Journal Article

·2022

Microfluidic wound scratching platform based on an untethered microrobot with magnetic actuation

Abdurrahim Yılmaz YTU , Zeynep Karavelioğlu YTU , Gizem Aydemir YTU , Ali Anıl Demirçalı YTU , Rahmetullah Varol YTU , Ali Koşar , Hüseyin Üvet YTU

Sensors and Actuators B Chemical

No open-access abstract is available for this article. Use the DOI link on the right to read the full text.

Keywords

Microfluidics Wound healing Biomedical engineering Cell migration 3d printed Nanotechnology Materials science Cell Engineering Chemistry Medicine Surgery

Subject Areas

3D Printing in Biomedical Research ·Biomedical Engineering ·Physical Sciences
Micro and Nano Robotics ·Condensed Matter Physics ·Physical Sciences
Cellular Mechanics and Interactions ·Cell Biology ·Life Sciences

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