Inventor builds AI laser system to zap mosquitoes

Steven Cheng has developed a series of AI-powered prototypes that use lasers to target and eliminate mosquitoes. The mobile system incorporates computer vision, deep learning, and infrared sensors for precise tracking.

Cheng spent four months creating an artillery-style cannon guided by computer vision and deep learning. He equipped version 3.0 with multi-sensor tracking, a high-speed gimbal that rotates in 0.6 seconds at 0.001-degree precision, and a toy Gatling-style launcher. The setup relies on a Canon digital single-lens reflex camera with a high-magnification zoom lens. Software identifies mosquitoes while detecting humans and flammable materials to prevent accidental harm, cutting laser power when needed. Later versions added wheels for mobility, a Gatling-gun design, and infrared vision for nighttime use. Cheng documented the project on X and noted that research involved countless mosquito bites. A separate crowdfunded device called the Photon Matrix, which also uses lasers against insects, is expected to ship this summer at a starting price of about $500.

Awọn iroyin ti o ni ibatan

A volunteer receiving a needle-free vaccine in a lab with AI-designed virus models in the background.
Àwòrán tí AI ṣe

AI-designed “pan-sarbecovirus” vaccine candidate reports early safety and immune-response signals in first human trial

Ti AI ṣe iroyin Àwòrán tí AI ṣe Ti ṣayẹwo fun ododo

A needle-free, DNA-based vaccine candidate designed using machine-learning methods has completed a first-in-human Phase 1 study in the UK, with researchers reporting it was well tolerated and induced immune responses against multiple viruses in the sarbecovirus group, which includes SARS-CoV, SARS-CoV-2 and related bat coronaviruses.

Alex Toussaint and Clovis Piedallu have created a 40-gram autonomous drone that detects and eliminates mosquitoes in flight using their acoustic signature.

Ti AI ṣe iroyin

China presented portable laser weapons for soldiers to shoot down drones at a defence equipment exhibition in Beijing.

Researchers have used genetically modified phages to harness pre-existing vaccine immunity and destroy cancer cells in mice. The approach eradicated tumors in 44 percent of treated animals with no recurrence after a year.

Ti AI ṣe iroyin

Researchers at MIT have discovered that chaotic laser light can self-organize into a highly focused pencil beam, enabling 3D imaging of the blood-brain barrier 25 times faster than current methods. The technique allows real-time observation of drugs entering brain cells without fluorescent tags. This breakthrough could speed up development of treatments for neurological diseases like Alzheimer's and ALS.

Ojú-ìwé yìí nlo kuki

A nlo kuki fun itupalẹ lati mu ilọsiwaju wa. Ka ìlànà àṣírí wa fun alaye siwaju sii.
Kọ