"Kazuki Tamura,Jonathan Mamou,Hiroyuki Hachiya,Kenji Yoshida","Effective depth expansion for reliable fatty liver assessment using a double Nakagami distribution model","2020 IEEE International Ultrasonics Symposium (IUS)","Proc. 2020 IEEE International Ultrasonics Symposium (IUS)","IEEE",,,"pp. 1-3",2020,Nov. "Kazuki Tamura,Jonathan Mamou,Kenji Yoshida,Hiroyuki Hachiya,Tadashi Yamaguchi","Ultrasound-based lipid content quantification using double Nakagami distribution model in rat liver steatosis",,"Japanese Journal of Applied Physics",,"Vol. 59","No. SK","pp. SKKE23-1-7",2020,May "Kazuki Tamura,Jonathan Mamou,Kenji Yoshida,Hiroyuki Hachiya,Tadashi Yamaguchi","Novel method of lipid content quantification using double-Nakagami distribution model in rat liver steatosis","USE2019 ‘æ40‰ñ’´‰¹”gƒGƒŒƒNƒgƒƒjƒNƒX‚ÌŠî‘b‚Ɖž—p‚ÉŠÖ‚·‚éƒVƒ“ƒ|ƒWƒEƒ€","’´‰¹”gƒGƒŒƒNƒgƒƒjƒNƒX‚ÌŠî‘b‚Ɖž—p‚ÉŠÖ‚·‚éƒVƒ“ƒ|ƒWƒEƒ€u‰‰˜_•¶W","’´‰¹”gƒGƒŒƒNƒgƒƒjƒNƒX‹¦‰ïUSEƒVƒ“ƒ|ƒWƒEƒ€‰^‰cˆÏˆõ‰ï",,,,2019,Nov. "Kazuki Tamura,Jonathan Mamou,Kenji Yoshida,Hiroyuki Hachiya,Tadashi Yamaguchi","Quantitative ultrasound fat detection using a weight filter and a double Nakagami distribution model","2019 IEEE International Ultrasonics Symposium",,,,,,2019,Oct. "Kazuki Tamura,Jonathan Mamou,Kenji Yoshida,Hiroyuki Hachiya,Tadashi Yamaguchi","Development of double Nakagami distribution model for quantitative evaluation of early-stage fatty-liver disease","2018 IEEE International Ultrasonics Symposium",,,,,,2018,Oct. "Kenji Yoshida,Zhihao Deng,Kazuyo Ito,Jonathan Mamou,Hitoshi Maruyama,Hiroyuki Hachiya,Tadashi Yamaguchi","Speed of sound, attenuation, and acoustic impedance of hepatic lobule in diseased rat liver observed by scanning acoustic microscopy with 250 MHz","5th Joint Meeting of the Acoustical Society of America and Acoustical Society of Japan","The Journal of the Acoustical Society of America",,"Vol. 140","No. 40","p. 3138",2016,Oct. "Kazuki Tamura,Kenji Yoshida,Jonathan Mamou,Hitoshi Maruyama,Hiroyuki Hachiya,Tadashi Yamaguch","Quantitative Evaluation of Acoustic Concentration of NASH Rat Liver Using Statistical Analysis Models for Echo Amplitude Envelope","USE2015 The 36th Symposium on Ultrasonic Electronics","Proceedings of Symposium on Ultrasonic Electronics",,"Vol. 36",," 2P5-12",2015,Nov. "Takuma Oguri,Kazuki Tamura,Kenji Yoshida,Jonathan Mamou,Hideyuki Hasegawa,Hitoshi Maruyama,Hiroyuki Hachiya,Tadashi Yamaguchi","Estimation of scatterer size and acoustic concentration in sound field produced by linear phased array transducer",,"Japanese Journal of Applied Physics",,"Vol. 54","No. 7S1"," 07HF14",2015,June "‘åŒI‘ñ^,“c‘º ˜a‹P,‹g“cŒ›Ži,Mamou Jonathan,–I‰® O”V,ŽRŒû ‹§","ƒŠƒjƒAƒAƒŒƒCƒvƒ[ƒu‚Ì‘—ŽóM‰¹ê‚ðl—¶‚µ‚½ŽU—‘̃TƒCƒYE–§“x„’è","“ú–{‰¹‹¿Šw‰ï 2015”Nt‹GŒ¤‹†”­•\‰ï","“ú–{‰¹‹¿Šw‰ï 2015”Nt‹GŒ¤‹†”­•\‰ï u‰‰˜_•¶W","“ú–{‰¹‹¿Šw‰ï",,,"pp. 1167-1168",2015,Mar. "Takuma Oguri,Kenji Yoshida,Jonathan Mamou,Hitoshi Maruyama,Hiroyuki Hachiya,Tadashi Yamaguchi","Estimation of scatterer size and density in sound field produced by linear array phased transducers","USE2014 The 35th Symposium on Ultrasonic Electronics","Proceedings of Symposium on Ultrasonic Electronics",,"Vol. 35",,"pp. 523-524",2014,Dec. "Wenli Wu,Tatsuya Higuchi,Jonathan Mamou,Hiroyuki Hachiya,Tadashi Yamaguchi","Estimation of QUS parameters in diffused liver disease","USE2012 The 33rd Symposium on Ultrasonic Electronics","Proceedings of Symposium on Ultrasonic Electronics",,"Vol. 33",,"pp. 479-480",2012,Nov. "Tadashi Yamaguchi,Satoki Zenbutsu,Naohisa Kamiyama,Jonathan Mamou,Yu Igarashi,Hiroyuki Hachiya","Quantification of the heterogeneity of the scatter distribution for liver-fibrosis characterization using echo-signal envelope analysis","IEEE International Ultrasonics Symposium","Proceedings of 2010 IEEE International Ultrasonics Symposium",,"Vol. 31",,"pp. 160-161",2010,Oct. "Tadashi Yamaguchi,Tomoyuki Iwashina,Naohisa Kamiyama,Jonathan Mamou,Hiroyuki Hachiya","Speckle removal from heterogeneous-tissue signals using independent component analysis",,"Proceedings of 2009 IEEE INTERNATIONAL ULTRASONICS SYMPOSIUM",,,,,2009,Sept.