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Titlebook: Advances in Heart Valve Biomechanics; Valvular Physiology, Michael S. Sacks,Jun Liao Book 2018 Springer Nature Switzerland AG 2018 GAGs in

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期刊全称Advances in Heart Valve Biomechanics
期刊简称Valvular Physiology,
影响因子2023Michael S. Sacks,Jun Liao
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发行地址Covers the latest research accomplishments in heart valve biomechanics.Broadens readers’ understanding of novel concepts in valvular tissue viscoelasticity, collagen fibril/molecule mechanisms, hierar
图书封面Titlebook: Advances in Heart Valve Biomechanics; Valvular Physiology, Michael S. Sacks,Jun Liao Book 2018 Springer Nature Switzerland AG 2018 GAGs in
影响因子.This book covers the latest research development in heart valve biomechanics and bioengineering, with an emphasis on novel experimentation, computational simulation, and applications in heart valve bioengineering. The most current research accomplishments are covered in detail, including novel concepts in valvular viscoelasticity, fibril/molecular mechanisms of tissue behavior, fibril kinematics-based constitutive models, mechano-interaction of valvular interstitial and endothelial cells, biomechanical behavior of acellular valves and tissue engineered valves, novel bioreactor designs, biomechanics of transcatheter valves, and 3D heart valve printing. This is an ideal book for biomedical engineers, biomechanics, surgeons, clinicians, business managers in the biomedical industry, graduate and undergraduate students studying biomedical engineering, and medical students. .
Pindex Book 2018
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Automotive Data of China Co., Ltd.valve tissues. Recent studies showed that heart valve leaflets exhibited a unique functionally elastic behavior, in which valvular tissues exhibited minimal hysteretic and creep behaviors under biaxial loading, yet allowed stress relaxation similar to other types of collagenous tissues. This unique
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https://doi.org/10.1007/978-981-16-7578-2 myriad of innovative measurement technologies has been successfully utilized within in vivo, ex vivo, and in vitro models. Within these models, these technologies have been used to evaluate the function of native heart valves, models of heart valve disease, and prosthetic devices. These evaluations
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