Mesenchymal Stem Cells: Biological Concepts, Current Advances, Opportunities and Challenges systematically summarizes and discusses the basic concepts and latest updates of mesenchymal stem cells (MSCs) in the past 60 years, as well as the latest progress of clinical translational research and regulatory policy at home and abroad, which will be of great practical significance for promoting and guiding the future development of stem cell production and regenerative medicine. - Systematically introduces the latest updates on Mesenchymal stem cells (MSCs), helping readers have a systematic understanding of MSCs - Summarizes knowledge on MSC-based cytotherapy in clinical practice to benefit clinicians and help them design MSC-relevant clinical trials - Introduces newly developed concepts of MSC-based tissue engineering
This book introduces systematically the eigenfunction method, a new approach to the group representation theory which was developed by the authors in the 1970's and 1980's in accordance with the concept and method used in quantum mechanics. It covers the applications of the group theory in various branches of physics and quantum chemistry, especially nuclear and molecular physics. Extensive tables and computational methods are presented.Group Representation Theory for Physicists may serve as a handbook for researchers doing group theory calculations. It is also a good reference book and textbook for undergraduate and graduate students who intend to use group theory in their future research careers.
This book demonstrates that different rudder configurations have different hydrodynamic characteristics, which are influenced by the profile, the parameters, and the specific configuration. The author proposes new regression formulas to help naval architects quickly estimate the rudder-induced forces and moments in maneuvering. Furthermore, the author proposes and validates an integrated maneuvering model for both seagoing ships and inland vessels. Using the proposed regression formulas and maneuvering model, the specific impacts of rudder configurations on inland vessel maneuverability are studied. In turn, the book demonstrates the application of Reynolds-Averaged Navier–Stokes (RANS) simulations to obtain rudder hydrodynamic characteristics, and the integration of the RANS results into maneuvering models as an accurate estimation of rudder forces and moments needed to quantify the impacts of rudder configurations on ships’ maneuvering performance. In addition, the author proposes new criteria for the prediction and evaluation of inland vessel maneuverability. Simulations of ships with various rudder configurations are presented, in order to analyze the impacts of rudder configurations on ship maneuverability in different classic and proposed test maneuvers. Offering essential guidance on the effects of rudders for inland vessel maneuverability, and helping practical engineers make informed design choices, the book is of interest to researchers and academics in the field of naval engineering, as well as students of naval architecture. Industrial practitioners working on ship design may also find it beneficial.
Mesenchymal Stem Cells: Biological Concepts, Current Advances, Opportunities and Challenges systematically summarizes and discusses the basic concepts and latest updates of mesenchymal stem cells (MSCs) in the past 60 years, as well as the latest progress of clinical translational research and regulatory policy at home and abroad, which will be of great practical significance for promoting and guiding the future development of stem cell production and regenerative medicine. - Systematically introduces the latest updates on Mesenchymal stem cells (MSCs), helping readers have a systematic understanding of MSCs - Summarizes knowledge on MSC-based cytotherapy in clinical practice to benefit clinicians and help them design MSC-relevant clinical trials - Introduces newly developed concepts of MSC-based tissue engineering
This book introduces systematically the eigenfunction method, a new approach to the group representation theory which was developed by the authors in the 1970's and 1980's in accordance with the concept and method used in quantum mechanics. It covers the applications of the group theory in various branches of physics and quantum chemistry, especially nuclear and molecular physics. Extensive tables and computational methods are presented.Group Representation Theory for Physicists may serve as a handbook for researchers doing group theory calculations. It is also a good reference book and textbook for undergraduate and graduate students who intend to use group theory in their future research careers.
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