Researchers found that mosquitoes primarily use smell to detect CO2 plumes from 10-50 meters away, then switch to visual cues as they get closer. Visual and thermal sensory information are combined to create a spatial map of the host's location, allowing mosquitoes to pinpoint their target.
Caltech researchers used ultrafast electron crystallography to visualize changing atomic configurations of phase-change materials. They discovered a previously unknown intermediate atomic state that represents a physical limit to data recording speeds.
Researchers developed an electrochemical platform to measure DNMT1 activity, a protein linked to cancerous transformation, in crude tissue samples. The technique shows promise for early detection of colorectal cancer with high sensitivity and minimal invasion.
Researchers use ALMA to observe dust contents of galaxies at redshift 5-6, revealing a new evolutionary stage. Average-sized galaxies contain less dust than expected, suggesting a previously unseen transition from gas to the first generation of galaxies.
Researchers discovered a novel self-repair mechanism in moon jellyfish, where injured animals regain symmetry through resymmetrization rather than tissue regeneration. This process relies on mechanical forces and viscoelastic properties of the jellyfish's body material to rebalance the unbalanced forces.
A new trial design, called a two-by-two trial, can account for behavior-treatment interactions and provide more accurate efficacy results. By randomizing both treatment and probability of treatment, researchers can quantify the effects of treatment, behavior, and their interaction.
A team of researchers identified a yeast protein network that regulates fat storage in yeast, analogous to human obesity. The study suggests that yeast could serve as a valuable test organism for studying human obesity, with the removal of specific proteins resulting in increased cellular fat content.
Caltech researchers successfully implanted a device in a patient with quadriplegia, allowing him to control a robotic arm with his thoughts. The new approach records signals from the posterior parietal cortex, improving motor control and making movements more natural.
A team of Caltech astronomers detected a Type Ia supernova in nearby galaxy IC831, providing evidence for the single-degenerate model. The data suggest that the white dwarf's powerful gravity pulls material from the companion star, leading to a runaway nuclear reaction.
A new Caltech study reports that fruit flies display emotion primitives analogous to fear, including valence, persistence, scalability, trans-situationality, and context generalization. The researchers used a fear-inducing stimulus to track the flies' responses, finding that they exhibited these primitive states in their behavior.
Recent NuSTAR observations of supernova SN 1987A confirm the predicted lopsided nature of stellar giant deaths, with most material moving away from the observer. This finding supports supercomputer simulations that assume asymmetrical core collapse and could help solve the mystery of dual black hole and neutron star formation.
Scientists have identified a new chaperone protein, Acl4, that helps assemble ribosomal protein L4 into a developing ribosome. This discovery provides insights into the stepwise process of ribosome assembly and has potential applications in antifungal agents and disease research.
Caltech scientists develop nanodevices that can measure the mass of individual molecules and reveal their three-dimensional spatial distribution, crucial for identifying large protein complexes. This technology enhances protein identification and analysis, improving odds in discovery mode.
Scientists have discovered that uncertainty in causal relationships is the main factor in determining one-shot learning. The ventrolateral prefrontal cortex evaluates such uncertainty and activates one-shot learning when needed. This finding could lead to new approaches for helping people learn more efficiently.
Researchers at Caltech have discovered the detailed mechanism of action for Xist, an lncRNA that silences the X chromosome in female embryos. By understanding how Xist works, scientists can gain insights into long non-coding RNAs and their role in regulating cellular processes.
Researchers at Caltech have developed a device called a frequency comb to detect terahertz waves, allowing for precise measurement and identification of molecules in space. The device can measure thousands of frequencies simultaneously, enabling scientists to analyze the chemical fingerprints associated with various molecules.
Researchers at Caltech discovered that certain bacteria in the gut are essential for producing peripheral serotonin. The study found that mice with normal gut microbes had higher levels of serotonin than those without, and that specific species of bacteria elevated serotonin levels.
A new nanophotonic coherent imager (NCI) developed at Caltech uses an inexpensive silicon chip to provide the highest depth-measurement accuracy of any such device. The NCI produces high-resolution 3D images with micron-level resolution, enabling applications in 3D scanning and printing, driverless cars, and human machine interfaces.
Researchers propose that a second generation of planets, including super-Earths, existed in the inner solar system before being destroyed by Jupiter's massive migration. This scenario helps explain why Earth and other terrestrial planets have relatively low masses compared to exoplanets orbiting other sun-like stars.
Researchers at Caltech have developed a method to produce high-mobility graphene in a single step at lower temperatures, resulting in fewer defects and improved electrical properties. The new technique has the potential to pave the way for commercially feasible graphene-based solar cells and electronics.
A new study suggests that Antarctic glaciers are more sensitive to climate change than previously thought due to Coulomb friction. The West Antarctic Ice Sheet's melting rate is significantly increased when accounting for frictional stresses, which can lead to accelerated sea-level rise.
Researchers at Caltech have developed a nickel oxide film that enables record-efficient and stable chemical processes in the production of fuels like hydrogen. The film works well with a membrane to separate oxygen and hydrogen gases, ensuring safety and efficiency in the system.
Researchers found that zebrafish larvae with a mutation unable to produce melatonin slept half as long as normal fish. When the mutation was 'cured' by killing pineal gland cells, the fish returned to a normal sleep pattern. The study suggests naturally occurring melatonin plays an important role in regulating sleep.
Researchers sequenced and analyzed the genome of a specific hookworm species to discover new information for treating parasitic infections. They identified unique protein families, such as ASPRs, that may block the host's immune response, paving the way for potential new treatments.
Scientists have uncovered a key factor driving iron's unique thermal behavior, revealing a synergy between magnetism and atomic vibrations that increases the metal's stability at high temperatures. This breakthrough could lead to more accurate predictions of steel properties and enable the development of new, stronger alloys.
A team of Caltech chemists has discovered a method to produce silicon-containing organic chemicals without using expensive precious metal catalysts. Potassium tert-butoxide, a cheap and abundant chemical, is more effective at running challenging chemical reactions than state-of-the-art precious metals.
Researchers at Caltech develop antibody-based molecules that bind to and neutralize HIV more effectively than natural antibodies, offering a potential approach to engineer more effective HIV-fighting drugs. The breakthrough uses DNA as a molecular ruler to design novel molecules.
A recent study by Caltech neuroeconomists found that the speed at which people factor in healthiness affects their ability to exercise self-control. On average, taste information begins to drive food choices 200 milliseconds before health information does.
Researchers at Caltech have developed a new technology to absorb and utilize infrared light, often lost in traditional solar panels. This breakthrough could lead to more efficient solar cells and sensors that detect light using electrostatic potential.
A team of researchers has discovered an ancient, deep canyon in South Tibet, which rules out a popular model explaining the formation of Himalayan gorges. The canyon is thousands of feet deep and was carved by a river that once flowed into the Tibetan Plateau.
Researchers used robotic ocean gliders to study the transport of warm water near the Antarctic coast, discovering that swirling ocean eddies play a key role in this process. The findings will aid in determining how rapidly ice is melting and contributing to rising ocean levels.
A team of engineers and scientists has identified a source of electronic noise that could impact the functioning of instruments operating at very low temperatures. At around 20 kelvins, phonon modes become deactivated, allowing high-energy phonons to carry away heat and causing devices to heat up.
Researchers detected a diffuse cosmic glow originating from stripped stars flung out into space after galaxies collided and merged. The findings suggest previously undetected stars permeate dark spaces between galaxies, forming an interconnected sea of stars.
Researchers have successfully crystallized carbon monoxide bound to the FeMo-cofactor of nitrogenase, a long-sought structure that could reveal the enzyme's mechanism. The breakthrough, achieved by Thomas Spatzal and colleagues, uses optimized crystallization methods and tiny crystal seeds to accelerate growth.
Researchers use Hubble and Spitzer Space Telescopes to study super-Earths, discovering that water worlds are possible compositions. The team's analysis reveals that super-Earths could have acquired their mass by pulling in solid material from distant orbits.
Astronomers using NASA's NuSTAR telescope have discovered a pulsar in the Cigar Galaxy, emitting energy about 100 times brighter than predicted. This finding challenges long-held assumptions about ultraluminous X-ray sources and may lead to re-evaluation of other objects previously thought to be black holes.
The study, published in the Proceedings of the National Academy of Sciences, uses control theory to analyze heart rate data from athletes and found that a healthy heart must maintain certain patterns of variability during exercise to keep the body in balance. This variability is essential for maintaining homeostasis and preventing fati...
Researchers at Caltech have developed a new tool that uses genetic engineering and light to visualize and map neural networks in living organisms. The tool, which detects changes in membrane voltage, allows for real-time observation of neuronal activity and its effects on behavior.
Researchers at Caltech have developed a new technique called vectored immunoprophylaxis (VIP) to prevent the spread of diseases like HIV, malaria, and influenza. This method provides specific antibodies that can neutralize pathogens, offering a potential solution for widespread use in the less developed world.
Researchers studied lamprey embryology to understand the evolutionary origins of modern vertebrates. They discovered that Hox genes play a crucial role in hindbrain segmentation, which is conserved across vertebrates.
Researchers at Caltech have discovered a seesaw-like circuit in the mouse amygdala that controls whether animals engage in social or repetitive asocial behaviors. The discovery, led by Weizhe Hong, may have implications for understanding neural circuit dysfunctions underlying autism in humans.
Caltech materials scientist Julia Greer and her colleagues have developed a method to create ceramics with unusual properties, such as being strong, lightweight, and nonbreakable. The researchers used direct laser writing to produce three-dimensional nanolattices that can recover their original shape after deformation.
Researchers confirm that textbook theory behind volcanoes is incorrect, with no evidence for narrow mantle plumes. Instead, large, slow-moving chunks of mantle drive volcano formation through plate tectonics.
Researchers at Caltech have developed a new technique called PARS that allows for whole-body clearing of tissue, enabling the study of individual cells and fine structures. This breakthrough has significant implications for disease diagnosis and development research.
Researchers have developed a method to stabilize microwave signals using laser beams as references, potentially replacing quartz crystals. This new technique, called electro-optical frequency division, enables stabilization of high-frequency signals with smaller devices, outperforming current electronic technology in some cases.
Researchers at Caltech and Virginia Tech found that wise traders receive an early warning signal from their brains before price bubbles form in experimental markets. These 'irrational exuberance' individuals buy aggressively during the bubble, while smart traders sell early, causing the bubble to burst and earning them more money.
A Caltech-led team has developed a new technique that can determine the temperature at which natural methane samples formed. This method uses clumped isotopes to provide an independent way to say the environment where methane was formed, helping to answer questions about its formation, storage, and chemical pathways.
A new method using SlipChip technology allows researchers to target and grow specific, previously uncultured microbes from the human gut. By isolating individual bacterial species, scientists can better understand their roles in human health and potentially identify beneficial or harmful microbes.
A study by researchers at Caltech found that chimpanzees consistently outperformed humans in the Inspection Game, a simple contest drawn from game theory. The chimps' rapid learning and near-optimal play suggest excellent short-term memory as a key factor in their success.
Researchers at JCAP devise a method to protect common semiconductors like silicon and gallium arsenide from corrosion in solar-fuel generators. They use a process called atomic layer deposition to form a protective layer of titanium dioxide, allowing the materials to absorb light efficiently while preventing corrosion.