"Acoustic tweezers" enable flexible on-chip manipulation and patterning of cells using standing surface acoustic waves. (Credit: Tony Jun Huang, Jinjie Shi, Penn State)
From Science Daily:
ScienceDaily (Aug. 31, 2009) — Manipulating tiny objects like single cells or nanosized beads often requires relatively large, unwieldy equipment, but now a system that uses sound as a tiny tweezers can be small enough to place on a chip, according to Penn State engineers.
"Current methods for moving individual cells or tiny beads include such devices as optical tweezers, which require a lot of energy and could damage or even kill live cells," said Tony Jun Huang, assistant professor of engineering science and mechanics. "Acoustic tweezers are much smaller than optical tweezers and use 500,000 times less energy."
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