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Titlebook: Clinical and Biomedical Engineering in the Human Nose; A Computational Flui Kiao Inthavong,Narinder Singh,Jiyuan Tu Book 2021 Springer Natu

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Charles J. Daly,Navalgund A. H. K. Raocal workflow and guidelines for generating high quality meshes, and concludes with some more advanced topics, i.e., how to generate meshes in parallel, a discussion on mesh quality, and examples on the application of lattice-Boltzmann methods to simulate flow without any turbulence modelling on highly-resolved meshes.
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1618-7210 s and insights from computational experts and clinical specialists (ENT) combined with technical details of the computational modeling techniques from engineers, this unique reference book will give direction to and inspire future research in this emerging field. .978-981-15-6718-6978-981-15-6716-2Series ISSN 1618-7210 Series E-ISSN 2197-5647
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Clinical and Biomedical Engineering in the Human NoseA Computational Flui
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Kiao Inthavong,Narinder Singh,Jiyuan TuSummarizes the latest research on clinical rhinology, otolaryngology, and respiratory physiology.Provides expert insights into clinical and computational approaches.Includes downloadable computational
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Biological and Medical Physics, Biomedical Engineeringhttp://image.papertrans.cn/c/image/228293.jpg
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Scalar Boson Decays to Tau Leptonsl physiology. This chapter provides a history of its beginnings to its advances that parallel with increased computational power, and a discussion on how it could be applied to specific clinical applications. Furthermore, the challenges in bringing the techniques to be used as a diagnostic for clini
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Scalar Boson Decays to Tau Leptonsl fluid dynamic (CFD) analysis. This chapter provides a broad overview of the function and organisation of the human respiratory system, including essential anatomical definitions, anatomy and naming conventions, as well as particular areas of surgical interest. The topics include Functions and Orga
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Physics Beyond the Standard Modelptations to local climate. A further factor is pneumatization of the paranasal sinuses which is highly variable between individuals. When significant deviations occur from typical airway geometries, this can lead to nasal airway obstruction having the potential to significantly reduce quality of lif
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