Microscopic artificial cilia–a review

T ul Islam, Y Wang, I Aggarwal, Z Cui, HE Amirabadi… - Lab on a Chip, 2022 - pubs.rsc.org
Cilia are microscopic hair-like external cell organelles that are ubiquitously present in
nature, also within the human body. They fulfill crucial biological functions: motile cilia …

Hydrophones, fundamental features, design considerations, and various structures: A review

H Saheban, Z Kordrostami - Sensors and Actuators A: Physical, 2021 - Elsevier
This paper presents a comprehensive review of hydrophones, their design considerations,
physical aspects, and structures by reviewing many publications that have been published …

Hair flow sensors: from bio-inspiration to bio-mimicking—a review

J Tao, XB Yu - Smart Materials and Structures, 2012 - iopscience.iop.org
A great many living beings, such as aquatics and arthropods, are equipped with highly
sensitive flow sensors to help them survive in challenging environments. These sensors are …

Design and implementation of a jellyfish otolith-inspired MEMS vector hydrophone for low-frequency detection

R Wang, W Shen, W Zhang, J Song, N Li… - Microsystems & …, 2021 - nature.com
Detecting low-frequency underwater acoustic signals can be a challenge for marine
applications. Inspired by the notably strong response of the auditory organs of pectis jellyfish …

Triboelectric hydrophone for underwater detection of low-frequency sounds

J Liu, M Liu, C Sun, Z Lin, Z Feng, S Si, J Yang - Nano Energy, 2022 - Elsevier
A hydrophone is the core part of sonar and plays an important role in underwater acoustic
detection applications. However, there is still room for hydrophones to improve their ability to …

Bionic shark skin replica and zwitterionic polymer brushes functionalized PDMS membrane for anti-fouling and wound dressing applications

YT Lin, YS Ting, BY Chen, YW Cheng, TY Liu - Surface and Coatings …, 2020 - Elsevier
In this study, the double-faced bionic functionalized polydimethylsiloxane (PDMS)
membranes were successfully fabricated for the wound dressing applications. Bionic (shark …

Denoising and baseline drift removal method of MEMS hydrophone signal based on VMD and wavelet threshold processing

H Hu, L Zhang, H Yan, Y Bai, P Wang - Ieee Access, 2019 - ieeexplore.ieee.org
Aiming at the problem that the signals received by MEMS vector hydrophones are mixed
with a large amount of external environmental noise, and inevitably produce baseline drift …

Sound absorption of a new bionic multi-layer absorber

Y Wang, C Zhang, L Ren, M Ichchou, MA Galland… - Composite …, 2014 - Elsevier
The interest of this article lies in the proposition of using bionic method to develop a new
sound absorber. Inspired by the coupling absorption structure of a typical silent flying bird …

Design and fabrication of a novel MEMS piezoelectric hydrophone

S Shi, W Geng, K Bi, J He, X Hou, J Mu, F Li… - Sensors and Actuators A …, 2020 - Elsevier
Hydrophone, serving as a part of sonar, has a significant effect on the performance of
acoustic sensors such as frequency characteristics and sensitivity, however, some limitation …

Fabrication and underwater testing of a vector hydrophone comprising a triaxial piezoelectric accelerometer and spherical hydrophone

T Roh, HG Yeo, C Joh, Y Roh, K Kim, H Seo, H Choi - Sensors, 2022 - mdpi.com
A vector hydrophone is an underwater acoustic sensor that can detect the direction of a
sound source. Wide-band characteristics and high sensitivity enhance the performance of …