Biomicrofluidics · 2012 · 59 citations · 43 references
Biomedical AcousticsCavitationEngineeringMechanical EngineeringBiomedical EngineeringSoft MatterAcoustic CavitationGlass SlideMicromachinesPower UltrasoundSonoelectrochemistryMicrofluidicsUltrasonic DeviceUltrasound Cavitation BubblesMaterials ScienceHydrodynamic CavitationUltrasoundCavitating FlowMicrofabricationDeposited LayersSurface ScienceApplied PhysicsAcoustic TweezerAcoustic MicroscopyMicromachined Ultrasonic Transducer
We present an ultrasonic device with the ability to locally remove deposited layers from a glass slide in a controlled and rapid manner. The cleaning takes place as the result of cavitating bubbles near the deposited layers and not due to acoustic streaming. The bubbles are ejected from air-filled cavities micromachined in a silicon surface, which, when vibrated ultrasonically at a frequency of 200 kHz, generate a stream of bubbles that travel to the layer deposited on an opposing glass slide. Depending on the pressure amplitude, the bubble clouds ejected from the micropits attain different shapes as a result of complex bubble interaction forces, leading to distinct shapes of the cleaned areas. We have determined the removal rates for several inorganic and organic materials and obtained an improved efficiency in cleaning when compared to conventional cleaning equipment. We also provide values of the force the bubbles are able to exert on an atomic force microscope tip.
43
The EPS Matrix: The “House of Biofilm Cells”
Hans‐Curt Flemming, Thomas R. Neu, Daniel J. Wozniak · Journal of Bacteriology · 2007 · 1.7K citations · Full text
Single-bubble sonoluminescence
Michael P. Brenner, Sascha Hilgenfeldt, Detlef Lohse · Reviews of Modern Physics · 2002 · 1K citations · Full text
Sonoporation from Jetting Cavitation Bubbles
Claus‐Dieter Ohl, Manish Arora, Roy Ikink et al. · Biophysical Journal · 2006 · 486 citations · Full text