Crossref Citations
This article has been cited by the following publications. This list is generated based on data provided by
Crossref.
YEO, C. Y.
SHIM, W. K.
WOUTERSON, E.
LI, TAO
and
MA, J.
2008.
PIEZOELECTRIC MATERIALS FOR IMPEDANCE DRIVEN MICRO-CHANNEL FLOW.
Functional Materials Letters,
Vol. 01,
Issue. 03,
p.
225.
Bringley, Thomas T.
Childress, Stephen
Vandenberghe, Nicolas
and
Zhang, Jun
2008.
An experimental investigation and a simple model of a valveless pump.
Physics of Fluids,
Vol. 20,
Issue. 3,
Loumes, L.
Avrahami, I.
and
Gharib, M.
2008.
Resonant pumping in a multilayer impedance pump.
Physics of Fluids,
Vol. 20,
Issue. 2,
Lee, Sunmi
and
Jung, Eunok
2008.
A two-chamber model of valveless pumping using the immersed boundary method.
Applied Mathematics and Computation,
Vol. 206,
Issue. 2,
p.
876.
AVRAHAMI, IDIT
and
GHARIB, MORTEZA
2008.
Computational studies of resonance wave pumping in compliant tubes.
Journal of Fluid Mechanics,
Vol. 608,
Issue. ,
p.
139.
Lee, Wanho
Jung, Eunok
and
Lee, Sunmi
2009.
Simulations of Valveless Pumping in an Open Elastic Tube.
SIAM Journal on Scientific Computing,
Vol. 31,
Issue. 3,
p.
1901.
Timmermann, S.
and
Ottesen, J. T.
2009.
Novel characteristics of valveless pumping.
Physics of Fluids,
Vol. 21,
Issue. 5,
Männer, Jörg
Wessel, Armin
and
Yelbuz, T. Mesud
2010.
How does the tubular embryonic heart work? Looking for the physical mechanism generating unidirectional blood flow in the valveless embryonic heart tube.
Developmental Dynamics,
Vol. 239,
Issue. 4,
p.
1035.
WHITTAKER, ROBERT J.
WATERS, SARAH L.
JENSEN, OLIVER E.
BOYLE, JONATHAN
and
HEIL, MATTHIAS
2010.
The energetics of flow through a rapidly oscillating tube. Part 1. General theory.
Journal of Fluid Mechanics,
Vol. 648,
Issue. ,
p.
83.
Wang, Yu-Hisang
Tsai, Yao-Wen
Tsai, Chien-Hsiung
Lee, Chia-Yen
and
Fu, Lung-Ming
2010.
Design and Analysis of Impedance Pumps Utilizing Electromagnetic Actuation.
Sensors,
Vol. 10,
Issue. 4,
p.
4040.
Shin, Soo Jai
and
Sung, Hyung Jin
2010.
Three-dimensional simulation of a valveless pump.
International Journal of Heat and Fluid Flow,
Vol. 31,
Issue. 5,
p.
942.
Rosenfeld, Moshe
and
Avrahami, Idit
2010.
Net flow rate generation by a multi-pincher impedance pump.
Computers & Fluids,
Vol. 39,
Issue. 9,
p.
1634.
Huang, X.Y.
Wen, Chih-Yung
and
Jiao, Z.J.
2010.
A standing wave model for acoustic pumping effect in microchannels.
Applied Acoustics,
Vol. 71,
Issue. 2,
p.
164.
Azarbadegan, A
Eames, I
and
Wojcik, A
2011.
Fluid–structure coupling in valveless micropumps.
Journal of Micromechanics and Microengineering,
Vol. 21,
Issue. 8,
p.
085033.
YANG, TIAN-SHIANG
and
WANG, CHI-CHUNG
2011.
EFFECTS OF ACTUATOR IMPACT ON THE NONLINEAR DYNAMICS OF A VALVELESS PUMPING SYSTEM.
Journal of Mechanics in Medicine and Biology,
Vol. 11,
Issue. 03,
p.
591.
Santhanakrishnan, Arvind
and
Miller, Laura A.
2011.
Fluid Dynamics of Heart Development.
Cell Biochemistry and Biophysics,
Vol. 61,
Issue. 1,
p.
1.
Ma, Rong Hua
and
Zhong, Jian Hao
2012.
Design and Fabrication of a Micro-Actuator Based on Electromagnetic Membrane Device.
Advanced Materials Research,
Vol. 488-489,
Issue. ,
p.
1451.
Lee, Wanho
Lim, Sookkyung
and
Jung, Eunok
2012.
Dynamical Motion Driven by Periodic Forcing on an Open Elastic Tube in Fluid.
Communications in Computational Physics,
Vol. 12,
Issue. 2,
p.
494.
Goenezen, Sevan
Rennie, Monique Y.
and
Rugonyi, Sandra
2012.
Biomechanics of early cardiac development.
Biomechanics and Modeling in Mechanobiology,
Vol. 11,
Issue. 8,
p.
1187.
Tsai, Chien-Hsiung
Lin, Che-Hsin
Fu, Lung-Ming
and
Chen, Hui-Chun
2012.
High-performance microfluidic rectifier based on sudden expansion channel with embedded block structure.
Biomicrofluidics,
Vol. 6,
Issue. 2,