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Acoustic signal characteristics of laser induced cavitation in DDFP droplet: Spectrum and time-frequency analysis

  • Yi Feng
  • , Dui Qin
  • , Jun Zhang
  • , Chenxiang Ma
  • , Mingxi Wan
  • Xi'an Jiaotong University

Research output: Contribution to journalArticlepeer-review

6 Scopus citations

Abstract

Cavitation has great application potential in microvessel damage and targeted drug delivery. Concerning cavitation, droplet vaporization has been widely investigated in vitro and in vivo with plasmonic nanoparticles. Droplets with a liquid dodecafluoropentane (DDFP) core enclosed in an albumin shell have a stable and simple structure with good characteristics of laser absorbing; thus, DDFP droplets could be an effective aim for laser-induced cavitation. The DDPF droplet was prepared and perfused in a mimic microvessel in the optical microscopic system with a passive acoustic detection module. Three patterns of laser-induced cavitation in the droplets were observed. The emitted acoustic signals showed specific spectrum components at specific time points. It was suggested that a nanosecond laser pulse could induce cavitation in DDPF droplets, and specific acoustic signals would be emitted. Analyzing its characteristics could aid in monitoring the laser-induced cavitation process in droplets, which is meaningful to theranostic application.

Original languageEnglish
Pages (from-to)S423-S427
JournalBio-Medical Materials and Engineering
Volume26
DOIs
StatePublished - 2015

Keywords

  • DDFP droplet
  • acoustic signal
  • laser induced cavitation
  • spectrum analysis
  • time-frequency analysis

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