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From Current to Future Trends in Pharmaceutical Technology explores the current trends of this field and creates a multi-aspect framework for the reader. The book covers topics on pharmaceutics, pharmaceutical engineering, pre-formulation protocols, techniques, innovative excipients, bio-printing techniques, scale-up based on formulas on-a-chip, and regulatory aspects based on new scientific achievements. Modified dosage forms, new aspects on the compatibility of drug excipients interactions, and drug release by various dosage forms are included. Physical pharmacy (physical and biological stability of dosage forms), innovative excipients, patents on innovative formulations and regulatory issues related to the approval process of medicines are also discussed. The book is a valuable resource for a wide audience of academics, industrial researchers and professionals working in this field as the development of efficient and safe medicines is critical to future needs.
Pharmaceutical technology. --- Technology, Pharmaceutical. --- Drug Discovery. --- Printing, Three-Dimensional.
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"As an emerging technology, 3D printing holds much promise for foot and ankle reconstruction and difficult-to-treat pathologies. The first text of its kind, Clinical Application of 3D Printing in Foot and Ankle Surgery provides comprehensive, in-depth operative coverage as well as opinions and case examples from surgeons who are currently using 3D printing in their practices. This ground-breaking volume sets the standard for this rapidly advancing field and provides practical, real-world guidance on incorporating 3D printing into your surgical practice"--
Foot --- Ankle --- Three-dimensional printing --- Biomedical materials. --- Printing, Three-Dimensional --- Surgery. --- Therapeutic use. --- surgery --- Printing, Three-Dimensional. --- surgery.
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"4D Printing: Fundamentals and Applications explores both autonomic and non-autonomic systems with different stimulus such as temperature, current, moisture, light and sound. In addition, the fifth dimensional aspect using more than one stimulus is outlined for additive manufacturing processes. The book presents both an introduction to the basic understanding of hybrid processes and explores the physics behind the process (in the form of derivation and numerical problems). For the field engineer, applicable codes and standards for each hybrid process are provided. Lastly, case studies are included in each section to provide the reader with a model to explore future research directions."--
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Printing, Three-Dimensional --- Oral Medicine --- Denture Design --- Denture Retention --- Sleep Bruxism
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"Polymers for 3D Printing: Methods, Properties, and Characteristics provides a detailed guide to polymers for 3D printing, bridging the gap between research and practice, and enabling engineers, technicians and designers to utilise and implement this technology for their products or applications."--
Three-dimensional printing. --- Polymers --- Polymere --- Polymeride --- Polymers and polymerization --- Macromolecules --- 3-D printing --- 3D printing --- 3DP (Three-dimensional printing) --- Additive manufacturing --- Industrial applications. --- Printing, Three-Dimensional --- Biopolymers --- Printing, Three-Dimensional. --- Polymers. --- Biopolymers.
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"Smart Materials in Additive Manufacturing, Volume 2 covers the mechanics, modeling, and applications of the technology and the materials produced by it. It approaches the topic from an engineering design perspective with cutting-edge modeling techniques and real-world applications and case studies highlighted throughout. The book demonstrates 4D printing techniques for electro-induced shape memory polymers, pneumatic soft actuators, textiles, and more. Modeling techniques with ABAQUS and machine learning are outlined, as are manufacturing techniques for highly elastic skin, tunable RF and wireless structures and modules, and 4D printed structures with tunable mechanical properties. Closed-loop control of 4D printed hydrogel soft robots, hierarchical motion of 4D printed structures using the temperature memory effect, multimaterials 4D printing using a grasshopper plugin, shape reversible 4D printing, and variable stiffness 4D printing are each discussed as well."--
Additive manufacturing. --- Smart materials. --- Adaptive materials --- Intelligent materials --- Sense-able materials --- Materials --- AM (Additive manufacturing) --- Manufacturing processes --- Smart structures. --- Three-dimensional printing. --- Smart Materials --- Printing, Three-Dimensional --- Bioprinting --- Smart Materials. --- Printing, Three-Dimensional. --- Bioprinting.
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3D Printing in Medicine, Second Edition examines the rapidly growing market of 3D-printed biomaterials and their clinical applications. With a particular focus on both commercial and premarket tools, the book looks at their applications within medicine and the future outlook for the field. The chapters are written by field experts actively engaged in educational and research activities at the top universities in the world. The earlier chapters cover the fundamentals of 3D printing, including topics such as materials and hardware. The later chapters go on to cover innovative applications within medicine such as computational analysis of 3D printed constructs, personalized 3D printing - including 3D cell and organ printing and the role of AI - with a subsequent look at the applications of high-resolution printing, 3D printing in diagnostics, drug development, 4D printing, and much more. This updated new edition features completely revised content, with additional new chapters covering organs-on-chips, bioprinting regulations and standards, intellectual properties, and socio-ethical implications of organs-on-demand.
Three-dimensional printing. --- Medical technology. --- Health care technology --- Health technology --- Technology --- 3-D printing --- 3D printing --- 3DP (Three-dimensional printing) --- Additive manufacturing --- Biomedical materials --- Printing, Three-Dimensional --- Design. --- Technological innovations. --- Printing, Three-Dimensional.
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Handbook of Surgical Planning and 3D Printing: Applications, Integration, and New Directions?covers 3D printing and surgical planning from clinical, technical and economic points-of-view. This book fills knowledge gaps by addressing: (1) What type of medical images are needed for 3D printing, and for which specific application? (2) What software should be used to process the images, should the software be considered a medical device? (3) Data protection? (4) What are the possible clinical applications and differences in imaging, segmentation, and 3D printing? And finally, (5) What skills, resources, and organization are needed? Sections cover technologies involved in 3D printing in health: data structure, medical images and segmentation, printing materials and 3d printing, 3D printing and Clinical Applications: orthopedic surgery, neurosurgery, maxillofacial, orthodontistry, surgical guides, integrating 3D printing Service in Hospitals: infrastructures, competences, organization and cost/benefits, and more.
Surgical technology. --- Operating room technology --- Technology, Surgical --- Surgery --- Three-dimensional printing. --- 3-D printing --- 3D printing --- 3DP (Three-dimensional printing) --- Additive manufacturing --- Printing, Three-Dimensional --- Surgical Procedures, Operative --- Technological innovations. --- Printing, Three-Dimensional. --- Surgical Procedures, Operative.
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Metal 3D printing, as an advanced forming, can manufacture parts directly from digital model by using layer by layer material build-up approach. This manufacturing method can prepare complex shape metal parts in short time, with and high precision. Three-dimensional printing processes can be classified into two major groups: Powder Bed Fusion-based technologies and Directed Energy Deposition. Three-dimensional printing features freedom of part complexity, part design, and light-weighting for aerospace, automobile, and other industries application. The Global Metal 3D Printing Market is mainly driven by the the fast developing of aerospace and automobile industry. The Global Metal 3D Printing Market size was valued at USD 534.18 Million in 2020 and is projected to reach USD 4458.76 Million by 2028, growing at a CAGR of 30.38% from 2021 to 2028.
Three-dimensional printing. --- Printing, Three-Dimensional. --- 3-D printing --- 3D printing --- 3DP (Three-dimensional printing) --- Additive manufacturing
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