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Titlebook: Cardiovascular Engineering; Technological Advanc Dyah Ekashanti Octorina Dewi,Yuan Wen Hau,Eko Supr Book 2020 Springer Nature Singapore Pte

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Dyah Ekashanti Octorina Dewi,Yuan Wen Hau,Eko SuprIncludes recent findings, reviews, and advances in cardiac engineering.Highlights the use of biomaterials and 3D printing for tissue-engineered heart valves.Presents a unique combination of engineerin
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Cardiovascular Engineering978-981-10-8405-8Series ISSN 2196-8861 Series E-ISSN 2196-887X
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https://doi.org/10.1007/978-981-10-8405-8Computational Imaging Models; Tissue Mimicking Materials; Multimodal Medical Image Fusion; Aortic Annul
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Quasi-Free Scattering and Nuclear Structure,parameters are often evaluated, validated, and justified during the optimization process of the system. A large number of calibration techniques have been used in this process to provide values that specify how standardized the imaging system is. The most common technique is using physical imaging p
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Muon (μSR) Spectroscopy of the Fullerenesmethods to ensure that all parameters are measured in optimum manners. Physical imaging phantom, a quality assurance device in patient dummy representation, has provided various biophysical imaging measurements for verifying the degree of reliability, reproducibility, accuracy, and usefulness in the
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Positron Annihilation in Fullerenesdiagnosis, and treatment of diseases. The involvement of cardiac imaging in cardiac models have shown great improvement in representing the anatomy and physiology of the heart, not only with better functions, but also equipped with more realistic geometrical and structural features. In consort with
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