t be too surprised that rare event searches are also sensitive to rare backgrounds, so we need to analyze more data to be sure. But these are certainly interesting times!” This highlights the complexity of distinguishing between potential signals of dark matter and various background processes.
The collaboration comprises an international team of 250 scientists and engineers from 39 institutions and is managed by the US Department of Energy’s Lawrence Berkeley National Laboratory. The UK contingent gathers researchers from ten institutions, all pulling together efforts led by Professor Araújo.
Sam Eriksen, a senior research associate at the University of Bristol and the lead author on the upcoming paper, emphasized the importance of their findings. He stated, “This was a detailed study in a region we hadn’t explored within this dataset. We understand our detector and the backgrounds so well that even a single outstanding event, like the one we found, is important. We expect dark matter events to be extremely rare, so only a handful could mark the first detection of WIMP dark matter.”
Researchers at Imperial have contributed significantly across all aspects of the LZ experiment—from development to analysis—and have assisted in scrutinizing this unusual particle interaction. Imperial President’s Scholar Elisa Jacquet expressed her excitement, having developed a new framework for analyzing LZ waveforms that contributed to confirming aspects of the event itself, all while on-site in South Dakota during its recording.

Researchers assess LZ’s central detector while it is wrapped in foil. (Credit: Matthew Kapust/Sanford Underground Research Laboratory)
What Happens Next?
The LZ experiment has already amassed considerably more data than what has been analyzed for this finding, and researchers are turning their attention to this expanded dataset to see if the signal strengthens, diminishes, or can be attributed to a previously unidentified background source.
Additionally, the collaboration is actively seeking ways to extend LZ’s operations beyond 2028, which would enable the gathering of even more data in the relentless pursuit of dark matter. Looking ahead, researchers anticipate that a larger detector will be needed to fully interpret similar signals. The proposed XLZD Rare Event Observatory aims to house around ten times more liquid xenon than the LZ, with the potential for detecting hundreds of similar interactions throughout its operational life. Professor Araújo notes that XLZD is already in the design phase and could be functional by the mid-2030s, potentially hosted at the Boulby Underground Laboratory in the UK.
While the LZ collaboration proceeds with caution, researchers stress that this finding, while not definitive proof of dark matter, represents the most fascinating signal observed to date by LZ. Professor Tim Sumner, a founding member of the Imperial dark matter team from the 1980s, encapsulated the excitement of this moment: “This is certainly an exciting observation; if we confirm this to be new physics, it would be the culmination of several decades of underground experiments and the start of a new era of exploration.”
Based on a press release by the Berkeley National Laboratory.
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