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  4. Optimization of 3D Passive Acoustic Mapping Image Metrics: Impact of Sensor Geometry and Beamforming Approach
 
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2024
Journal Article
Title

Optimization of 3D Passive Acoustic Mapping Image Metrics: Impact of Sensor Geometry and Beamforming Approach

Abstract
Three-dimensional passive acoustic mapping (PAM) with matrix arrays typically suffers from high demands on the receiving electronics and high computational load. In our study, we investigated, both numerically and experimentally, the influence of matrix array aperture size, element count, and beamforming approaches on defined image metrics. With a numerical Vokurka model, matrix array acquisitions of cavitation signals were simulated. In the experimental part, two 32 × 32 matrix arrays with different pitches and aperture sizes were used. After being reconstructed into 3D cavitation maps, defined metrics were calculated for a quantitative comparison of experimental and numerical data. The numerical results showed that the enlargement of the aperture from 5 to 40 mm resulted in an improvement of the full width at half maximum (FWHM) by factors of 6 and 13 (in lateral and axial dimension, respectively). A larger array sparsity influenced the point spread function (PSF) only slightly, while the grating lobe level (GLL) remained more than 12 dB below the main lobe. These results were successfully experimentally confirmed. To further reduce the GLL caused by array sparsity, we adapted a non-linear filter from optoacoustics for use in PAM. In combination with the delay, multiply, sum, and integrate (DMSAI) algorithm, the GLL was decreased by 20 dB for 64-element reconstructions, resulting in levels that were identical to the fully populated matrix reconstruction levels.
Author(s)
Therre-Mohr, Sarah Michaela
Fraunhofer-Institut für Biomedizinische Technik IBMT  
Fournelle, Marc  orcid-logo
Fraunhofer-Institut für Biomedizinische Technik IBMT  
Tretbar, Steffen  
Fraunhofer-Institut für Biomedizinische Technik IBMT  
Journal
Sensors. Online journal  
Open Access
DOI
10.3390/s24061868
Additional full text version
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Language
English
Fraunhofer-Institut für Biomedizinische Technik IBMT  
Keyword(s)
  • cavitation monitoring

  • high-intensity focused ultrasound

  • passive acoustic mapping

  • ultrasound therapy

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