Tetsuya Kawagishi
Toshiba Medical Systems Corporation
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Publication
Featured researches published by Tetsuya Kawagishi.
Journal of Medical Ultrasonics | 2010
Tomoyuki Takeguchi; Masahide Nishiura; Yasuhiko Abe; Hiroyuki Ohuchi; Tetsuya Kawagishi
PurposeThe purpose of this study was to validate the accuracy of our novel 3D speckle tracking method by using numerical data, and to demonstrate the rapid processing of this method by using data obtained from human subjects.MethodsIn order to create a method that can rapidly assess cardiac function in regional heart wall segments, a 3D speckle tracking algorithm was created that focuses on data quality and performance. Prototype application software based on this algorithm was written to evaluate cardiac wall motion and to calculate indices such as strain. Time series 3D image data were generated for artificial numerical models that simulate the shape of the left ventricle and exhibit various types of motion. We compared observed values returned by the algorithm with expected values yielded by the models. This software was also applied to volume data of the human heart acquired by a 3D ultrasound system.ResultsMeasurement of the indices was evaluated by using an error ratio that was a residual between an expected value and estimated one divided by the expected value. The average error ratio of the time series volumes was less than 5% for all indices, and no individual error ratio was more than 10% for numerical models. The process was complete within 0.5xa0s per frame for human heart volumes.ConclusionThis application software can provide good estimates of various wall motion indices. The results are similar to data from numerical models, and are provided quickly enough for routine clinical usage.
Journal of the Acoustical Society of America | 2012
Shinichi Hashimoto; Tetsuya Kawagishi
An ultrasonic imaging apparatus comprises an ultrasonic probe, an image-processing part, a received signal intensity-adjusting part, and a display part. The ultrasonic probe three-dimensionally transmits/receives ultrasonic waves. The image-processing part generates a first ultrasonic image along a plane intersecting the scanning lines of ultrasonic waves, based on the signals obtained by transmitting/receiving of the ultrasonic waves. The signal intensity-adjusting part changes the intensity of the signals on the scanning lines passing through a brightness adjustment range for brightness adjustment set on the first ultrasonic image. The image-processing part generates a second ultrasonic image, based on the signal changed by the signal intensity-adjusting part. The display part displays the second ultrasonic image.
Archive | 2005
Yoichi Ogasawara; Tetsuya Kawagishi; Akihiro Sano
Archive | 2007
Tetsuya Kawagishi; Yasuhiko Abe; Shinichi Hashimoto; Muneki Kataguchi
Archive | 2008
Hiroyuki Ohuchi; Yasuhiko Abe; Tetsuya Kawagishi
Archive | 2012
Yasuhiko Abe; Tetsuya Kawagishi
Archive | 2004
Tetsuya Kawagishi; Naohisa Kamiyama
Archive | 2006
Yasuhiko Abe; Tetsuya Kawagishi
Archive | 2006
Yasuhiko Abe; Tetsuya Kawagishi
Archive | 2005
Tatsuro Baba; Yasuo Miyajima; Takeshi Sato; Tetsuya Kawagishi; Yasutsugu Seo; Yoshitaka Mine