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Dive into the research topics where Yoshitaka Mine is active.

Publication


Featured researches published by Yoshitaka Mine.


European Journal of Radiology | 2013

Virtual laparoscopy: Initial experience with three-dimensional ultrasonography to characterize hepatic surface features

Tadashi Sekimoto; Hitoshi Maruyama; Takayuki Kondo; Taro Shimada; Masanori Takahashi; Osamu Yokosuka; Masayuki Otsuka; Masaru Miyazaki; Yoshitaka Mine

OBJECTIVEnTo examine the potential utility of 3D-reconstructed sonograms to distinguish cirrhotic from non-cirrhotic livers by demonstrating hepatic surface characteristics.nnnMATERIALS AND METHODSnA preliminary phantom study was performed to examine the potential resolution of 3D images, recognizing surface irregularities as a difference in height. In a prospective clinical study of 31 consecutive patients with ascites (21 cirrhosis, 10 non-cirrhosis), liver volume data were acquired by transabdominal mechanical scanning. The hepatic surface features of cirrhotic and non-cirrhotic patients were compared by 2 independent reviewers. Intra- and inter-operator/reviewer agreements were also examined.nnnRESULTSnThe phantom study revealed that 0.4mm was the minimum recognizable difference in height on the 3D sonograms. The hepatic surface image was successfully visualized in 74% patients (23/31). Success depended on the amount of ascites; visualization was 100% with ascites of 10mm or more between the hepatic surface and abdominal wall. The images showed irregularity of the hepatic surface in all cirrhotic patients. The surface appearance was confirmed as being very similar in 3 patients who had both 3D sonogram and liver resection for transplantation. The ability to distinguish cirrhotic liver from non-cirrhotic liver improved with the use of combination of 2D- and 3D-imaging versus 2D-imaging alone (sensitivity, p=0.02; accuracy, p=0.02) or 3D-imaging alone (sensitivity, p=0.03). Intra-/inter-operator and inter-reviewer agreement were excellent (κ=1.0).nnnCONCLUSIONn3D-based sonographic visualization of the hepatic surface showed high reliability and reproducibility, acting as a virtual laparoscopy method, and the technique has the potential to improve the diagnosis of cirrhosis.


Archive | 2009

Ultrasonic diagnostic apparatus, diagnostic imaging apparatus, and program

Shinichi Hashimoto; Yoshitaka Mine; Tomohiko Kihara; Eiichi Shiki


Archive | 2004

Ultrasonic diagnostic apparatus for fixedly displaying a puncture probe during 2D imaging

Yoshitaka Mine; Hitoshi Yamagata


Archive | 2009

Ultrasonic diagnostic apparatus, ultrasonic image processing apparatus, and ultrasonic image processing method

Takeshi Sato; Yoshitaka Mine


Archive | 2005

Ultrasonic doppler diagnosis device

Tatsuro Baba; Yasuo Miyajima; Takeshi Sato; Tetsuya Kawagishi; Yasutsugu Seo; Yoshitaka Mine


Archive | 2010

Ultrasound diagnosis apparatus, medical image display apparatus and medical image displaying method

Kenji Hamada; Yoshitaka Mine; Itsuki Kuga; Eiichi Shiki


Archive | 2008

Ultrasonic imaging apparatus and method for generating ultrasonic image

Kenji Hamada; Yoshitaka Mine


Archive | 2011

Ultrasonic diagnosis system and image data display control program

Eiichi Shiki; Yoshitaka Mine


Archive | 2010

Ultrasonic diagnosis apparatus, ultrasonic image processing apparatus, ultrasonic image processing method, and ultrasonic image processing program

Kenji Hamada; Yoshitaka Mine


Archive | 2008

Ultrasonic diagnostic apparatus and ultrasonic image display method

Yoshitaka Mine

Collaboration


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Eiichi Shiki

Toshiba Medical Systems Corporation

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Hiroki Yoshiara

Toshiba Medical Systems Corporation

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Atsuko Sugiyama

Toshiba Medical Systems Corporation

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Cong Yao

Toshiba Medical Systems Corporation

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Hitoshi Yamagata

Toshiba Medical Systems Corporation

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Katsuhiko Fujimoto

Toshiba Medical Systems Corporation

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Mariko Shibata

Toshiba Medical Systems Corporation

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Masahiro Kumakura

Toshiba Medical Systems Corporation

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Ryota Osumi

Toshiba Medical Systems Corporation

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