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By covering theory, design, and fabrication of nanostructured superconducting materials, this monograph is an invaluable resource for research and development. Examples are energy saving solutions, healthcare, and communication technologies. Key ingredients are nanopatterned materials which help to improve the superconducting critical parameters and performance of superconducting devices, and lead to novel functionalities. Contents Tutorial on nanostructured superconductors Imaging vortices in superconductors: from the atomic scale to macroscopic distances Probing vortex dynamics on a single vortex level by scanning ac-susceptibility microscopy STM studies of vortex cores in strongly confine...
The First Conference on materials science and engineering, including physics, physical chemistry, condensed matter chemistry, and technology in general, was held in September 1995, in Herceg Novi. An initiative to establish Yugoslav Materials Research Society was born at the conference and, similar to other MR societies in the world, the programme was made and objectives determined. The Yugoslav Materials Research Society (Yu-MRS), a nongovernment and non-profit scientific association, was founded in 1997 to promote multidisciplinary goal-oriented research in materials science and engineering. The main task and objective of the Society has been to encourage creativity in materials research a...
Imagine if the mere breeze of an air conditioner were to send you into excruciating pain. For those suffering from Complex Regional Pain Syndrome (CRPS), historically called Reflex Sympathetic Dystrophy (RSD), this crippling neuropathic pain is an unrelenting reality. With symptoms such as swelling, hypersensitivity, stiffness, burning pain, and temperature abnormalities, CRPS can develop at any time and quickly leaves its victims disabled and isolated. This book explains CRPS in an accessible style, featuring modern self-help techniques, complementary therapies, and holistic strategies for maximizing the potential for healing. Readers with CRPS will find a wealth of tips on life modificatio...
This issue of Hematology/Oncology Clinics, Guest Edited by Dr. John P. Leonard, is devoted to Mantle Cell Lymphoma. This issue is one of six selected each year by our series Consulting Editors, George P. Canellos and Edward J. Benz. Topics discussed in this important issue include: Molecular pathogenesis of Mantle Cell Lymphoma; MCL and cell cycle dysregulation; Heterogeneity in MCL biology and outcomes; Watch and wait in mantle cell lymphoma; Limited stage mantle cell lymphoma; Initial and consolidation therapy for younger patients with MCL; Approach to the initial treatment of older patients with MCL; Current and future approaches to the use of minimal residual disease monitoring in the treatment of patients with MCL; Bruton's Tyrosine Kinase inhibitors for treatment of Mantle Cell Lymphoma; BTKi resistance in MCL; Blastoid MCL; Allogeneic transplant and CAR-T cell therapy in MCL; Quality of life considerations and chronic therapy in management of patients with MCL; and Key clinical and translational research questions.
Better therapy of acute leukemias depends ultimately on better understanding of the distinction between leukemic and normal progenitor cells. This hugely important new book describes the current knowledge of acute leukemia biology and discusses new classification systems that have arisen as a result of emerging insights into pathogenesis. Estey, Faderl and Kantarjian, who all work at the respected Anderson Cancer Center in Houston, Texas, USA, examine in detail advances in the treatment of particular types of acute leukemia. Their book also covers the management of acute leukemia in general as well as the development of new therapies. This book will be extremely useful to clinicians.
This book explores the conversion for solar energy into renewable liquid fuels through electrochemical reactions. The first section of the book is devoted to the theoretical fundamentals of solar fuels production, focusing on the surface properties of semiconductor materials in contact with aqueous solutions and the reaction mechanisms. The second section describes a collection of current, relevant characterization techniques, which provide essential information of the band structure of the semiconductors and carrier dynamics at the interface semiconductor. The third, and last section comprises the most recent developments in materials and engineered structures to optimize the performance of solar-to-fuel conversion devices.
In contrast to the situation in heterotrophic organisms, plant genomes code for a significantly larger number of oxidoreductases such as thioredoxins (TRXs) and glutaredoxins (GRXs). These proteins provide a biochemical mechanism that allows the rapid and reversible activation or deactivation of protein functions in response to changing environmental conditions, as oxidative conditions caused by excessive photosynthesis. Indeed, owing to the fact that cysteines are sensitive to oxidation, TRXs and GRXs play an essential role in controlling the redox state of protein thiol groups. These redox-dependent post-translational modifications have proven to be critical for many cellular functions constituting regulatory, signalling or protective mechanisms. The articles contained in this Research Topic provide timely overviews and new insights into thiol-dependent redox regulation mechanisms with a focus on TRX- and GRX-based reduction systems in plants. The different contexts discussed take into account physiological, developmental and environmental conditions.
This book is a printed edition of the Special Issue " Hydrogels in Tissue Engineering" that was published in Gels
A timely addition to the highly acclaimed four-volume handbook set; volumes 5 and 6 highlight recent developments, particularly in the fields of new materials, molecular modeling and durability. Since the publication of the first four volumes of the Handbook of Fuel Cells in 2003, the focus of fuel cell research and development has shifted from optimizing fuel cell performance with well-known materials to developing new materials concepts, and to understanding the origins of materials and fuel cell degradation. This new two-volume set provides an authoritative and timely guide to these recent developments in fuel cell research.