Duke University chemists have developed a method to measure temperature changes inside the body with unprecedented precision by correcting a subtle error in MRI theory. This improvement enables accurate temperature mapping, which is essential for hyperthermia cancer therapy and other treatments.
Cells undergoing apoptosis exert substantial forces on surrounding cells, contributing to processes like wound formation and organ development. Apoptotic cells imploding and withdrawing create a force that aids in closing eye-shaped openings during embryonic development.
The Center for Environmental Implications of NanoTechnology (CEINT) aims to define the relationship between various nanomaterials and their potential environmental exposure and ecological consequences. Researchers plan to develop a rigorous risk assessment framework, collaborating with policy-makers and society.
Duke University scientists have developed a new microscopy technique that enables peeking so deep into living tissue as to see molecules interacting. By combining optical coherence tomography with miniscule particles of gold, researchers can achieve higher resolutions than traditional methods.
International researchers establish protocols for reproducible toxicological testing of nanomaterials in cells and animals. The International Alliance for NanoEHS Harmonization aims to improve correlations between in vitro and animal testing.
A novel 3D ultrasound probe guides catheter procedures with clearer real-time images, eliminating x-ray radiation and contrast agent risks. The device is portable and provides continuous imaging, enabling wider range of interventional procedures.
Researchers at Duke University have synthesized largazole, a marine algae extract with potential as an anti-cancer agent. The team's efficient synthetic route enables the production of gram-sized quantities, paving the way for further study and potential treatment of various cancers.
A Duke University engineer and colleague have applied the constructal theory to explain how trees are designed for water flow and wind resistance. The resulting patterns and proportions match those of the Eiffel Tower, highlighting the interconnectedness of nature's flow systems.
The discovery of tiny fossilized teeth from India pushes the primate timeline back by almost 10 million years, revealing a new genus and species of anthropoid primates. The findings suggest these early primates lived on a fruit and insect diet and were no larger than modern dwarf lemurs.
Duke University scientists found that microbes' nutrient balance affects carbon dioxide release into the atmosphere. A universal mathematical formula can predict decomposition patterns globally.
A study by Duke University researchers found a possible geographical pattern for ALS cases among 1991 Gulf War veterans, with some areas of service showing an elevated risk. The research uses GIS analysis to identify potential environmental exposures that may be associated with the disease.
Researchers find that tree canopy-inspired branching design is more efficient than traditional models in controlling liquid flow. The study uses constructal theory to create 'smart' materials with self-healing and self-cooling properties.
Lemur males use scent glands on their bodies to advertise fitness and family relationships, with individual scents reflecting genetic quality. Researchers analyzed chemical components in ringtailed lemur scents using sophisticated machinery.
Researchers developed a system that enables users to access location-specific, real-time information from other mobile phone users across the world. The virtual sticky note application combines capabilities of distributed networks, social networks, and geographic positioning technologies.
Expressing fuel efficiency in gallons per mile rather than miles per gallon can help consumers choose more fuel-efficient cars. This format reveals the actual gas savings from improvements in fuel efficiency, making it easier for families to identify the most efficient option within their chosen car class.
A Duke University chemist has created a method to produce synthetic ketone molecules in only one shape, using a faster and more efficient process than previous methods. This breakthrough could lead to the development of drugs with fewer side effects and increased patient safety.
A genetic tool called RNA interference may help remove harmful microbes and viruses from drinking water. The approach, which targets a specific gene in a fungus found in water, has promise for solving safe drinking water issues in underdeveloped countries.
Researchers at Duke University have successfully assembled five micro-robots into a self-organized structure using global control and slight variations in device dimensions. The microrobots, measuring just 100 times smaller than previous designs, can move, turn, and circle together with precision.
Researchers at Duke University have developed a new method to measure the size and shape of the nucleus in living cells, using angle-resolved low coherence interferometry (a/LCI). This technique allows for rapid and accurate measurements, enabling scientists to better understand how changes in nucleus shape influence gene expression.
Researchers found that smaller primates have an evolutionary edge due to their ability to climb with minimal energy expenditure. This discovery challenges the longstanding assumption that climbing is energetically expensive for all primates.
Researchers at Duke University have discovered a genetic 'tag team' that regulates the cell cycle, finding that nearly 70% of periodic genes continue to turn on and off without cyclins. The study suggests a new understanding of gene regulation in mammalian cells.
Researchers at Duke University have made significant advancements in autonomous robot surgeries, demonstrating the feasibility of robots performing complex procedures under real-time 3-D ultrasound guidance. The technology has the potential to improve patient safety by reducing radiation exposure and enhancing surgeon precision.
Researchers at Duke University have developed a new 3-D ultrasound technology that can see in real-time the arteries within the brain, improving stroke diagnosis and care. The technology uses advanced imaging techniques to compensate for the thickness and unevenness of the skull, allowing for faster and more accurate diagnoses.
Researchers have successfully grown aligned and straight single-walled carbon nanotubes in large numbers using a quartz surface as a template. The achievement marks a significant step forward for the development of nano-scale electronics, which could enable the creation of ultra-tiny chips with improved performance.
A new study by Duke University researchers found that big-brained primates, such as humans and chimpanzees, live longer and have more complex social skills due to their larger brain size. This extended life span allows them to reproduce for a longer period, increasing their chances of survival and passing on their genes.
Researchers created a living system using genetically altered bacteria to study the dynamics of interacting populations. The system, which consists of two distinct populations of bacteria that control each other's survival rates, provides a unique model for exploring population changes in a predictable manner.
Researchers at Duke University have developed a ceramic membrane that allows fuel cells to operate at low humidity and higher temperatures, potentially improving efficiency. This new membrane could address current limitations in fuel cell technology and attract investment for its commercialization.
A provocative study by Dan Ariely found that a 10-cent pill is less effective at killing pain than a $2.50 pill, even when they are identical placebos. The study suggests that patients' subjective ratings of pain are influenced by the perceived quality and cost of medications.
Junipers' adaptation to avoid 'cavitation' allows them to withstand dry conditions, while their low specific leaf area enables them to conserve water. This study reveals the key structural features behind juniper trees' exceptional drought tolerance.
Researchers develop phylogenomic toolkit to analyze lemur genomes, confirming a single ancestral species for the diverse array of lemurs. The study provides insights into primate evolution and highlights the importance of Madagascar as a biodiversity hotspot.
Researchers at Duke University have developed a new method to model the genetic pathways underlying cancer, identifying connections between gene sets. The study reveals that specific gene sets work together to support cancer development and progression.
A recent study has found that heavy marijuana use is associated with an increased risk of developing periodontal disease. The study, which tracked over 900 individuals, found that frequent cannabis use since age 18 was linked to more than one-third of new cases of gum disease between ages 26 and 32.
Researchers found that lower transmission rates increase dengue deaths by reducing the development of immunity to new strains during a critical cross-immunity period. This allows the virus to gain entry into cells and cause more severe infections.
Scientists have found that polygamous baboon fathers who spend time with their children during juvenile years can influence their daughters' fitness. The study, led by Duke University professor Susan Alberts, suggests that fatherly presence can give offspring a jump-start on reproduction, especially among females.
A new global overview by Duke University soil scientist Daniel Richter emphasizes the need to address soil health due to increased cultivation, grazing, and logging. The study highlights the importance of long-term observation and analysis to understand how to sustain soils and minimize adverse effects on the environment.
Researchers at Duke University have successfully created a three-dimensional sound cloak in theory, allowing sound waves to travel around it undistorted. This breakthrough could lead to improved acoustics in concert halls and hidden submarines from sonar detection.
Researchers at Duke University developed a high-energy form of ultrasound imaging that produces clearer images of liver tumors. The Acoustic Radiation Force Impulse (ARFI) method uses sound waves to push on tissues, capturing their elasticity and stiffness, which can help distinguish between hard and soft tumors.
A Duke University-led study found that North Atlantic Ocean surface waters warmed from 1950 to 2000 due to natural wind patterns called the North Atlantic Oscillation (NAO), not human-caused global warming. The subpolar regions cooled while subtropical and tropical waters warmed
A team of researchers at Duke University has successfully transferred encoded information from a laser beam to sound waves and back again, opening the door for ultra-fast optical communications networks. The new method uses stimulated Brillouin scattering to create acoustic vibrations that can retain data for brief intervals.
Researchers developed a logical decision model to help women weigh the benefits of motherhood against its effects on career and social interests. The model suggests that having a child at a younger age may be better for women in their early careers, as taking a maternity leave has less impact on future career prospects.
A study of over 3,000 breastfed infants found that having the FADS2 gene variant increased intelligence by an average of nearly 7 IQ points. The researchers suggest that breastfeeding may account for these differences in intelligence due to the presence of certain fatty acids.
Research from Duke University finds that optimism relates to various behaviors, including wise decision-making in small doses. However, extreme optimists display unwise financial habits such as working fewer hours, saving less money, and making impulsive investment decisions.
Researchers developed a magnetic separation technique that can sort beads hundreds of times smaller than the period at the end of a sentence. This method, called magnetophoresis, uses a rotating magnetic field and microchip to separate tiny magnetic beads based on size within minutes.
Researchers found that screeners are more accurate in visual searches when allowed to correct their choices, but errors rise for rare targets. The study suggests improving airport security and cancer screening by addressing execution errors and perception issues separately.
A six-year study by Duke University scientists found that current phosphorus standards protect the Everglades, but high levels persist near outer edges. The researchers suggest a threshold protective zone of 12-15 micrograms per liter is more realistic for the changeable system.
A Duke University professor developed an instructional tactic to boost science knowledge in high school students, teaching them about the chemistry of cocaine addiction and methamphetamine harm. The 'stealth learning' method increased basic science knowledge by 16 percent among 7,210 students.
Researchers at Duke University have developed an inkless microcontact printing technique using enzymes from E. coli bacteria, achieving features as small as 1 nanometer in precision. The method eliminates the need for ink and improves resolution limits by hundreds of times.
Duke University researchers have devised a method to test for the presence of naked singularities, potentially existing in certain instances. Their study suggests that high-spin black holes could shed their event horizon and become observable through gravitational lensing effects.
Researchers at Duke University warn that dams in California's Central Valley are harming spring-run Chinook salmon populations by blocking access to habitat and fragmenting these populations. The study suggests removing dams could help alleviate water shortages and aid fish species.
Researchers have created 'pro-chelators' that can selectively bind to potentially destructive forms of iron in the brain, reducing oxidative stress and cell damage associated with these diseases. The iron-binding agents are designed to target only harmful iron species, allowing benign forms to carry out vital functions.