Classification of the nonlinear dynamics and bifurcation structure of ultrasound contrast agents excited at higher multiples of their resonance frequency |
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Authors: | Amin Jafari Sojahrood Michael C. Kolios |
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Affiliation: | Department of Physics, Ryerson University, Toronto, Ontario, Canada |
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Abstract: | Through numerical simulation of the Hoff model we show that when ultrasound contrast agents (UCAs) are excited at frequencies which are close to integer (m>2) multiples of their natural resonance frequency, the bifurcation structure of the UCA oscillations as a function of pressure may be characterized by 3 general distinct regions. The UCA behavior starts with initial period one oscillations which undergoes a saddle node bifurcation to m coexisting attractors for an acoustic pressure above a threshold, Pt1. Further increasing the pressure above a second threshold Pt2, is followed by a sudden transition to period 1 oscillations. |
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Keywords: | Ultrasound contrast agents Bubble Bifurcation structure High frequency ultrasound Subharmonics |
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