Publication | Closed Access
Blood Vessel Deformations on Microsecond Time Scales by Ultrasonic Cavitation
304
Citations
16
References
2011
Year
Medical UltrasoundEngineeringLiquid JetsFluid MechanicsMechanical EngineeringHigh-speed PhotomicrographyBiomedical EngineeringAcoustic CavitationBlood FlowBubble DynamicMechanicsBiomechanicsUltrasound Contrast AgentsRheologyMicrofluidicsBiofluid DynamicBlood Flow MeasurementBiophysicsTransient InteractionsBlood Vessel DeformationsUltrasoundCavitating FlowMicrofabricationBiomedical ImagingAcoustic Tweezer
Transient interactions among ultrasound, microbubbles, and microvessels were studied using high-speed photomicrography. We observed liquid jets, vessel distention (motion outward against the surrounding tissue), and vessel invagination (motion inward toward the lumen). Contrary to current paradigms, liquid jets were directed away from the nearest vessel wall and invagination exceeded distention. These observations provide insight into the mechanics of bubble-vessel interactions, which appear to depend qualitatively upon the mechanical properties of biological tissues.
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