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Titlebook: Biomedical Visualisation; Volume 1 Paul M. Rea Book 2019 The Editor(s) (if applicable) and The Author(s), under exclusive license to Spring

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發(fā)表于 2025-3-21 17:50:37 | 只看該作者 |倒序瀏覽 |閱讀模式
期刊全稱Biomedical Visualisation
期刊簡稱Volume 1
影響因子2023Paul M. Rea
視頻videohttp://file.papertrans.cn/189/188118/188118.mp4
發(fā)行地址Showcases unique ways to use computing technology to visualise data from a wide variety of fields from the biomedical and life sciences.Presents methodologies which will enable the reader to easily re
學科分類Advances in Experimental Medicine and Biology
圖書封面Titlebook: Biomedical Visualisation; Volume 1 Paul M. Rea Book 2019 The Editor(s) (if applicable) and The Author(s), under exclusive license to Spring
影響因子.This edited volume explores the use of technology to enable us to visualise the life sciences in a more meaningful and engaging way. It will enable those interested in visualisation techniques to gain a better understanding of the applications that can be used in imaging and analysis, education, engagement and training...The reader will be able to explore the utilisation of technologies from a number of fields to enable an engaging and meaningful visual representation of the life sciences. This use of technology-enhanced learning will be of benefit for the learner, trainer, in patient care and the wider field of education and engagement..By examining a range of techniques in image capture (photogrammetery, stereophotogrammetry, microphotogrammetry and autostereoscopy), this book will showcase the wide range of tools we can use. Researchers in this field will be able to find something suitable to apply to their work to enhance user engagement through improved visual meansusing the technologies we have available to us today...It will highlight the uses of these technologies to examine many aspects of the human body, and enable improved ways to enhance visual and tactile learning, in
Pindex Book 2019
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書目名稱Biomedical Visualisation影響因子(影響力)




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Jana Verboom,Johan A. J. Metz,Evert Meelisese technologies include force feedback, “haptic” sensory simulation and monitoring of muscle strength, position and movement ranges..This chapter aims to assess the capabilities of these technologies, both now and in the future..By reviewing the work of two key studies in this area this chapter aim
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Micha?l van Buuren,Klaas Kerkstra learning of clinically relevant anatomy. Here we will explore the importance of visualisation and visual learning in anatomy as a scholarly basis for the integration for TEL approaches. We will then describe examples of visualisation technologies that are currently being implemented within the Scho
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Some Axioms of Vegetation Science,ession and a FG in order to evaluate and discuss their experience. Overall participants found the proposed technology-based exercises to be engaging, immersive and a desirable approach to rehabilitation. Participant feedback underlined the usefulness of co-creation, especially in accommodating the r
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Landscape Ecology: A Widening Foundationkflow and capture method is more practical for soft specimens where movement of the sample can lead to distortions. Overall, both methods are highly recommended dependent on the nature of the specimen and the use case of the 3D model.
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Potential Application of Virtual Reality for Interface Customisation (and Pre-training) of Amputee ese technologies include force feedback, “haptic” sensory simulation and monitoring of muscle strength, position and movement ranges..This chapter aims to assess the capabilities of these technologies, both now and in the future..By reviewing the work of two key studies in this area this chapter aim
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