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Ditemukan 12478 dokumen yang sesuai dengan query
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El-Meliegy, Emad
"This book provides readers with an interest in medical ceramics with the ability to start making their own glasses and glass ceramics, together with an understanding of the various factors that control the final properties of these medical and dental materials. In addition, the authors describe various industrial problems with current, clinically-used medical glass ceramics and discuss appropriate scientific solutions."
New York: Springer, 2012
e20405872
eBooks  Universitas Indonesia Library
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"Textiles play a vital role in the manufacture of various medical devices, including the replacement of diseased, injured or non-functioning organs within the body. Biotextiles as medical implants provides an invaluable single source of information on the main types of textile materials and products used for medical implants. The first part of the book focuses on polymers, fibers and textile technologies, and these chapters discuss the manufacture, sterilization, properties and types of biotextiles used for medical applications, including nanofibers, resorbable polymers and shaped biotextiles. The chapters in part two provide a comprehensive discussion of a range of different clinical applications of biotextiles, including surgical sutures, arterial prostheses, stent grafts, percutaneous heart valves and drug delivery systems.
This book provides a concise review of the technologies, properties and types of biotextiles used as medical devices. In addition, it addresses the biological dimension of how to design devices for different clinical applications."
Cambridge, UK: Woodhead, 2013
e20426824
eBooks  Universitas Indonesia Library
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"Biomedical foams are a new class of materials, which are increasingly being used for tissue engineering applications. Biomedical Foams for Tissue Engineering Applications provides a comprehensive review of this new class of materials, whose structure can be engineered to meet the requirements of nutrient trafficking and cell and tissue invasion, and to tune the degradation rate and mechanical stability on the specific tissue to be repaired.
Part one explores the fundamentals, properties, and modification of biomedical foams, including the optimal design and manufacture of biomedical foam pore structure for tissue engineering applications, biodegradable biomedical foam scaffolds, tailoring the pore structure of foam scaffolds for nerve regeneration, and tailoring properties of polymeric biomedical foams.
Chapters in part two focus on tissue engineering applications of biomedical foams, including the use of bioactive glass foams for tissue engineering applications, bioactive glass and glass-ceramic foam scaffolds for bone tissue restoration, composite biomedical foams for engineering bone tissue, injectable biomedical foams for bone regeneration, polylactic acid (PLA) biomedical foams for tissue engineering, porous hydrogel biomedical foam scaffolds for tissue repair, and titanium biomedical foams for osseointegration."
Cambridge, UK: Woodhead, 2014
e20426814
eBooks  Universitas Indonesia Library
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Hill, David, 1951-
New York : John Wiley & Sons, 1998
610.28 HIL d
Buku Teks SO  Universitas Indonesia Library
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Hendra Hermawan
"This book in the emerging research field of biomaterials covers biodegradable metals for biomedical applications. The book is completed by a perspective on the use of biodegradable metals for biomedical applications in the era of tissue engineering."
Heidelberg : Springer, 2012
e20405807
eBooks  Universitas Indonesia Library
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Shen, James Zhijian
"The growth of implant and fixed prosthodontics practices in dentistry has created a rapidly increasing demand for advanced ceramics and ceramic processes. Innovations in ceramics and ceramic processes are vital to ensure reliable and affordable dental-restoration solutions with aesthetically pleasing outcomes.
The work aims to engage the bioceramics and engineering communities to meet the challenges of modern dental restoration using advanced ceramics. Incorporating fundamental science, advanced engineering concepts, and clinical outcomes."
Waltham, MA: Elsevier, 2014
e20426758
eBooks  Universitas Indonesia Library
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"Written in a versatile, contemporary style that will benefit both novice and expert alike, Biological and Biomedical Coatings Handbook, Two-Volume Set covers the state of the art in the development and implementation of advanced thin films and coatings in the biological field. Consisting of two volumes--Processing and Characterization and Applications--this handbook details the latest understanding of advances in the design and performance of biological and biomedical coatings, covering a vast array of material types, including bio-ceramics, polymers, glass, chitosan, and nanomaterials. Contri."
Boca Raton: CRC press, 2011
610.28 BIO
Buku Teks SO  Universitas Indonesia Library
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Maylani Tiarna Riasmin
"Paduan zirkonium dikembangkan untuk aplikasi biomaterial karena sifat biokompatibilitasnya yang baik dengan magnetic susceptibility lebih rendah dibandingkan biomaterial logam lain. Pengembangan pembuatan paduan Zr-12Mo dengan metode metalurgi serbuk dapat dijadikan solusi alternatif terhadap proses cor yang memerlukan peleburan zirkonium dan molibdenum yang memiliki titik lebur tinggi. Proses sinter merupakan tahapan penting yang menentukan sifat akhir produk metalurgi serbuk. Penelitian ini bertujuan untuk meneliti pengaruh temperatur dan waktu sinter terhadap densitas, porositas, struktur mikro serta sifat mekanis paduan Zr-12Mo yang diproduksi dengan berbagai parameter sinter. Penelitian menggunakan temperatur sinter 1000°C, 1100°C dan 1200°C dengan variasi waktu tahan 2 dan 4 jam di masing-masing temperatur. Sampel dilakukan pengujian densitas, XRD dan kekerasan, pengamatan dengan OM dan SEM, serta pengujian terhadap sifat bioaktif dengan menguji terbentuknya lapisan hidroksiapatit setelah perendaman dalam SBF selama seminggu. Hasil penelitian menunjukkan bahwa temperatur sinter lebih dominan dalam mempengaruhi hasil proses sinter dibandingkan waktu tahan karena peningkatan temperatur sangat meningkatkan difusi. Porositas minimum, densitas dan kekerasan maksimum serta difusivitas Mo dalam Zr optimal dicapai pada temperatur sinter 1200°C dengan waktu tahan 4 jam.

Zirconium alloys have been developed for biomaterial applications because it has good biocompatibility with magnetic susceptibility that is lower than other metallic biomaterials. Developing of Zr-12Mo alloys by powder metallurgy method can be used as alternative solution for casting process that need melting of zirconium and molybdenum which have high melting point. Sintering process is the important stage which determining final properties of powder metallurgy’s products. This research is aimed to study the effects of sintering time and temperature on density, porosity, microstructure, and mechanical properties of Zr-12Mo alloys produced by various sintering parameters. This research uses sintering temperatures of 1000°C, 1100°C and 1200°C with holding times for 2 and 4 hours for each temperature. Samples are examined by density, XRD and hardness testing, observation with OM and SEM, and also bioactive testing by proving the forming of hidroxyapatite layers after soaking in SBF for a week. The results show that sintering temperature more dominant in affecting sintering products than holding time because the increase of sintering temperature increase the diffusion greatly. Minimum porosity, maximum density and hardness with optimal diffusivity is achieved by using sintering temperature of 1200°C with holding time for 4 hours.
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Depok: Fakultas Teknik Universitas Indonesia, 2014
S53304
UI - Skripsi Membership  Universitas Indonesia Library
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"This book presents an overview of the ways in which the latest experimental and theoretical nanotechnologies are serving the fields of biotechnology, medicine, and biomaterials. They not only enhance the efficiency of common therapeutics and lower their risks, but thanks to their specific properties, they also provide new capabilities. Nano-scale measurement techniques, such as nano-indentation and nano-scratch methods, could potentially be used to characterize the physical and mechanical properties of both natural tissues and synthetic biomaterials in terms of strength and durability."
Switzerland: Springer Nature, 2019
e20509291
eBooks  Universitas Indonesia Library
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"Features a number of reviews documenting the properties and failure mechanisms of metallic implant materials. Covers body/oral environment and its impact on implant material performance, the basic concepts of biocompatibility, tissue attachment mechanisms, biophysical and biomechanical requirements of implant materials, and more."
Materials Park, Ohio: ASM International, 2003
e20442685
eBooks  Universitas Indonesia Library
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