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422 tulosta hakusanalla "Tissue Engineering"
Cardiovascular Regeneration Therapies Using Tissue Engineering Approaches
Springer Verlag, Japan
2005
nidottu
The cardiovascular system transports oxygen and nutrients to all parts of the body; therefore, any impediment to this system through, for example, a circulatory disorder, represents a serious threat to organs, tissues, and cells. Obstructive diseases of vessels with a diameter of more than 1 mm can be treated by conventional surgical and interventional approaches; however, blockages in small vessels with a diameter of less than 1 mm cannot be treated by conventional methods. As a consequence, therapeutic ang- genesis and vasculogenesis for the treatment of ischemic diseases have been widely studied in the last decade. These methods may contribute to the re pair of intractable cardiovascular diseases with a main vascular involvement in the body's smallest vessels. In this book, Hikaru Matsuda and I have tried to summarize recent Japanese developments in the field of cardiovascular regeneration therapies using tissue engineering. The Ministry of Health, Labor, and Welfare of Japan has been encouraging the National Cardiovascular Center Research Institute to promote cardiovascular regeneration therapies using such ap proaches. Therefore, it is with the financial aid and support of research grants, such as that for Cardiovascular Disease (13C-1 and I6C-6), Health and Labor Sciences Research Grants (RHGTEFB-genome-005, RHGTEFB-saisei-003, and CRCD-junkanki-009) and a grant from NEDO of Japan, that significant progress has been possible.
1st National Congress of Tissue Engineering and Regenerative Medicine
Lap Lambert Academic Publishing
2018
nidottu
Novel Avenues Of Tissue Engineering In Endodontics - Regeneration
Nitin Gupta; Sonali Taneja
Lap Lambert Academic Publishing
2018
nidottu
Application of Tissue Engineering in Fracture Healing of Radius in Rat
Somayeh Monazzah Harsini
Lap Lambert Academic Publishing
2018
nidottu
Emerging Biomaterials & Techniques in Tissue Engineering
Yamir Budhwar; Tejinder Kaur; Amit Dhawan
LAP Lambert Academic Publishing
2020
pokkari
Anwendung von Tissue Engineering bei der Heilung von Radiusfrakturen bei Ratten
Somayeh Monazzah Harsini
Verlag Unser Wissen
2022
nidottu
Neue Wege des Tissue Engineering in der Endodontie - Regeneration
Nitin Gupta; Sonali Taneja
Verlag Unser Wissen
2023
pokkari
Regeneration: Die reichsten Ressourcen der Natur liegen in der Natur selbst ‖ Der menschliche Mund verf gt ber bemerkenswerte Eigenschaften, er ist sehr anf llig f r traumatische Verletzungen, mikrobielle Angriffe und angeborene Anomalien. Da das menschliche Gebiss eine entscheidende Rolle beim Kauen, Sprechen und in der sthetik spielt, ist die Suche nach eindeutigen und wirksameren Strategien zur Wiederherstellung der Funktionalit t im Falle einer St rung wichtig. Umfassende Entwicklungen auf dem Gebiet der Stammzellen- und Tissue-Engineering-Techniken und deren Anwendungen haben die Anwendung der regenerativen Medizin in der Zahnmedizin m glich gemacht. Die j ngsten Fortschritte und Entwicklungen haben die klinische Relevanz dieses aufstrebenden Bereichs in der Zahnheilkunde als praktikable restaurative Option f r den Ersatz und die Regeneration von Zahngeweben vergr ert. Die regenerative Endodontie ist eine unumg ngliche Therapie und ein Aufruf zum Handeln. Das freigesetzte Potenzial der regenerativen Endodontie k nnte jedes Jahr Millionen von Patienten zugute kommen.
Novel Avenues Of Tissue Engineering In Endodontics - Regeneração
Nitin Gupta; Sonali Taneja
Edicoes Nosso Conhecimento
2023
pokkari
Regenera o: - Os recursos mais ricos da natureza, encontram-se na pr pria natureza ‖ A boca humana beneficia de propriedades not veis, muito suscept vel a les es traum ticas, exposi o a ataques microbianos, e anomalias cong nitas. Como a denti o humana desempenha um papel crucial na mastiga o, tanto a fala como a est tica, tem sido importante procurar estrat gias definidas e mais eficazes para restabelecer a funcionalidade em caso de perturba es. Desenvolvimentos extensivos no campo das t cnicas de engenharia de c lulas estaminais e tecidos ao longo das suas aplica es tornaram poss vel a aplica o do campo da medicina regenerativa medicina dent ria. Os recentes progressos e evolu o aumentaram a relev ncia cl nica deste campo emergente na medicina dent ria como uma op o restauradora vi vel para a substitui o e regenera o dos tecidos dent rios. A endodontia regenerativa uma terapia inevit vel e exige ac o. O potencial desencadeado da endodontia regenerativa pode beneficiar milh es de pacientes em cada ano.
Die Rolle des Stammzell-Tissue Engineering in der Endodontie
Divya Singh; Gaurav Jain; Pradyumna Misra
Verlag Unser Wissen
2024
pokkari
Stammzellen stellen nat rliche Einheiten der Embryonalentwicklung und der Geweberegeneration dar. Stammzellen sind pluripotente Zellen, die die nat rliche F higkeit besitzen, sich in mehrere Zellen mit kontrollierter und ausgepr gter Hyperplasie zu teilen. Sie spielen eine zentrale Rolle bei der Entwicklung von Z hnen, die durch den Prozess der regenerativen Endodontie reguliert wird Das Potenzial von Stammzellen zur Behandlung verheerender Krankheiten wurde als einer der gr ten medizinischen Durchbr che aller Zeiten vorgestellt. Stammzellen k nnen in der Medizin und der Zahnmedizin eine gr ere Rolle spielen. Die vollst ndige Wiederherstellung der physiologischen, strukturellen und mechanischen Integrit t der nativen Gewebestruktur ist eine faszinierende Tatsache und ein Weg, der noch weit entfernt ist von den H nden der Menschheit. Die Fortschritte in der Biologie adulter Stammzellen haben der biomedizinischen Gemeinschaft einen gro en Ansto gegeben, diese Erkenntnisse in die klinische Anwendung zu bertragen.
Role of Stem Cell Tissue Engineering in Endodontics
Divya Singh; Gaurav Jain; Pradyumna Misra
Lap Lambert Academic Publishing
2024
pokkari
Stem cells represent natural units of embryonic development and tissue regeneration. Stem cells are pluripotent cells which have the natural capacity to divide into multiple cells with controlled and marked hyperplasia. It plays a pivotal role in the development of tooth which is regulated by the process of regenerative endodontics The potential of stem cells to treat devastating diseases has been introduced as one of the greatest medical breakthroughs of all time. Stem cells have more roles to play in medicine and dentistry. The complete restoration of the physiologic, structural & mechanical integrity of the native tissue structure is fascinating fact and it's a way far to reach the hands of mankind. Advances in adult stem cell biology have provided a great deal of impetus for the biomedical community to translate these findings into clinical application.
Innovative Strategies in Tissue Engineering
River Publishers
2024
nidottu
In spite of intensive investments and investigations carried out in the last decade, many aspects of the stem cell physiology, technology and regulation remain to be fully defined. After the enthusiasm that characterized the first decade of the discovery that when given the right cue, stem cells could repair all the different tissues in the body; it is now time to start a serious and coordinated action to define how to govern the stem cell potential and to exploit it for clinical applications. This can be achieved only with shared research programs involving investigators from all over the world and making the results available to all.The Disputationes Workshop series (http://disputationes.info) is an international initiative aimed at disseminating stem cell related cutting edge knowledge among scientists, healthcare workers, students and policy makers. The present book gathers together some of the ideas discussed during the third and fourth Disputationes Workshops held in Florence (Italy) and Aalborg (Denmark), respectively. The aim of this book is to preserve those ideas in order to contribute to the general discussion on organ repair and to bolster a fundamental scientific and technological leap forwards the treatment of otherwise incurable diseases.
Innovative Strategies in Tissue Engineering
River Publishers
2015
sidottu
In spite of intensive investments and investigations carried out in the last decade, many aspects of the stem cell physiology, technology and regulation remain to be fully defined. After the enthusiasm that characterized the first decade of the discovery that when given the right cue, stem cells could repair all the different tissues in the body; it is now time to start a serious and coordinated action to define how to govern the stem cell potential and to exploit it for clinical applications. This can be achieved only with shared research programs involving investigators from all over the world and making the results available to all.The Disputationes Workshop series (http://disputationes.info) is an international initiative aimed at disseminating stem cell related cutting edge knowledge among scientists, healthcare workers, students and policy makers. The present book gathers together some of the ideas discussed during the third and fourth Disputationes Workshops held in Florence (Italy) and Aalborg (Denmark), respectively. The aim of this book is to preserve those ideas in order to contribute to the general discussion on organ repair and to bolster a fundamental scientific and technological leap forwards the treatment of otherwise incurable diseases.
Bioreactors for Tissue Engineering
Springer
2011
nidottu
For the first time in a single volume, the design, characterisation and operation of the bioreactor system in which the tissue is grown is detailed. Bioreactors for Tissue Engineering presents an overall picture of the current state of knowledge in the engineering of bioreactors for several tissue types (bone, cartilage, vascular), addresses the issue of mechanical conditioning of the tissue, and describes the use of techniques such as MRI for monitoring tissue growth. This unique volume is dedicated to the fundamentals and application of bioreactor technology to tissue engineering products. Not only will it appeal to graduate students and experienced researchers in tissue engineering and regenerative medicine, but also to tissue engineers and culture technologists, academic and industrial chemical engineers, biochemical engineers and cell biologists who wish to understand the criteria used to design and develop novel systems for tissue growth in vitro.
Advances on Modeling in Tissue Engineering
Springer
2011
sidottu
This book presents a collection of chapters describing the state of the art on computational modelling and fabrication in tissue engineering. Tissue Engineering is a multidisciplinary field involving scientists from different fields. The development of mathematical methods is quite relevant to understand cell biology and human tissues as well to model, design and fabricate optimized and smart scaffolds. The chapter authors are the distinguished keynote speakers at the first Eccomas thematic conference on Tissue Engineering where the emphasis was on mathematical and computational modeling for scaffold design and fabrication. This particular area of tissue engineering, whose goal is to obtain substitutes for hard tissues such as bone and cartilage, is growing in importance.
Advances on Modeling in Tissue Engineering
Springer
2013
nidottu
This book presents a collection of chapters describing the state of the art on computational modelling and fabrication in tissue engineering. Tissue Engineering is a multidisciplinary field involving scientists from different fields. The development of mathematical methods is quite relevant to understand cell biology and human tissues as well to model, design and fabricate optimized and smart scaffolds. The chapter authors are the distinguished keynote speakers at the first Eccomas thematic conference on Tissue Engineering where the emphasis was on mathematical and computational modeling for scaffold design and fabrication. This particular area of tissue engineering, whose goal is to obtain substitutes for hard tissues such as bone and cartilage, is growing in importance.
Regenerative Medicine and Tissue Engineering
In Tech
2011
sidottu
Tissue Engineering may offer new treatment alternatives for organ replacement or repair deteriorated organs. Among the clinical applications of Tissue Engineering are the production of artificial skin for burn patients, tissue engineered trachea, cartilage for knee-replacement procedures, urinary bladder replacement, urethra substitutes and cellular therapies for the treatment of urinary incontinence. The Tissue Engineering approach has major advantages over traditional organ transplantation and circumvents the problem of organ shortage. Tissues reconstructed from readily available biopsy material induce only minimal or no immunogenicity when reimplanted in the patient. This book is aimed at anyone interested in the application of Tissue Engineering in different organ systems. It offers insights into a wide variety of strategies applying the principles of Tissue Engineering to tissue and organ regeneration.
New Trends in Tissue Engineering and Regenerative Medicine
In Tech
2014
sidottu
This book is an edited collection of all the achievements of the main members of the Dental Division of the Japanese Society for Regenerative Medicine, which derives from the Japanese Forum for Regenerative Dentistry established in 2003. Scientific meetings held by these organizations gleaned specific experiences of the academic community as well as clinical experiences of the most renowned experts in the field of dentistry. The editors are especially proud of bringing together leading biologists and dentists of all specialties. This unique collection of reports on the achievements and experiences of experts from all over the world represents the current spectrum of possibilities in tissue engineering of substitutes not only in dentistry but also in medicine. This book has been produced and distributed with the support from The Japanese Society for Regenerative Medicine.
Scaffolds in Tissue Engineering Materials, Technologies and Clinical Applications
IntechOpen
2017
sidottu
Biomaterials are often designed to act as scaffolds, i.e., 3D porous templates that support and stimulate the growth of healthy tissue and then safely dissolve once they have performed their functions. This book provides a picture of the current state of the art in the field of scaffolds for tissue engineering, highlighting the potential associated to the latest scientific and technological advancements. The former part of the book focuses on the repair of "hard" tissues (primarily bone) by means of bioceramic/glass scaffolds, and the latter deals with the applications of polymeric scaffolds for regenerating "soft" tissues and structures including the peripheral nerve, heart, gastric mucosa and pancreas. Special emphasis is given to the challenges associated to scaffold manufacturing, biomimetic properties and cell-scaffold interactions.