期刊文献+

Simulation study of the superharmonic field generated from a phase array transducer 被引量:2

Simulation study of the superharmonic field generated from a phase array transducer
原文传递
导出
摘要 Ultrasound imaging is the most widely used noninvasive medical imaging modality. Its latest elite concept is Superharmonic Imaging which is the most talked-about future of medical diagnostic ultrasound. In this paper, the computational and analytical study for superharmonic field generation from phased array transducer of 16 × 16 elements is presented. For this, the model preferred, includes the calculation for diffraction effect in frequency domain and nonlinear effect in time domain. The attenuation is included along with the diffraction in frequency domain as well. The comparative analysis of superharmonic field is also carried out with simulated fundamental and second harmonic fields by the same model. Similarly, the comparison with the results from the literature is also reported. Ultrasound imaging is the most widely used noninvasive medical imaging modality. Its latest elite concept is Superharmonic Imaging which is the most talked-about future of medical diagnostic ultrasound. In this paper, the computational and analytical study for superharmonic field generation from phased array transducer of 16 × 16 elements is presented. For this, the model preferred, includes the calculation for diffraction effect in frequency domain and nonlinear effect in time domain. The attenuation is included along with the diffraction in frequency domain as well. The comparative analysis of superharmonic field is also carried out with simulated fundamental and second harmonic fields by the same model. Similarly, the comparison with the results from the literature is also reported.
出处 《Chinese Journal of Acoustics》 2011年第4期371-378,共8页 声学学报(英文版)
  • 相关文献

参考文献15

  • 1Tranqiart F, Grenicr Z, Eder V, Pourcelot L. Clinical use of ultrasourid tissue harmonic imaging. Ultrasound Med. Biol., 1999; 25:889 -894.
  • 2Bouakaz A, de Jong N. Native tissue imaging at superharmonic frequencies. IEEE Trans. Ultra- son., Ferroelect., Freq. Contr., 2003; 50(5): 496-506.
  • 3Bouakaz A, Ten Cate F J, de Jong N. A new ultrasonic transducer for improved contrast nonlinear imaging. Phys. Med. Biol., 2004; 49:3515-3525.
  • 4van Neer P L M J, Danilouchkine M G, Matte G M, Verweij M D, de 3ong N. Super harmonic imag- ing: development of an interleaved phased array transducer. IEEE Trans. Ultrason. Ferroelectr. Freq. Control, 2010; 57(2): 455-468.
  • 5Bouakaz A, Lanc'ee C T, de Jong N. Harmonic ultrasonic field of medical phased arrays: simulations and measurements. IEEE Trans. Ultrason., Ferroelect., Freq. Contr., 2003; 50(6): 730-735.
  • 6Bouakaz A, Lanc'ee C T, Frinking P J A, de Jong N. Simulations and measurements of nonlinear pressure field generated by linear array transducers. In: Proc. IEEE Ultrasonics, 1999:1511-1514.
  • 7Ma Q, Zhang D, Ma Y. Investigation of superharmonic sound propagation and imaging in biological tissues in vitro. J. Acoust. Soc. Am., 2006; 119(4): 2518-2523.
  • 8Londhe N D, Anand R S. Investigation of ultrasonic shock wave propagation and superharmonic field generation in human soft tissues. Int. J. Mathematical Modelling and Numerical Optimisation, 2010; 1(4): 316-329.
  • 9Hamilton M F, Blackstock D T. Nonlinear acoustic. USA: Academic Press, 1998:117-139.
  • 10Christofer P T, Parker K J. New approaches to nonlinear diffractive field propagation. J. Acoust. Soc. Am., 1985; 78:202-216.

同被引文献25

引证文献2

二级引证文献7

相关作者

内容加载中请稍等...

相关机构

内容加载中请稍等...

相关主题

内容加载中请稍等...

浏览历史

内容加载中请稍等...
;
使用帮助 返回顶部