ICASSP 2016accepted0 citations

A novel array processing method for precise depth detection of ultrasound point scatter

Konstantinos Diamantis, Paul A. Dalgarno, Alan H. Greenaway, Tom Anderson, Jørgen Arendt Jensen, Vassilis Sboros

Abstract

A signal based algorithm resulting in increased depth resolution is presented for medical ultrasound. It relies on multiple foci beamforming that is enabled by current ultrasound imaging systems. The concept stems from optical microscopy and is translated here into ultrasound using the Field II simulation software. A 7 MHz linear transducer is used to scan a single point scatterer phantom that can move in the axial direction. Individual beamformer outputs from 3 different foci are post-processed using the highly-dependent on focusing errors, metric of sharpness to estimate the position of the point scatter. A 37.8 μm uncertainty in depth estimation is achieved, which attains an almost 3-fold improvement compared to conventional ultrasound imaging axial resolution. Future work on the development of this algorithm requires experimental validation in tissue-like materials that provide strong aberrations.

BibTeX
@inproceedings{icassp2016_anovelarrayproce,
  title = {A novel array processing method for precise depth detection of ultrasound point scatter},
  author = {Konstantinos Diamantis and Paul A. Dalgarno and Alan H. Greenaway and Tom Anderson and Jørgen Arendt Jensen and Vassilis Sboros},
  booktitle = {ICASSP 2016},
  year = {2016}
}
A novel array processing method for precise depth detection of ultrasound point scatter · ICASSP 2016