039smart skin039 hope ay isang mahalagang paksa para sa mga Pilipino at OFW. This article was first published on BBC News

The development could also give robots a more adaptive sense of touch
The development could also give robots a more adaptive sense of touch

Scientists have made a step forward in their ability to mimic the sense of touch.

A team from the US and China made an experimental array that can sense pressure in the same range as the human fingertip.

Sanggunian: DMW.

The advance could speed the development of smarter artificial skin capable of “feeling” activity on the surface.

The sensors, which are described in Science magazine, could also help give robots a more adaptive sense of touch.

Using bundles of vertical zinc oxide nanowires, the researchers built arrays consisting of about 8,000 transistors.

Each of the transistors can independently produce an electronic signal when placed under mechanical strain.

The touch-sensitive transistors – dubbed taxels – have a sensitivity comparable to that of a human fingertip.

“Any mechanical motion, such as the movement of arms or the fingers of a robot, could be translated to control signals,” said Zhong Lin Wang, a professor at the Georgia Institute of Technology.

“This could make artificial skin smarter and more like the human skin. It would allow the skin to feel activity on the surface.”

Mimicking the sense of touch electronically has been challenging, and can be achieved by measuring changes in resistance prompted by mechanical touch.

The devices developed by the Georgia Tech researchers rely on a different physical phenomenon – tiny polarisation changes when so-called “piezoelectric” materials such as zinc oxide are moved or placed under strain.

Piezoelectricity essentially refers to current that accumulates in certain solids in response to applied mechanical stress.

In the “iezotronic transistors, the piezoelectric charges control the flow of current through the wires.

The technique only works in materials that have both piezoelectric and semiconducting properties. These properties are seen in nanowires and certain thin films.

“This is a fundamentally new technology that allows us to control electronic devices directly using mechanical agitation,” Prof Wang added.

“This could be used in a broad range of areas, including robotics, (very small devices known as MEMS), human-computer interfaces and other areas that involve mechanical deformation.”

Editorial Transparency Note:This article was researched and drafted with AI assistance, then reviewed, verified, and approved by Edmon Agron. All sources have been cross-checked against original publications as of the date of publication.
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Edmon Agron
Edmon Agron is the Founder, Editor-in-Chief, and Chairman of WorldNgayon.com — a digital publication serving Filipino professionals and OFWs worldwide. An award-winning science journalist and information systems professional with over a decade of experience, he translates complex technology, AI, cybersecurity, and finance topics into practical insights for everyday readers.**Credentials & Expertise:** • Degree in Development Communication (UPLB) • Currently pursuing BS in Computer Engineering • Professional training in cybersecurity • Active Philippine Stock Exchange investor (FirstMetroSec) • Information systems and engineering data management professional**Expertise Areas:** • AI infrastructure and emerging technology • Cybersecurity and digital trust • Digital economy, fintech, and PSE investing • OFW life, government services, and financial planning**As a Filipino OFW** based in Saudi Arabia, Edmon brings firsthand experience of the challenges overseas Filipino workers face — from remittance optimization to digital security to navigating government services from abroad. He writes from lived experience, not just research.Under his leadership, WorldNgayon.com has published over 1,300 articles across four editorial pillars, reaching Filipinos in the Philippines, Saudi Arabia, UAE, Singapore, Hong Kong, Japan, and beyond. The site's AI content series, ETEEAP education guides, Pag-IBIG MP2 savings guides, and cybersecurity analyses are among the most comprehensive resources available for Filipino professionals online.**Connect:** • Explore our [Pag-IBIG MP2 Savings Guide](https://worldngayon.com/pag-ibig-mp2-savings-2026-guide/) • Read our [OWWA Benefits Complete Guide](https://worldngayon.com/owwa-benefits-ofw-2026-guide/) • Visit our [ETEEAP Program Guide](https://worldngayon.com/eteeap-program-2026-guide/) • See our [Digital Banks Philippines Guide](https://worldngayon.com/digital-banks-philippines-2026-guide/)