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Georgia Institute of Technology


Tiny vibration-powered robots are the size of the world's smallest ant

Researchers at Georgia Institute of Technology have developed micro-bristle-bots that harness vibration to move and interact with their environment. The bots can be controlled by adjusting vibration frequencies and can potentially be used for tasks such as repairing injuries inside the human body or sensing environmental changes.

SourceGeorgia Institute of Technology·JournalJournal of Micromechanics and Microengineering·DateJul 17, 2019

Instability in Antarctic ice projected to make sea level rise rapidly

A study by Georgia Institute of Technology researchers suggests that instability within Antarctic ice will accelerate its flow into the ocean and push sea levels up at a more rapid pace than previously expected. This 'instability' makes forecasting more uncertain, particularly relevant to engineering against flood dangers.

SourceGeorgia Institute of Technology·JournalProceedings of the National Academy of Sciences·DateJul 8, 2019

Durability vs. recyclability: Dueling goals in making electronics more sustainable

A new study by Georgia Institute of Technology researchers highlights the challenges of designing products that balance durability and recyclability. While some products, like automobiles, can achieve both goals, many others face trade-offs between increasing device life span and reducing electronic waste. The study's findings suggest ...

SourceGeorgia Institute of Technology·JournalManagement Science·DateApr 4, 2019

Fluorescing urine signals organ transplant rejection, could replace needle biopsies

A new screening method using sensor particles and a urine test can catch organ rejection earlier and more comprehensively than traditional biopsies. The test detects T cell attacks on transplanted organs through fluorescent signals in the urine, allowing for early detection and potential adjustments to immunosuppressant medications.

SourceGeorgia Institute of Technology·JournalNature Biomedical Engineering·DateFeb 19, 2019

Long-acting contraceptive designed to be self-administered via microneedle patch

A new long-acting contraceptive designed for self-administration via microneedle patch technology has shown promise in animal testing, providing a therapeutic level of contraception for over a month with a single application. The experimental patch uses biodegradable polymers to slowly release the contraceptive hormone levonorgestrel.

SourceGeorgia Institute of Technology·JournalNature Biomedical Engineering·DateJan 14, 2019