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- BookXue Xue, editor.Summary: This book provides an overview of the current applications of nanomaterials in brain diseases, and introduces several novel nanomaterials that have excellent potential in this field. During the last two decades, nanotechnology had matured significantly as it has transitioned from a bench-top science to an applied technology. However, the application of nanomaterials in basic and clinical neuroscience is still at an early stage, and understanding how the intrinsic properties of nanomaterials translate to complex biological responses is an area of intensive research. Part 1 of the book focuses on the principles and strategies of nanomedicine in the brain diseases, while part 2 examines the applications of promising nanomaterials for therapy and diagnosis in the brain. Together they offer a comprehensive picture of advances in nanotechnology and their successful use in treating brain diseases in the past 20 years.
Contents:
Introduction: Nanomedicine in the Brain
The Strategies of Nanomaterials for Traversing Blood-Brain Barrier
The Strategies of Nanomaterials for Drug Delivery and Release
The Strategies of Nanomaterials for Therapy
The Strategies of Nanomaterials for Diagnostic and Imaging
Nanoenzyme
Biomacromolecule-Based Nanomedicine
Carbon-Based Nanomedicine
Polymeric Nanomedicine
Magnetic Nanomedicine
Boron Neutron Capture Nanomedicines. - ArticleKüsswetter W, Permooser F, Ungethüm M.Arch Orthop Trauma Surg (1978). 1978 May 30;91(3):217-21.Creep, hysteresis, stability, elongation capability and repeatbility of butylcyanoacrylate as a proper adhesive for bonding strain gages to non-fixed tissues have been tested with good results. Due to its excellent bonding performance butylcyanoacrylate provides the only means for bonding electrical resistance foil strain gages to biological materials for the time being. This opens new aspects for strain measurements with strain gages in the biomechanical field.