Dana Ragab
Papers
2
Total Citations
4
H-Index
1
About
Dana Ragab is a rising researcher at the forefront of soft robotics and bio-inspired adhesion, whose work is redefining how machines interact with delicate objects and biological tissues. Her primary research areas include soft gripper design, electroadhesion, and low-voltage actuation for biomedical and robotic applications. Ragab’s major contributions center on developing reconfigurable, compliant systems that can operate safely in cluttered human environments. Her most cited work, “Reconfigurable Soft Gripper Based on Eversion and Electroadhesion for Cluttered Environments” (2024, 3 citations), introduces a novel gripper that combines eversion and electroadhesion to grasp objects in tight spaces while maintaining softness and collision safety—a critical advance for assistive and household robotics. More recently, her paper “Compact Planar Low‐Voltage Electroadhesion Pads for Reversible Tissue and Hydrogel Adhesion” (2025, 1 citation) demonstrates adhesion of hydrogels and biological tissues at under 10 volts, a breakthrough with profound implications for surgical tools and wearable devices. Though early in her career, Ragab’s innovative integration of low-voltage electroadhesion with soft robotics positions her as a promising voice in next-generation medical and manipulation technologies.
Research Focus
Key Achievements
Top Papers
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