Methods of computer-aided statistical analysis of ultrasound elastograms are presented. An approach consisting in initial segmentation of elastograms visualizing low-elasticity segments distribuition in the tissue of an examined biological organ and in statistical analysis of this distribution is described. Satisfactory correlation between the values of same statistics and medical specialists' description of human liver elastograms was observed. The ways of continuation of the works aimed at improvement of the elastograms-based diagnostic methods are suggested.
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In the ubiquitous multi-media computing environment, medical imaging hardware can share its components such as display or logic over the network. In this paper, a compact tele-echography system that works on the distributed network environment is presented. The system is a hand-held size ultrasound sensory probe connected to a wearable computer with wireless networking facility. To adapt various imaging media in the ubiquitous computing environment, raw echo data are transmitted instead of pre-rendered image.
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