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Artificial Intelligence in Tissue and Organ Regeneration discusses the role of artificial intelligence as a highly sought-after technology in the area of organ and tissue regeneration. Certain groups have made significant progress in mass producing mini organs and organoids from stem cells utilizing such techniques. As time goes on, there will be a need to improve these procedures, protocols, regulatory guidelines, and their clinical implications.
Tissue engineering --- Guided tissue regeneration --- Artificial intelligence --- Tissue Engineering --- Guided Tissue Regeneration --- Artificial Intelligence --- Data processing. --- Data processing. --- Medical applications.
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JAW, EDENTULOUS --- GUIDED TISSUE REGENERATION --- TOOTH ROOT --- ALVEOLAR RIDGE AUGMENTATION --- ANIMALS, WILD --- JAW, EDENTULOUS --- GUIDED TISSUE REGENERATION --- TOOTH ROOT --- ALVEOLAR RIDGE AUGMENTATION --- ANIMALS, WILD
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DENTAL IMPLANTATION --- BONE REGENERATION --- GUIDED TISSUE REGENERATION --- MEMBRANES ARTIFICIAL --- COLLAGEN --- DOGS --- BELGIUM --- DENTAL IMPLANTATION --- BONE REGENERATION --- GUIDED TISSUE REGENERATION --- MEMBRANES ARTIFICIAL --- COLLAGEN --- DOGS --- BELGIUM
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Guided Tissue Regeneration, Periodontal --- Membranes, Artificial --- Alveolar Ridge Augmentation --- Mandibular Diseases --- methods --- surgery
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Much research has focused on the basic cellular and molecular biological aspects of stem cells. Much of this research has been fueled by their potential for use in regenerative medicine applications, which has in turn spurred growing numbers of translational and clinical studies. However, more work is needed if the potential is to be realized for improvement of the lives and well-being of patients with numerous diseases and conditions. This book series 'Cell Biology and Translational Medicine (CBTMED)' as part of SpringerNature’s longstanding and very successful Advances in Experimental Medicine and Biology book series, has the goal to accelerate advances by timely information exchange. Emerging areas of regenerative medicine and translational aspects of stem cells are covered in each volume. Outstanding researchers are recruited to highlight developments and remaining challenges in both the basic research and clinical arenas. This current book is the tenth volume of a continuing series.
Cell biology. --- Cell Biology. --- Cell biology --- Cellular biology --- Biology --- Cells --- Stem cells. --- Guided tissue regeneration. --- Colony-forming units (Cells) --- Mother cells --- Progenitor cells --- GTR (Guided tissue regeneration) --- Regeneration (Biology)
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Electrospinning is a simple and highly versatile method for generating ultrathin fibres with diameters ranging from a few micrometres to tens of nanometres. Although most commonly associated with textile manufacturing, recent research has proved that the electrospinning technology can be used to create organ components and repair damaged tissues. Electrospinning for tissue regeneration provides a comprehensive overview of this innovative approach to tissue repair and regeneration and examines how it is being employed within the biomaterials sector.The book opens with an introduction to
Electrospinning. --- Guided tissue regeneration. --- Tissue engineering -- Methods. --- Tissue engineering. --- Tissue engineering --- Electrospinning --- Investigative Techniques --- Reconstructive Surgical Procedures --- Culture Techniques --- Analytical, Diagnostic and Therapeutic Techniques and Equipment --- Clinical Laboratory Techniques --- Surgical Procedures, Operative --- Guided Tissue Regeneration --- Methods --- Tissue Engineering --- Health & Biological Sciences --- Biomedical Engineering --- Guided Tissue Regeneration. --- methods. --- Spinning --- Biomedical engineering --- Regenerative medicine --- Tissue culture
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Biomaterials for Neural Tissue Engineering covers a range of materials and technologies used for regenerating or repairing neural tissue. With a strong focus on biomaterials and scaffolds, the book examines the testing and evaluation pathway for in-vitro and in-vivo testing trials. This book introduces the reader to the fundamentals of the nervous system from a tissue engineering perspective and goes on to describe contemporary technologies used in the development of neural repair materials, as well as currently available biomaterials suitable for neural tissue repair and regeneration. This detailed reference is ideal for those who are new to using biomaterials in tissue engineering, particularly those interested in the nervous system, including academics and early career researchers in the fields of materials science, regenerative medicine, biomedical engineering and clinical sciences.
Nerve tissue --- Cultures and culture media. --- Tissue engineering --- Biocompatible Materials --- Tissue Engineering --- Nerve Regeneration --- Guided Tissue Regeneration --- Materials. --- therapeutic use --- methods
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3D Bioprinting and Nanotechnology in Tissue Engineering and Regenerative Medicine, Second Edition provides an in-depth introduction to bioprinting and nanotechnology and their industrial applications. Sections cover 4D Printing Smart Multi-responsive Structure, Cells for Bioprinting, 4D Printing Biomaterials, 3D/4D printing functional biomedical devices, 3D Printing for Cardiac and Heart Regeneration, Integrating 3D printing with Ultrasound for Musculoskeletal Regeneration, 3D Printing for Liver Regeneration, 3D Printing for Cancer Studies, 4D Printing Soft Bio-robots, Clinical Translation and Future Directions.
Tissue engineering. --- Biomedical engineering --- Regenerative medicine --- Tissue culture --- Tissue Engineering --- Guided Tissue Regeneration --- Regeneration, Guided Tissue --- Tissue Regeneration, Guided --- Bioprinting --- Cell- and Tissue-Based Therapy --- Engineering, Tissue --- Microphysiological Systems --- Organ Culture Techniques --- Tissue Expansion --- Regenerative Medicine --- Guided tissue regeneration. --- Nanomedicine. --- Nanotechnology. --- Bioprinting. --- Nanotechnology
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Tissue engineering --- Biomedical materials --- Biomedical engineering --- Tissue Engineering --- Guided Tissue Regeneration. --- Biomedical engineering. --- Biomedical materials. --- Tissue engineering. --- methods. --- Health Sciences --- General and Others --- Guided Tissue Regeneration, Periodontal. --- Guided Tissue Regeneration --- Engineering, Tissue --- Regeneration, Guided Tissue --- Tissue Regeneration, Guided --- Biocompatible materials --- Biomaterials --- Medical materials --- Medicine --- Clinical engineering --- Medical engineering --- Materials --- methods --- Regenerative medicine --- Tissue culture --- Biocompatibility --- Prosthesis --- Bioengineering --- Biophysics --- Engineering --- Bioprinting --- Cell- and Tissue-Based Therapy --- Organ Culture Techniques --- Tissue Expansion --- Regenerative Medicine --- General biochemistry --- Human biochemistry --- Clinical chemistry --- Biotechnology --- Bioartificial materials --- Biomaterials (Biomedical materials) --- Hemocompatible materials
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