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Titlebook: Biomedical Visualisation; Volume 3 Paul M. Rea Book 2019 The Editor(s) (if applicable) and The Author(s), under exclusive license to Spring

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楼主: Buchanan
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Introduction: Defining a Symbiotic Field, data used for creating stereoscopic virtual models have also been constantly improving. This paper focuses specifically on the methodologies of creating stereoscopic virtual models and the techniques and materials used in developing stereoscopic virtual models from both our previous studies and oth
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Landscape Paradigms and Post-urban Spaces of many such reconstructions yielding a new kind of anatomy that not only allows quantitative analysis of anatomical variation but also a visual exploration and educational visualization. Future digital anatomy atlases will not only show a static (average) anatomy but also its normal or pathologica
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https://doi.org/10.1007/978-0-387-37685-1nsional representations, constrained by a surface or a screen, these new immersive technologies will soon allow us to experience three dimensional environments that can occupy our entire field of view. This is a technological breakthrough for any field that requires visualisation, and in this chapte
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The Use of Ultrasound in Educational Settings: What Should We Consider When Implementing this Technscanning, relative ease of administration, and lack of ionising radiation. All of these features, make ultrasound an appealing option in educational settings for learning topographic anatomy and potentially enhancing future clinical practice for vocational learners. Sophisticated, but relatively ine
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Utilising Anatomical and Physiological Visualisations to Enhance the Face-to-Face Student Learning ology to enhance off-campus learning, and then focus on the range of visualisations utilised within the laboratory or classroom in order to facilitate learning in biomedical sciences and medicine, including: augmented reality, virtual reality; mixed reality and Holograms; 3D printing; simulated diss
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