Microfluidic fabrication of stable gas-filled microcapsules for acoustic contrast enhancement
Alireza Abbaspourrad1, Wynter J Duncanson, Natalia Lebedeva
1School of Engineering and Applied Sciences and Department of Physics, Harvard University , 29 Oxford Street, Cambridge, Massachusetts 02138, United States.
Abstract:
We introduce a facile approach for the production of gas-filled microcapsules designed to withstand high pressures. We exploit microfluidics to fabricate water-filled microcapsules that are then externally triggered to become gas-filled, thus making them more echogenic. In addition, the gas-filled microcapsules have a solid polymer shell making them resistant to pressure-induced buckling, which makes them more mechanically robust than traditional prestabilized microbubbles; this should increase the potential of their utility for acoustic imaging of porous media with high hydrostatic pressures such as oil reservoirs.
