Speckle reduction techniques in medical ultrasound imaging
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Fischer JW, Kwan CW. Emergency point-of-care ultrasound diagnosis of hematocolpometra and imperforate hymen in the pediatric emergency department. Pediatr Emerg Care. 2014; 30(2):128–130.
Fischer LM, Woo MY, Lee AC, Wiss R, Socransky S, Frank JR. Emergency medicine point-of-care ultrasonography: a national needs assessment of competencies for general and expert practice. CJEM. 2014; 16(0):1–15.
Chang JH, Raphael DT, Zhang YP, Shung KK. Proof of concept: in vitro measurement of correlation between radiodensity and ultrasound echo response of ovine vertebral bodies. Ultrasonics. 2011; 51(3):253–257.
Moon WK, Shen YW, Bae MS, Huang CS, Chen JH, Chang RF. Computer-aided tumor detection based on multi-scale blob detection algorithm in automated breast ultrasound images. IEEE T Med Imaging. 2013; 32(7):1191–1200.
Carpenter DA, Dadd MJ, Kossoff G. A Multimode Real Time Scanner. Ultrasound Med Biol. 1980; 6(3):279–284.
Magnin PA, von Ramm OT, Thurstone FL. Frequency compounding for speckle contrast reduction in phased array images. Ultrason Imaging. 1982; 4(3):267–281.
Trahey GE, Allison JW, Smith SW, von Ramm OT. A quantitative approach to speckle reduction via frequency compounding. Ultrason Imaging. 1986; 8(3):151–164.
Gehlbach SM, Sommer FG. Frequency diversity speckle processing. Ultrason Imaging. 1987; 9(2):92–105.
Galloway RL, McDermott BA, Thurstone FL. A frequency diversity process for speckle reduction in real-time ultrasonic images. IEEE T Ultrason Ferr. 1988; 35(1):45–49.
Cincotti G, Loi G, Pappalardo M. Frequency decomposition and compounding of ultrasound medical images with wavelet packets. IEEE T Med Imaging. 2001; 20(8):764–771.
Erez Y, Schechner YY, Adam D. Space variant ultrasound frequency com-pounding based on noise characteristics. Ultrasound Med Biol. 2008; 34(6):981–1000.
Sanchez JR, Oelze ML. An ultrasonic imaging specklesuppression and contrast-enhancement technique by means of frequency compounding and coded excitation. IIEEE T Ultrason Ferr. 2009; 56(7):1327–1339.
Chang JH, Kim HH, Lee J, Shung KK. Frequency compounding imaging with a high-frequency dual element transducer. Ultrasonics. 2010; 50(4–5):453–457.
Szabo TL. Diagnostic Ultrasound Imaging: Inside Out. Academic press. Burlington. MA. 2004.
Song IS, Yoon C, Kim GD, Yoo Y, Chang JH, Adaptive frequency compounding for speckle reduction. IEEE Ultrason Symp. 2011. 1435–1438.
Yoon C, Kim GD, Yoo Y, Song TK, Chang JH. Frequency equalized compounding for effective speckle reduction in medical ultrasound imaging. Biomed Signal Proces. 2013; 8(6):876–887.
Berson M, Roncin A, Pourcelot, L. Compound scanning with an electrically steered beam. Ultrasonic Imaging. 1981; 3(3):303–308.
Jespersen SK, Wilhjelm JE, Sillesen H. Multi-angle compound imaging, Ultrasonic Imaging. 1998; 20(2):81–102.
O’Donnell M, Silverstein SD. Optimum displacement for compound image generation in medical ultrasound. IEEE T Ultrason Ferr. 1988; 35(4):470–476.
Opretzka J, Vogt M, Ermert H. A high-frequency ultrasound imaging sys-tem combining limited-angle spatial compounding and model-based synthetic aperture focusing. IEEE T Ultrason Ferr. 2011; 58(7):1355–1365.
Bamber JC. Adaptive filtering for reduction of speckle in ultrasound pulse-echo images. Ultrasonics. 1986; 24(1):41–44.
Dutt V, Greenleaf JF. Adaptive speckle reduction filter for logcompressed B-scan image. IEEE T Med Imaging. 1996; 15(6):802–813.
Loupas T, Mcdicken WN, Allan PL. An adaptive weighted median filter for speckle suppression in medical ultrasonic images. IEEE T Circuits Syst. 1989; 36(1):129–135.
Czerwinski RN, Jones DL, O’Brien WD. Detection of lines and boundaries in speckle images — application to medical ultrasound. IEEE T Med Imaging. 1999; 18(2):126–136.
Koo JI, Park SB. Speckle reduction with edge preservation in medical ultrasonic images using a homogeneous region growing mean filter (HRGMF). Ultrasonic Imaging. 1991; 13(3):211–237.
Karaman M, Kutay MA, Bozdagi G. An adaptive speckle suppression filter for medical ultrasonic imaging. IEEE T Med Imaging. 1995; 14(2):283–292.
Chen Y, Yin R, Flynn P, Broschat S. Aggressive region growing for speckle reduction in ultrasound images. Pattern Recogn Lett. 2003; 24(4–5): 677–691.
Huang HC, Chen JY, Wang SD, Chen CM. Adaptive ultrasonic speckle reduction based on the slope-facet model. Ultrasound Med Biol. 2003; 29(8):1161–1175.
Yu Y, Acton ST. Speckle reducing anisotropic diffusion. IEEE T Image Process. 2002; 11(11):1260–1270.
Abd-Elmoniem KZ, Youssef AM, Kadah YM. Real-time speckle reduction and coherence enhancement in ultrasound imaging via nonlinear anisotropic diffusion. IEEE T Bio-med Eng. 2002; 49(9):997–1014.
Zong X, Laine AF, Geiser EA. Speckle reduction and contrast enhancement of echocardiograms via multiscale nonlinear processing. IEEE T Med Imaging. 1998; 17(4):532–540.
Hao X, Gao S, Gao X. A novel multiscale nonlinear thresholding method for ultrasonic speckle suppressing. IEEE T Med Imaging. 1999; 18(9):787–794.
Achim A, Bezerianos A, Tsakalides P. Novel bayesian multiscale method for speckle removal in medical ultrasound images. IEEE T Med Imaging. 2001; 20(8):772–783.
Xie H, Pierce L, Ulaby FT. SAR speckle reduction using wavelet denoising and Markov random field modeling. IEEE T Geosci Remote. 2002; 40(10):2196–2212.
Gupta N, Swamy MNS, Plotkin E. Despeckling of medical ultrasound images using data and rate adaptive lossy compression. IEEE T Med Imaging. 2005; 24(6):743–754.
Pizurica A, Philips W, Lemahieu I, Acheroy M. A versatile wavelet domain noise filtration technique for medical imaging. IEEE T Med Imaging. 2003; 22(3):323–331.
Sattar F, Floreby L, Salomonsson G, Lövström B. Image enhancement based on a nonlinear multiscale method. IEEE T Image Process. 1997; 6(6):888–895.
Aiazzi B, Alparone L, Baronti S. Multiresolution localstatistics speckle filtering based on a ratio Laplacian pyramid. IEEE T Geosci Remote. 1998; 36(5):1466–1476.
Yue Y, Croitoru MM, Bidani A, Zwischenberger JB, Clark JW Jr. Nonlinear multiscale wavelet diffusion for speckle suppression and edge enhancement in ultrasound images. IEEE T Med Imaging. 2006; 25(3):297–311.
Zhang F, Yoo YM, Koh LM, Kim Y. Nonlinear diffusion in laplaican pyramid domain for ultrasonic speckle reduction. IEEE T Med Imaging. 2007; 26(2):200–211.
Agarwal A, Yoo YM, Schneider FK, Kim Y. Adaptive field-ofview imaging for efficient receive beamforming in medical ultrasound imaging systems. Ultrasonics. 2008; 48(5):384–393.