New research from Duke University reveals that the way genes are used in humans differs significantly from that of chimps and other primates. The study found dramatic differences in gene regulation related to brain development and diet, which may have contributed to human adaptability and susceptibility to certain diseases.
A decade-long experiment found that trees only store significant amounts of carbon when receiving sufficient water and nutrients, suggesting proposals to bank CO2 in trees may not be effective
Researchers at Duke University found that high-intensity focused ultrasound can activate the immune system to attack cancer cells, including those that have spread through the bloodstream. The treatment uses mechanical vibration to break apart tumor cells, releasing toxic substances that alert the immune system to cancer threats.
Researchers create new technique for mass-producing nanoscale structures using atomic force microscope and macroscale milling machines. The method enables consistent production of features on the order of single molecules, paving the way for industrial-scale nanotechnology applications.
Researchers at Duke University have made direct measurements of DNA's forces within single strands that wind around each other to form the double helix. The study, published in Physical Review Letters, reveals new insights into the stacking and pairing forces between base units.
Researchers at Duke University have developed a new method for creating ultra-high resolution 3D images of tiny mouse brains using magnetic resonance imaging. The technology allows for the detailed visualization of brain structures and their relationship to genetics, enabling scientists to study gene-brain connections.
A Duke University study found that female white-crowned sparrows prefer newer versions of their love song, indicating a shift in mate selection and territorial behavior. The researchers used controlled laboratory tests to assess bird responses to different song versions, revealing subtle yet significant differences.
A new 3D ultrasound scanner developed by Duke University researchers enables better brain tumor detection and minimally invasive surgery guidance. The device, inserted through a small hole in the skull, produces high-quality images of brain structures, overcoming limitations of traditional MRI and CT scans.
Biomedical engineers at Duke University found that deep brain stimulation alleviates disease symptoms by creating an informational lesion through rapid-fire electrical pulses. This technique can be reversible and adjustable, offering a promising treatment for movement disorders and other conditions.
Researchers at Duke University found that music tones correspond to the same numerical ratios as human speech frequencies. The study suggests that our ears favor these relationships due to exposure through everyday speech. This discovery may explain why certain tuning schemes sound more natural, like just intonation.
A new study by Samantha Price finds that large grazing animals face a higher risk of extinction under intense hunting pressure. The analysis reveals that reproductive speed is the key variable in determining extinction risk, with species like the American bison being nearly wiped out due to slow reproductive cycles.
A recently discovered fossil skull of Aegyptopithecus zeuxis, an ancient primate relative of humans, apes, and monkeys, contradicts previous assumptions about its brain size. The study suggests that the species' brain was smaller than expected, with a visual cortex indicating sharp vision, and may have had a large social group.
A study suggests that drylands can be managed sustainably to protect biodiversity and culture of 2.5 billion people. Introducing hope rather than gloom, the report highlights the importance of local knowledge and collaboration between residents and managers.
Researchers from Duke University found that generic biologics are unlikely to be significantly cheaper than brand-name versions due to higher manufacturing and marketing costs. The unique characteristics of biologics make them harder to replicate, resulting in lower price competition.
A study by Duke University researchers found that products in clear packaging are vulnerable to negative properties being transferred from nearby products. This phenomenon, called 'product contagion,' can lead consumers to perceive affected products as less appealing.
Researchers at Duke University have developed an ultrasound imaging software that enables the display of real-time stereo image pairs, improving early diagnosis of birth defects and surgeons' depth perception during medical procedures. The technology has potential to be upgraded in existing 3D scanners with minor software changes.
A team of scientists has discovered a key mechanism by which plant proteins, Scarecrow and Short-root, regulate water and nutrient uptake in plants. This complex system ensures that plants can control the amount of water and nutrients they take in through their roots, enabling them to thrive in various environments.
The Medusa hydrothermal vent field, discovered off Costa Rica, features hot iron-darkened water attracting unusual marine life. Researchers have found pink jellyfish, spiky tubeworm casings, and heat-tolerant organisms thriving in extreme conditions.
Excluding consumers from promotions can actually increase their interest in a product, as they perceive others as more savvy buyers. In experiments conducted by Duke University's Fuqua School of Business, researchers found that naive consumers are attracted to products with freebies not available to them, leading them to believe that e...
A new Duke University study suggests that healthy coastal wetlands can adjust to rising sea levels by maintaining their vegetation and sediment supplies. This adaptation enables the marshes to function as effective buffers against coastal storms, while also providing habitat for commercially important fin and shellfish.
A new light-based probe built by researchers at Duke University has successfully detected the earliest signs of cancer in cells lining internal organs. The device uses changes in laser light scattering to identify pre-cancerous conditions, offering a promising alternative for early diagnosis and treatment.
A new understanding of plant calcium management could lead to genetically engineering plants to resist acid rain's damage. Plants use molecular sensors to detect and regulate calcium levels, which is crucial for structural rigidity and growth.
A 'smart bladder pacemaker' developed by Duke University researchers selectively coordinates the contraction and release of muscles required for maintaining continence. The device taps into the urinary circuit in the spinal cord, effectively emptying the bladder and increasing bladder capacity.
Researchers discovered that nonconscious exposure to a significant person's name can cause individuals to act in defiance of their partner's or boss's wishes. People with high levels of reactance tend to be more resistant to these influences.
Researchers at Duke University developed a new molecular 'fishing' technique using atomic force microscopy, allowing for fast and precise measurement of chemical concentrations. The method could be adapted for various chemicals and made faster by parallel testing.
Researchers at Duke University have found that lubricin helps reduce friction and maintain joint cartilage integrity, suggesting its potential as a treatment for osteoarthritis. The study used precise measurement of biomechanical properties to compare lubricin-deficient joints to normal ones.
Researchers describe a unified description of electron movements through certain proteins, uncovering key pathways that optimize energy harvesting in photosynthesis and animal cells. The study reveals complex routing options that allow electrons to take shortcuts, increasing the challenge for theoreticians.
A Duke University-led team of physicists has pinpointed the critical density level where granular materials suddenly cease flowing and congeal, exhibiting a phase change analogous to freezing. The study provides unprecedented analysis detailing what happens as free-flowing grains begin to get jammed by each other.
Neuroscientists at Duke University mapped neural activations for focused attention, shedding light on brain regions and timing involved. The study may aid clinicians addressing attention-related problems in conditions like schizophrenia and ADHD.
A 3D ultrasound scanner developed by Duke University engineers successfully guides a surgical robot to pinpoint targets in real-time. The technology has the potential to enable surgeries to be performed without surgeons, especially in remote locations or space stations.
Scientists found that orangutans confined to resource-limited areas of Borneo had smaller brains than those living in more abundant Sumatra. The study suggests an evolutionary connection between food availability and brain size in primates.
The team created a cloak using metamaterials arranged in concentric circles, which confers specific electromagnetic properties. The cloak appears to have properties similar to free space when viewed externally, reducing reflection and shadow detection.
A team of scientists reconstructed the early evolution of fungi, finding that ancestors may have lost flagellae and adapted to life on land in multiple instances. Fungi are believed to be animals' closest relatives and play a crucial role as decomposers in ecosystems.
Researchers at Duke University have devised a new way to prolong the effects of an anti-inflammatory drug, potentially making it useful for providing longer-lasting treatment for osteoarthritis. The modified drug could last for several weeks rather than just hours, offering a significant clinical gain and fewer negative side effects.
Duke University researchers developed a computer model to predict the effectiveness of various microbicidal recipes in destroying HIV before it reaches body tissues. The study found that a thin coating of microbicide delivered to the vagina can significantly reduce HIV transmission.
A team of researchers used a sophisticated laser system to gain evidence that neuromelanin, a dark brown pigment accumulating in brains, consists of layers of two other pigments: eumelanin and pheomelanin. This structural arrangement may play a critical role in the neurodegenerative cascade behind Parkinson's disease.
Researchers found that loblolly pines growing under elevated carbon-dioxide concentrations fared better during and after a major ice storm than those with current levels. The study suggests that forests may suffer less damage during each ice storm event in a future with higher atmospheric CO2.
The study estimates that birds have been going extinct at a rate of about one species per year since 1500, exceeding the natural rate by 100 times. Conservation efforts are reducing extinction rates to about one bird species every three or four years, but more species are likely to disappear during the 21st century.
Researchers found that over 40% of the marshes have been reflooded and native species are recovering, with growth in giant reeds and rare bird sightings reported. However, challenges remain, including water supply issues and potential environmental threats from oil exploration.
Researchers predict that braneworld black holes, created in the early universe, have survived and can be detected by observing gamma-ray bursts passing near them. The signature of these black holes could provide evidence for a fourth dimension of space.
Researchers at Duke University have reported a theoretical blueprint for an invisibility cloak made of metamaterials. The cloak can hide objects so well that observers are unaware of their presence, similar to how water flows around a smooth rock in a river. This technology has potential applications in wireless communications and acou...
Duke University researchers propose a new 'metal sandwich' alloy that could be superconductive at a higher temperature than current materials. Lithium monoboride, a binary alloy of boron and lithium, may have the potential to break the record for highest superconducting temperature.
A team of researchers has mapped the key root-development pathway in Arabidopsis using an advanced genomic technique, revealing eight direct targets and numerous indirectly affected genes. The study provides new insights into plant development and function, shedding light on the complex regulatory network governing root growth.
Researchers discovered that males of the extinct species Thyrohyrax had oversized, swollen lower jaws shaped like a banana, which may have been used to produce sound. The discovery suggests that Thyrohyrax and its fossil relatives were the only mammals to use this skeletal structure for sound production.
A new study uses ancient and modern climate records to estimate the impact of carbon dioxide on global temperatures, suggesting a 90% probability of a 1.5-6.2°C increase, with a reduced likelihood of exceeding 4.5°C.
A recent study published in the Public Library of Science Biology found that brain region IPS is activated when both four-year-olds and adults perceive numerical quantities. The researchers used fMRI to image blood flow in brain regions reflecting activity, revealing a similar neural basis for basic math skills in children and adults.
Duke University researchers have developed a technique using ferrofluids and magnetic traps to create 'nanocavities' that can be used as chemical detectors or for data storage. The team uses magnetics to manipulate microstructures, allowing for complex patterns to be assembled.
A new 3D ultrasound scanner is being developed to improve minimally invasive surgeries, offering a more precise view of the target area in real-time. The technology has shown promise in animal testing, particularly for monitoring heart function during cardiac surgery without general anesthesia.
A team of researchers found that a component of joint fluid called lubricin forms a thin barrier to prevent contact between joint surfaces, reducing wear and tear. The combination of lubricin and hyaluronic acid produces an even greater protective effect than either substance alone.
Researchers develop genetically engineered proteins to form erasable chemical detectors. They also create self-grown forests of molecular 'bottlebrushes' that keep themselves contamination-free. Additionally, they design auto-assembled DNA 'towers' that could serve as anchors for the tiniest devices.