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A wearable electrofluidic actuation system.

Haisong LinHannaneh HojaijiShuyu LinChristopher YeungYichao ZhaoBo WangMeghana MaligeYibo WangKimber KingWenzhuo YuJiawei TanZhaoqing WangXuanbing ChengSam Emaminejad
Published in: Lab on a chip (2020)
We report a wearable electrofluidic actuation system, which exploits the alternating current electrothermal (ACET) effects to engineer biofluid flow profiles on the body. The wearable ACET flow is induced with the aid of corrosion-resistant electrode configurations (fabricated on a flexible substrate) and custom-developed, wirelessly programmable high frequency (MHz) excitation circuitry. Various tunable flow profiles are demonstrated with the aid of the devised flexible ACET electrode configurations, where the induced profiles are in agreement with the ACET theory and simulation. The demonstrated capabilities rendered by the presented system create new degrees of freedom for implementing advanced bioanalytical operations for future lab-on-the-body platforms.
Keyphrases
  • high frequency
  • high glucose
  • heart rate
  • transcranial magnetic stimulation
  • diabetic rats
  • drug induced
  • solid state
  • carbon nanotubes
  • current status
  • blood pressure
  • quality improvement
  • amino acid
  • stress induced