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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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书目名称Clinical and Biomedical Engineering in the Human Nose
副标题A Computational Flui
编辑Kiao Inthavong,Narinder Singh,Jiyuan Tu
视频videohttp://file.papertrans.cn/229/228293/228293.mp4
概述Summarizes the latest research on clinical rhinology, otolaryngology, and respiratory physiology.Provides expert insights into clinical and computational approaches.Includes downloadable computational
丛书名称Biological and Medical Physics, Biomedical Engineering
图书封面Titlebook: Clinical and Biomedical Engineering in the Human Nose; A Computational Flui Kiao Inthavong,Narinder Singh,Jiyuan Tu Book 2021 Springer Natu
描述.This book explores computational fluid dynamics in the context of the human nose, allowing readers to gain a better understanding of its anatomy and physiology and integrates recent advances in clinical rhinology, otolaryngology and respiratory physiology research. It focuses on advanced research topics, such as virtual surgery, AI-assisted clinical applications and therapy, as well as the latest computational modeling techniques, controversies, challenges and future directions in simulation using CFD software. Presenting perspectives 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. .
出版日期Book 2021
关键词Computational Human Nose Physiology; Biomechanical Engineering; Computational Human Nose Anatomy; Clini
版次1
doihttps://doi.org/10.1007/978-981-15-6716-2
isbn_softcover978-981-15-6718-6
isbn_ebook978-981-15-6716-2Series ISSN 1618-7210 Series E-ISSN 2197-5647
issn_series 1618-7210
copyrightSpringer Nature Singapore Pte Ltd. 2021
The information of publication is updating

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Sinonasal Anatomic Variants, Diseases and their Management,ptations 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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Surgery of the Nasal Cavity,niques evolving CFD models have become more advanced, and the technology for the study of surgery has been improved through the analysis of pre-and post-operative models. This development has led to the use of “virtual” surgery in computer models to predict the results of existing procedures and to
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Computational Meshing for CFD Simulations,resents the flow locally. Mathematical equations that represent the flow physics are then applied to each cell of the mesh. Generating a high quality mesh is extremely important to obtain reliable solutions and to guarantee numerical stability. This chapter begins with a basic introduction to a typi
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Clinical Implications of Nasal Airflow Simulations,to establish normative ranges for some CFD-derived variables. We discuss the significance of CFD-derived variables such as unilateral nasal airflow partitioning, nasal airway resistance, heat flux and wall shear stress on nasal function or symptomatology, and the strong associations established with
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Clinical CFD Applications 2,rs in their respective fields. This chapter covers the latest research techniques and outcomes in whole lung modelling; Modeling the Effect of Airway Motion Using Dynamic Imaging; and Automatic reconstruction of the nasal geometry from CT scans.
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