Caltech bioengineers create a super-compact high-resolution microscope, small enough to fit on a finger tip, operating without lenses. The optofluidic microscope can be used in the field to analyze blood samples and mass-produced for $10.
Researchers propose an alternative explanation for monsoon formation, suggesting interaction between tropical circulation and large-scale turbulent eddies. This new understanding may lead to better predictions of monsoons and semi-empirical models.
Researchers at Caltech uncover how HCMV uses a stolen class 1 MHC protein, UL18, to hide from the immune system. The virus's decoy protein binds tighter than real MHC molecules, inhibiting immune response and allowing it to thrive without harming its host.
A study by Caltech and UNC researchers found that some parents of children with autism process face information differently, suggesting a genetic link. The analysis revealed that these parents relied more heavily on the mouth to recognize emotions than non-aloof parents or those without autism.
Scientists at Caltech used computer modeling to demonstrate that the Mars dichotomy can be explained by one giant impact early in the planet's history. The study found that an impact energy of around 10^29 joules, equivalent to 100 billion gigatons of TNT, would have created the lowlands and highlands on Mars.
Researchers have discovered that the brain uses a forward model to generate predictions about future movements, allowing for rapid and accurate control. This breakthrough has significant implications for the development of neural prosthetic devices and could one day enable people with paralysis to control their limbs through thought.
The study reveals that no more than 4% of energy loss is caused by gravitational waves, disproving a key hypothesis. The analysis provides valuable information about the pulsar and its structure, shedding light on the role of gravitational waves in its dynamics.
Maarten Schmidt's discovery of high redshifts in quasar 3C273 led to a new understanding of quasars as compact halos surrounding massive black holes. He shares the award with Donald Lynden-Bell for their contributions to astrophysics.
Researchers at Caltech identified a sugar molecule produced by beneficial gut bacteria that induces immune cells to produce anti-inflammatory molecules, potentially treating inflammatory bowel diseases. The discovery suggests a new approach to treating human diseases linked to the loss of beneficial microbial interactions with our bodies.
Studies revealed that people's brains respond differently to unfairness, with the orbital frontal cortex reacting to giving and the insula processing inequity. The findings suggest that a basic impulse to be fair is hardwired in humans, driven by emotional responses.
Researchers analyzed GPS data and coral growth bands to understand strain buildup between earthquakes. They found that locked fault zones store strain, which releases during future large earthquakes. The study aims to improve earthquake models and tsunami risk assessment.
Three Caltech researchers, David Chan, Michael Elowitz, and Grant Jensen, were selected as new HHMI investigators. They will focus on mitochondrial dynamics, genetic circuits, and biological imaging to advance scientific knowledge dramatically. The selection brings the total number of HHMI investigators at Caltech to 10.
Researchers at Caltech found that the brain uses temporal activity patterns of neurons to represent odors, with specificity arising from considerations of their timing. This coding principle may be common to most animals, including humans, and could have implications for understanding odor perception.