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Titlebook: Innovations in Biomedical Engineering; Marek Gzik,Zbigniew Paszenda,Krzysztof Milewski Conference proceedings 2021 The Editor(s) (if appli

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發(fā)表于 2025-3-21 19:44:42 | 只看該作者 |倒序?yàn)g覽 |閱讀模式
書(shū)目名稱Innovations in Biomedical Engineering
編輯Marek Gzik,Zbigniew Paszenda,Krzysztof Milewski
視頻videohttp://file.papertrans.cn/468/467048/467048.mp4
概述Presents the latest developments and solutions in the field of biomedical engineering.Gathers the proceedings of the International Scientific Conference Advances in Applied Biomechanics, held on May 1
叢書(shū)名稱Advances in Intelligent Systems and Computing
圖書(shū)封面Titlebook: Innovations in Biomedical Engineering;  Marek Gzik,Zbigniew Paszenda,Krzysztof Milewski Conference proceedings 2021 The Editor(s) (if appli
描述.This book presents a compact study on recent concepts and advances in biomedical engineering. The ongoing advancement of civilization and related technological innovations are increasingly affecting many aspects of our lives. These changes are also visible in the development and practical application of new methods for medical diagnosis and treatment, which in turn are closely linked to expanding knowledge of the functions of the human body. This development is possible primarily due to the increasing cooperation of scientists from various disciplines, and related activities are referred to as “biomedical engineering.” The combined efforts of doctors, physiotherapists and engineers from various fields of science have helped achieve dynamic advances in medicine that would have been impossible in the past.?.The reader will find here papers on biomaterials, biomechanics, as well as the use of information technology and engineering modeling methods in medicine. The respective papers will promote the development of biomedical engineering as a vital field of science, based on cooperation between doctors, physiotherapists and engineers. The editors would like to thank all the people who
出版日期Conference proceedings 2021
關(guān)鍵詞Biomechanics; Biomechatronics; Biomedical engineering; Dental tissue biomaterials; Rehabilitation
版次1
doihttps://doi.org/10.1007/978-3-030-52180-6
isbn_softcover978-3-030-52179-0
isbn_ebook978-3-030-52180-6Series ISSN 2194-5357 Series E-ISSN 2194-5365
issn_series 2194-5357
copyrightThe Editor(s) (if applicable) and The Author(s), under exclusive license to Springer Nature Switzerl
The information of publication is updating

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Initial Report on Numerical Modeling of Blood Flow in Myocardial Bridge Region of Coronary Artery: C wall movement using dynamic mesh settings. In parallel to the numerical investigation, the experimental research was developed. A test rig was built to reconstruct the vessel wall motion occurring under the myocardial bridge in the in-vitro conditions.
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Conference proceedings 2021hnological innovations are increasingly affecting many aspects of our lives. These changes are also visible in the development and practical application of new methods for medical diagnosis and treatment, which in turn are closely linked to expanding knowledge of the functions of the human body. Thi
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Three-Dimensional Printing of Bone Modelsrength of the proposed spongy bone model and the method of its production allow to obtain strength values close to the natural spongy bone. In addition, the strength did not change during the 4-week degradation process.
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The Use of Hyperelastic Material Models for Estimation of Pig Aorta Biomechanical Behaviorand then hyperelastic material models were fitted, with registration of error fitting (.). The influence of the orientation of samples taken (longitudinal and transversal) to the central line of blood vessels on values of material parameters was estimated.
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Assessment of Changing the Radial Forces of Biodegradable Stent in One Month Time Intervalymer stents made of bioresorbable material based on polyesters (PLA). Radial strength was determined for stents before and after?the biodegradation process. The obtained test results enabled the assessment of the impact of the time of biodegradation on the value of the measured force.
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Analysis of Displacements Within the Base of Mandible and Mandibular Angle (SYNBONE.8950). The conducted research allowed to assess the displacements within the base of mandible and mandibular angle, as well as draw conclusions, regarding the possibility of movements of the mandible during biting using different model support methods.
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