首页 /研究 /A Helical Microrobot with an Optimized Propeller-Shape for Propulsion in Viscoelastic Biological Media
OTHER

A Helical Microrobot with an Optimized Propeller-Shape for Propulsion in Viscoelastic Biological Media

Dandan Li, Moonkwang Jeong, Eran Oren, Tingting Yu, Tian Qiu

发表年份
2019
引用次数
35
访问权限
开放获取

摘要

One major challenge for microrobots is to penetrate and effectively move through viscoelastic biological tissues. Most existing microrobots can only propel in viscous liquids. Recent advances demonstrate that sub-micron robots can actively penetrate nanoporous biological tissue, such as the vitreous of the eye. However, it is still difficult to propel a micron-sized device through dense biological tissue. Here, we report that a special twisted helical shape together with a high aspect ratio in cross-section permit a microrobot with a diameter of hundreds-of-micrometers to move through mouse liver tissue. The helical microrobot is driven by a rotating magnetic field and localized by ultrasound imaging inside the tissue. The twisted ribbon is made of molybdenum and a sharp tip is chemically etched to generate a higher pressure at the edge of the propeller to break the biopolymeric network of the dense tissue.

关键词

ViscoelasticityPropellerRibbonMaterials scienceBiological tissuePropulsionNanotechnologyNanoporousAcousticsMechanical engineering

相关论文

查看 OTHER 分类全部论文