Evaluating Thin Compression Paddles for Mammographically Compatible Ultrasound

Abstract We are developing a combined digital mammography/3D ultrasound system to improve detection and/or characterization of breast lesions. Ultrasound scanning through a mammographic paddle could significantly reduce signal level, degrade beam focusing and create reverberations. Thus, appropriate...

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Veröffentlicht in:Ultrasound in medicine & biology 2007-03, Vol.33 (3), p.472-482
Hauptverfasser: Booi, Rebecca C, Krücker, Jochen F, Goodsitt, Mitchell M, O’Donnell, Matthew, Kapur, Ajay, LeCarpentier, Gerald L, Roubidoux, Marilyn A, Fowlkes, J. Brian, Carson, Paul L
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Sprache:eng
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Zusammenfassung:Abstract We are developing a combined digital mammography/3D ultrasound system to improve detection and/or characterization of breast lesions. Ultrasound scanning through a mammographic paddle could significantly reduce signal level, degrade beam focusing and create reverberations. Thus, appropriate paddle choice is essential for accurate sonographic lesion detection and assessment with this system. In this study, we characterized ultrasound image quality through paddles of varying materials (lexan, polyurethane, TPX, mylar) and thicknesses (0.25 to 2.5 mm). Analytical experiments focused on lexan and TPX, which preliminary results demonstrated were most competitive. Spatial and contrast resolution, side-lobe and range lobe levels, contrast and signal strength were compared with no-paddle images. When the beamforming of the system was corrected to account for imaging through the paddle, the TPX 2.5 mm paddle performed the best. Test objects imaged through this paddle demonstrated ≤ 15% reduction in spatial resolution, ≤ 7.5 dB signal loss, ≤ 3 dB contrast loss and range lobe levels ≥ 35 dB below signal maximum over 4 cm. TPX paddles
ISSN:0301-5629
1879-291X
DOI:10.1016/j.ultrasmedbio.2006.09.005