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College of Engineering, Carnegie Mellon University


Carnegie Mellon study finds that rideshare launches boost regional GDP and flexible jobs

A new study from Carnegie Mellon University and Oxford Saïd Business School found that the entry of ride-hailing platforms drove measurable increases in economic output and intermittent employment. Regional GDP per capita increased, and the number of seasonal, temporary, or intermittent jobs rose after Uber and Lyft entered the region.

Carnegie Mellon-led research shows how behavioral science silently protects American consumers and patients

A new PNAS special feature showcases the critical role of behavioral and decision sciences in U.S. governance, highlighting how psychological and economic research protect public health, consumer rights, and finances across federal agencies. The research demonstrates how 'invisible' scientific frameworks streamline medical drug reviews...

SourceCollege of Engineering, Carnegie Mellon University·JournalProceedings of the National Academy of Sciences·DateJul 6, 2026

New stimulation method builds on focused ultrasound research

Researchers developed a new noninvasive brain stimulation technique by combining focused ultrasound with electrical stimulation, producing stronger, targeted brain responses. This approach, called transcranial electro-acoustic stimulation, clarifies conflicting results in the field and introduces a new approach to noninvasive brain sti...

SourceCollege of Engineering, Carnegie Mellon University·JournalNature Communications·DateMar 10, 2026

Carnegie Mellon researchers bring sickle cell disease pain into focus

A new study by Carnegie Mellon University's Wood Neuro Research Group uses advanced brain imaging and a digital visualization tool to better understand how pain is processed in the brain for people with sickle cell disease. The team found that patients had reduced connectivity across key brain networks linked to pain perception, partic...

Carnegie Mellon researchers discover new minimally invasive method for deep brain stimulation to treat depression and other neural conditions

Researchers at Carnegie Mellon University have developed a new, minimally invasive method called DeepFocus for treating depression and other neural conditions using transnasal electrical stimulation. This technique offers more accurate and efficient targeting of deep brain structures with lower risk.

SourceCollege of Engineering, Carnegie Mellon University·JournalJournal of Neural Engineering·DateMar 5, 2025

Carnegie Mellon to lead development of implantable cell-based bioelectronic devices for patient-specific treatment and disease monitoring

A Carnegie Mellon-led team has secured a $42 million grant to develop implantable, cell-based bioelectronic devices for real-time therapy and disease monitoring in patients with thyroid disorders. The devices will offer adjustable, low-cost treatment and continuous biomarker measurement.

Quantifying barriers to establishing sequestration wells

A recent study from Carnegie Mellon University estimates the time required to develop, approve, and implement a geologic sequestration site in the US, identifying six clearance points that must be passed for a site to become operational. The findings suggest that on average, there is a 90% probability that the time required for a site ...

SourceCollege of Engineering, Carnegie Mellon University·JournalProceedings of the National Academy of Sciences·DateDec 18, 2023

Grasshopping robots made possible with new, improved latch control

Researchers at Carnegie Mellon University have developed a latch control system that enables grasshopping robots to perform efficiently on soft substrates. The team discovered that the latch can not only regulate energy output but also mediate energy transfer between the robot and its environment, leading to improved jump performance.

SourceCollege of Engineering, Carnegie Mellon University·JournalJournal of The Royal Society Interface·DateMar 2, 2023

Support for carbon capture and sequestration is key to a greener, more reliable grid

Researchers at Carnegie Mellon University find that existing coal-fired plants can produce electricity at a cost comparable to renewables with energy storage. The study suggests modifications to current tax incentives to increase deployment of carbon-constrained fossil-fuel and negative emissions technologies.

SourceCollege of Engineering, Carnegie Mellon University·JournalEnvironmental Science & Technology·DateAug 5, 2022

Advancing dynamic brain imaging with AI

A new AI-based dynamic brain imaging technology has been introduced by Carnegie Mellon University, which can map out rapidly changing electrical activity in the brain with high precision and speed. The technology uses deep learning approaches to translate scalp EEG signals back to neural circuit activity without human intervention.

SourceCollege of Engineering, Carnegie Mellon University·JournalProceedings of the National Academy of Sciences·DateJul 28, 2022

Top-tier research institutions form alliance to explore equitable career advancement in higher education

Carnegie Mellon University, Johns Hopkins University, and New York University team up with a $3 million NSF grant to develop Project ELEVATE, promoting equitable STEM career advancement for underrepresented faculty. The alliance aims to create a collaborative community for institutional change at private research institutions.

New tool for energy sector models carbon capture incentives

A new model, developed by Carnegie Mellon University researchers, identifies coal- and natural gas-fired electricity generation plants suitable for carbon capture technologies. The tool takes into account various factors like plant age, efficiency, location, and technology to explore optimal CO2 reduction strategies at an affordable cost.

SourceCollege of Engineering, Carnegie Mellon University·JournalInternational Journal of Greenhouse Gas Control·DateOct 5, 2021

Research sheds new light on decreased performance under pressure

Researchers from Carnegie Mellon University and the University of Pittsburgh conducted a study on three Rhesus monkeys, finding that their performance declined by up to 25% when offered a jackpot reward. The team also discovered a link between sensory motor processing and emotional processing in the monkeys' brains.

SourceCollege of Engineering, Carnegie Mellon University·JournalProceedings of the National Academy of Sciences·DateAug 24, 2021