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| LEADER |
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| 001 |
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| 005 |
20260327175728.0 |
| 006 |
m o d |
| 007 |
cr cnu---unuuu |
| 008 |
240411s2024 ne o 000 0 eng d |
| 040 |
|
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|a OPELS
|b eng
|e rda
|e pn
|c OPELS
|d EBLCP
|d OCLCO
|d OCLCQ
|d UKAHL
|d SFB
|d OCLCQ
|d OCLCL
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| 020 |
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|z 9780323953832
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| 035 |
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|a (OCoLC)1429603007
|
| 050 |
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|a R856
|
| 082 |
0 |
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|a 610.28
|2 23/eng/20240411
|
| 049 |
|
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|a TXAM
|
| 245 |
0 |
0 |
|a Medical additive manufacturing :
|b concepts and fundamentals /
|c edited by Shadpour Mallakpour, Chaudhery Mustansar Hussain.
|
| 264 |
|
1 |
|a Amsterdam :
|b Elsevier,
|c 2024.
|
| 300 |
|
|
|a 1 online resource.
|
| 336 |
|
|
|a text
|b txt
|2 rdacontent
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| 337 |
|
|
|a computer
|b c
|2 rdamedia
|
| 338 |
|
|
|a online resource
|b cr
|2 rdacarrier
|
| 490 |
0 |
|
|a Additive manufacturing materials and technologies
|
| 520 |
|
|
|a Medical Additive Manufacturing: Concepts and Fundamentals provides an overview of the latest research in the field of additively manufactured medical materials. It starts with a broad overview of the current state of medical additive manufacturing and then dives into cutting-edge topics such as medical imaging technologies for additive manufacturing and computer-aided design principles for anatomic modeling. The chapters discuss the state of additive manufacturing in an array of medical fields such as radiology, tissue engineering, nuclear medicine, orthopedics, surgery, cardiology, neurology, optometry, obstetrics, and veterinary medicine. This book concludes with chapters discussing regulatory considerations for additive manufacturing in hospitals and what the future holds for the field.
|
| 588 |
0 |
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|a Online resource; title from PDF title page (ScienceDirect, viewed April 11, 2024).
|
| 505 |
0 |
|
|a Front Cover -- Medical Additive Manufacturing -- Copyright Page -- Dedication -- Contents -- List of contributors -- About the editors -- Preface -- Acknowledgments -- 1 COVID-19 pandemic: the latest achievements in the field of emergency medical devices using 3D printing technology -- 1.1 Introduction -- 1.2 The development of medical equipment through 3D printing during COVID-19 -- 1.2.1 Swab -- 1.2.2 Face masks and dependent equipment -- 1.2.3 Helmet and shield -- 1.2.4 Thermometer and biosensor -- 1.3 Conclusions -- Acknowledgments -- Significant websites about the topic -- References
|
| 505 |
8 |
|
|a 2 Medical additive manufacturing in the battle against the COVID-19 pandemic -- 2.1 Introduction -- 2.2 Medical additive manufacturing -- 2.3 Additively manufactured medical healthcare devices -- 2.4 MAM against the COVID-19 pandemic -- 2.4.1 Additively manufactured face shields -- 2.4.2 3DP of emulsion inks to develop a respiratory protective device -- 2.4.3 3D-printed biodegradable face masks -- 2.4.4 Manufacturing of the ideal tissue platform for COVID-19 infection via 3D bioprinting -- 2.4.5 New IT-based MAM -- 2.4.6 Other possible COVID-19 pandemic-fighting technologies
|
| 505 |
8 |
|
|a 2.5 COVID-19's effects on the MAM industry -- 2.6 Technology evolution pathways of MAM-versus-COVID-19 research -- 2.6.1 Data resources and methods -- 2.6.1.1 Bibliometric statistics from WOS -- 2.6.2 Bibliometric investigation in VOS viewer -- 2.6.2.1 Coauthorship networks -- 2.6.2.2 Cocitation networks -- 2.6.2.3 Bibliographic coupling networks -- 2.6.2.4 Cooccurring keywords network -- 2.6.2.5 Knowledge clusters of MAM research against COVID-19 -- 2.6.2.6 Hotspots and frontiers of MAM -- 2.7 Challenges in MAM against COVID-19 -- 2.8 Summary and future perspectives -- References
|
| 505 |
8 |
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|a 3 Latest innovations in tissue engineering by 3D-printed hyaluronic acid-based hydrogels -- 3.1 Introduction -- 3.2 Applications of 3D-printed hyaluronic acid hydrogels in regenerative biomedicine -- 3.3 Conclusions and future perspectives -- Acknowledgments -- Significant websites about the topic -- References -- 4 Engineering aspects and medical materials of medical additive manufacturing -- 4.1 Additive manufacturing -- 4.1.1 History of additive manufacturing -- 4.1.2 Part fabrication steps of additive manufacturing -- 4.1.3 Difference between additive and conventional manufacturing
|
| 505 |
8 |
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|a 4.1.4 Principle of distinct types of additive manufacturing methods -- 4.1.5 Scopes of additive manufacturing in the biomedical sector -- 4.2 Distinct types of materials used for biomedical implant manufacturing applications -- 4.2.1 PLA -- 4.2.2 PEEK -- 4.2.3 Stainless steel materials -- 4.2.4 Ceramic materials -- 4.2.5 Titanium and titanium alloy material -- 4.2.6 Co-Cr alloys -- 4.3 Mechanical properties of distinct biomedical materials -- 4.4 Merits and demerits of additive manufactured parts -- 4.4.1 Merits of additive manufacturing in the medical sector
|
| 650 |
|
0 |
|a Biomedical engineering.
|
| 650 |
|
0 |
|a Additive manufacturing.
|
| 650 |
|
6 |
|a Génie biomédical.
|
| 650 |
|
6 |
|a Fabrication additive.
|
| 650 |
|
7 |
|a biomedical engineering.
|2 aat
|
| 655 |
|
7 |
|a Electronic books.
|2 local
|
| 700 |
1 |
|
|a Mallakpour, Shadpour,
|e editor.
|
| 700 |
1 |
|
|a Mustansar Hussain, Chaudhery,
|e editor.
|
| 710 |
2 |
|
|a ScienceDirect (Online service)
|
| 856 |
4 |
0 |
|u http://proxy.library.tamu.edu/login?url=https://www.sciencedirect.com/science/book/9780323953832
|z Connect to the full text of this electronic book
|t 0
|
| 955 |
|
|
|a Elsevier ScienceDirect 2026-2027
|
| 994 |
|
|
|a 92
|b TXA
|
| 999 |
f |
f |
|i aac1f125-b27e-411a-8c3b-522e8369da08
|s 483d6f23-653b-4af6-ba6e-1e24b25a0d35
|t 0
|
| 952 |
f |
f |
|a Texas A&M University
|b College Station
|c Electronic Resources
|s www_evans
|d Available Online
|t 0
|e R856
|h Library of Congress classification
|
| 998 |
f |
f |
|a R856
|t 0
|l Available Online
|