Title :
Backscattering measurement from a single microdroplet
Author :
Jungwoo Lee ; Jin Ho Chang ; Jong Seob Jeong ; Changyang Lee ; Shia-Yen Teh ; Lee, Albert ; Shung, K.
Author_Institution :
Dept. of Biomed. Eng., Univ. of Southern California, Los Angeles, CA, USA
fDate :
4/1/2011 12:00:00 AM
Abstract :
Backscattering measurements for acoustically trapped lipid droplets were undertaken by employing a P[VDF-TrFE] broadband transducer of f-number = 1, with a bandwidth of 112%. The wide bandwidth allowed the transmission of the 45 MHz trapping signal and the 15 MHz sensing signal using the same transducer. Tone bursts at 45 MHz were first transmitted by the transducer to hold a single droplet at the focus (or the center of the trap) and separate it from its neighboring droplets by translating the transducer perpendicularly to the beam axis. Subsequently, 15 MHz probing pulses were sent to the trapped droplet and the backscattered RF echo signal received by the same transducer. The measured beam width at 15 MHz was measured to be 120 μ m. The integrated backscatter (IB) coefficient of an individual droplet was determined within the 6-dB bandwidth of the transmit pulse by normalizing the power spectrum of the RF signal to the reference spectrum obtained from a flat reflector. The mean IB coefficient for droplets with a 64 μ m average diameter (denoted as cluster A) was -107 dB, whereas it was -93 dB for 90-μm droplets (cluster B). The standard deviation was 0.9 dB for each cluster. The experimental values were then compared with those computed with the T-matrix method and a good agreement was found: the difference was as small as 1 dB for both clusters. These results suggest that this approach might be useful as a means for measuring ultrasonic backscattering from a single microparticle, and illustrate the potential of acoustic sensing for cell sorting.
Keywords :
backscatter; biological techniques; cellular biophysics; drops; echo; radiation pressure; ultrasonic measurement; ultrasonic scattering; ultrasonic transducers; P(VDF-TrFE) broadband transducer; RF signal power spectrum normalisation; T-matrix method; acoustic sensing; acoustically trapped lipid droplets; backscattered RF echo signal; cell sorting; frequency 15 MHz; frequency 45 MHz; integrated backscatter coefficient; microdroplet; reference spectrum; sensing signal; single droplet trapping; size 120 mum; size 64 mum; tone bursts; trapping signal transmission; ultrasonic backscattering measurement; Acoustic measurements; Acoustics; Atmospheric measurements; Backscatter; Bandwidth; Particle measurements; Transducers; Acoustics; Phantoms, Imaging; Scattering, Radiation; Transducers; Ultrasonics; Ultrasonography;
Journal_Title :
Ultrasonics, Ferroelectrics, and Frequency Control, IEEE Transactions on
DOI :
10.1109/TUFFC.2011.1882