A new acoustic microfluidic method offers opportunities to conduct experiments with swimming cells and microorganisms. With it, ultrasonic waves like those used for imaging are able to hold a cell’s body in place without affecting the way it swims.

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A new acoustic microfluidic method offers opportunities to conduct experiments with swimming cells and microorganisms. With it, ultrasonic waves like those used for imaging are able to hold a cell’s body in place without affecting the way it swims.
Most 3D printing methods currently in use rely either on photo (light)- or thermo (heat)-activated reactions to achieve precise manipulation of polymers.