M Massimo Mischi
Philips
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Publication
Featured researches published by M Massimo Mischi.
Archive | 2018
Anastasiia Panfilova; Ruud J. G. van Sloun; Rogier Wilbeboer; Hessel Wijkstra; M Massimo Mischi
A practical method is proposed to assess the ultrasound coefficient of nonlinearity of a medium by measuring the fundamental and 2nd harmonic in the near field of a plane piston source for varying source pressure. The method uses the Fubini solution to extract the slope of the linear dependency of the ratio harmonic/fundamental on the fundamental pressure measured at the same location. It eliminates the need for a motion stage, required by methods observing harmonic growth with source distance. It also excludes the need to measure the pressure at the source, since, in the current experiment, conducted in distilled water, it neglects depletion of the fundamental due to attenuation and energy transfer to higher harmonics. The variability of the estimated beta was evaluated with 9 measurements for which the setup was mounted anew. This was performed for 4 different distances from the source. The estimated beta slightly decreased with increasing distance from the source, possibly due to focusing effects. The average beta estimated over all measurements was 3.48+−0.43, showing good agreement with previously reported values. The reproducibility and accuracy of the proposed method is relevant for its adoption aimed at beta measurements in tissue samples for clinical diagnostic research.A practical method is proposed to assess the ultrasound coefficient of nonlinearity of a medium by measuring the fundamental and 2nd harmonic in the near field of a plane piston source for varying source pressure. The method uses the Fubini solution to extract the slope of the linear dependency of the ratio harmonic/fundamental on the fundamental pressure measured at the same location. It eliminates the need for a motion stage, required by methods observing harmonic growth with source distance. It also excludes the need to measure the pressure at the source, since, in the current experiment, conducted in distilled water, it neglects depletion of the fundamental due to attenuation and energy transfer to higher harmonics. The variability of the estimated beta was evaluated with 9 measurements for which the setup was mounted anew. This was performed for 4 different distances from the source. The estimated beta slightly decreased with increasing distance from the source, possibly due to focusing effects. The ...
Archive | 2012
M Massimo Mischi; Sg Stefan Schalk; M Smeenge Smeenge; F Brughi; Ta Tamerlan Saidov; Mpj Maarten Kuenen; Rp Kuijpers; M. Pilar Laguna; de la Jjmch Jean Rosette; Hessel Wijkstra
Archive | 2010
Ihf Ingeborg Herold; Mpj Maarten Kuenen; M Massimo Mischi; Hhm Erik Korsten
internaltional ultrasonics symposium | 2017
Pc Paul Hamelmann; M Massimo Mischi; R Rik Vullings; Alexander Franciscus Kolen; Lars Schmitt; Shivani Joshi; Joeh Judith van Laar; Jwm Jan Bergmans
Archive | 2016
Pc Paul Hamelmann; Alexander Franciscus Kolen; Lars Schmitt; R Rik Vullings; Hans C. van Assen; M Massimo Mischi; Libertario Demi; Joeh Judith van Laar; Jwm Jan Bergmans
Archive | 2015
S Simona Turco; A Bar-Zion; Hessel Wijkstra; D Adam; M Massimo Mischi
Archive | 2014
Marcel Breeuwer; M Massimo Mischi; H Hessel Wijkstra
Archive | 2014
S Simona Turco; Cristina Lavini; Marcel Breeuwer; de la Jjmch Jean Rosette; Marc R. Engelbrecht; Hessel Wijkstra; M Massimo Mischi
Archive | 2013
Mpj Maarten Kuenen; Ta Tamerlan Saidov; Hessel Wijkstra; M Massimo Mischi
Archive | 2013
S Simona Turco; K Kyveli Kompatsiari; de la Jjmch Jean Rosette; Marcel Breeuwer; Hessel Wijkstra; M Massimo Mischi