We report the development of a new class of miniature all-polymer flow sensors that closely mimic the intricate morphology of the mechanosensory ciliary bundles in biological hair cells. An artificial ciliary bundle is achieved by fabricating bundled polydimethylsiloxane (PDMS) micro-pillars with graded heights and electrospinning polyvinylidenefluoride (PVDF) piezoelectric nanofiber tip links. The piezoelectric nature of a single nanofiber tip link is confirmed by X-ray diffraction (XRD) and Fourier transform infrared spectroscopy (FTIR). Rheology and nanoindentation experiments are used to ensure that the viscous properties of the hyaluronic acid (HA)-based hydrogel are close to the biological cupula. A dome-shaped HA hydrogel cupula that...
MasterThe aim of this work is to design and fabricate a flow sensor using an artificial hair cell (A...
We seek to harness microelectromechanical systems (MEMS) technologies to build biomimetic devices fo...
We discuss current developments in biomimetic flow-sensors based on mechano-sensor as found e.g. on ...
We report the development of a new class of miniature all-polymer flow sensors that closely mimic th...
We report the development of a new class of miniature all-polymer flow sensors that closely mimic th...
We report the development of a new class of miniature all-polymer flow sensors that closely mimic th...
Flexible, self-powered, miniaturized, ultrasensitive flow sensors are in high demand for human motio...
Blind cavefishes are known to detect objects through hydrodynamic vision enabled by arrays of biolog...
We present the fabrication of an artificial MEMS hair bundle sensor designed to approximate the stru...
Flow sensors play a critical role in monitoring flow parameters, including rate, velocity, direction...
We present the development and testing of superficial neuromast-inspired flow sensors that also atta...
© 2017 IEEE. Mechanosensory haircells are well-evolved biological sensors found in nature. In this p...
Evolving over millions of years, hair-like natural flow sensors called cilia, which are found in fis...
Using biological sensors, aquatic animals like fishes are capable of performing impressive behaviour...
This paper adopts the design strategies involved in the biological flow sensors present on the body ...
MasterThe aim of this work is to design and fabricate a flow sensor using an artificial hair cell (A...
We seek to harness microelectromechanical systems (MEMS) technologies to build biomimetic devices fo...
We discuss current developments in biomimetic flow-sensors based on mechano-sensor as found e.g. on ...
We report the development of a new class of miniature all-polymer flow sensors that closely mimic th...
We report the development of a new class of miniature all-polymer flow sensors that closely mimic th...
We report the development of a new class of miniature all-polymer flow sensors that closely mimic th...
Flexible, self-powered, miniaturized, ultrasensitive flow sensors are in high demand for human motio...
Blind cavefishes are known to detect objects through hydrodynamic vision enabled by arrays of biolog...
We present the fabrication of an artificial MEMS hair bundle sensor designed to approximate the stru...
Flow sensors play a critical role in monitoring flow parameters, including rate, velocity, direction...
We present the development and testing of superficial neuromast-inspired flow sensors that also atta...
© 2017 IEEE. Mechanosensory haircells are well-evolved biological sensors found in nature. In this p...
Evolving over millions of years, hair-like natural flow sensors called cilia, which are found in fis...
Using biological sensors, aquatic animals like fishes are capable of performing impressive behaviour...
This paper adopts the design strategies involved in the biological flow sensors present on the body ...
MasterThe aim of this work is to design and fabricate a flow sensor using an artificial hair cell (A...
We seek to harness microelectromechanical systems (MEMS) technologies to build biomimetic devices fo...
We discuss current developments in biomimetic flow-sensors based on mechano-sensor as found e.g. on ...