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Titlebook: Nanomaterials in Biomedical Application and Biosensors (NAP-2019); Alexander D. Pogrebnjak,Maksym Pogorielov,Roman Vi Conference proceedin

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書(shū)目名稱Nanomaterials in Biomedical Application and Biosensors (NAP-2019)
編輯Alexander D. Pogrebnjak,Maksym Pogorielov,Roman Vi
視頻videohttp://file.papertrans.cn/661/660816/660816.mp4
概述Presents selected articles from the International Conference on Nanomaterials: Applications and Properties (NAP 2019).Highlights new frontiers in the use of metal/metal oxide nanoparticles, hierarchic
圖書(shū)封面Titlebook: Nanomaterials in Biomedical Application and Biosensors (NAP-2019);  Alexander D. Pogrebnjak,Maksym Pogorielov,Roman Vi Conference proceedin
描述.This book covers novel and innovative technologies used in development, modeling, chemical/physical investigation and biomedical (in-vitro and in-vivo) trials of nanomaterials and nanocomposites. Novel methods for nanoparticle development and manufacturing are presented, as well as their safety and promising applications. In addition, the book highlights new frontiers in the use of metal / metal oxide nanoparticles, hierarchical nanostructures and organic coatings as sensors for detecting gases, inorganic and organic materials, including biosensors for bacteria and cancers. Organic nanoparticle composites for medical applications (tissue engineering, tissue replacement, regeneration, etc.), including hydroxyapatite NPs, are also covered, together with related in-vitro and preclinical investigations. In closing, the book shares recent findings on orthopedic and dental implant coatings using nanoparticles, their biological efficacy and safety..
出版日期Conference proceedings 2020
關(guān)鍵詞Nanocomposites; Fluorescent Sensors; Metal Oxide Nanoparticles; Cell-Nanoparticle Interaction; Nanoparti
版次1
doihttps://doi.org/10.1007/978-981-15-3996-1
isbn_softcover978-981-15-3998-5
isbn_ebook978-981-15-3996-1
copyrightSpringer Nature Singapore Pte Ltd. 2020
The information of publication is updating

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Modernization of the Preservative Solution for Red Blood Cells by Magnetite Nanoparticles (ICNB), at a positive temperature. It was established that saline NaCl, which had previously been processed by magnetite nanoparticles (ICNB) had a marked membrane-stabilizing effect, inhibits hemolysis and increasing the sedimentation stability of preserved RBCs. The complex analysis of the obtained data
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Application of Infrared Spectroscopy to Study the Effect of Magnetite Nanoparticles (ICNB) on Molecitive temperature by means method of infrared spectroscopy (IR). Objects of research were red blood cells (RBCs) into bags containing preservative CPD and RBCs into bags containing preservative CPDA-1. As membrane protective used saline which had previously been treated with magnetite nanoparticles
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Plasma Electrolytic Oxidation of the Titanium-Zirconium Alloy (Zr60Nb21Ti19) for Dental Implant,sible stress-induced martensitic transformation that leads to a superelastic effect (high recoverable strain) and a very significant reduction of the apparent elastic modulus. But it is still require increasing biological response that can achieve by surface modification. Plasma electrolytic oxidati
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Nanostructured Hemostatic Sponges Made from Chitosan: Structural and Biological Evaluation,perfect styptic. The most promising hemostatic agents are based on biomaterials therefore they can be left in the wound. The aim of the following research was to obtain a new type of biocompatible chitosan-based agents with high hemostatic activity. The biomaterials were obtained under microwave rad
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