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Biomedical applications

Porous stainless steel for biomedical applications

Porous stainless steel for biomedical applications

... Porous 316L austenitic stainless steel was synthesized by powder metallurgy with relative density of 0.50 and 0.30 using 15 and 30 wt. (%) respectively of ammonium carbonate and ammonium bicarbonate as foaming agents. ...

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3D Printing of Biocompatible Materials for Biomedical Applications

3D Printing of Biocompatible Materials for Biomedical Applications

... for biomedical applications ...the biomedical field due to their ability to target multiple complementary properties of interest [16], namely through control of the molar ratio between each monomer ...

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Biopolymer based microneedles patch by laser technology for biomedical applications

Biopolymer based microneedles patch by laser technology for biomedical applications

... During this dissertation, it was introduced a MNs technology that overcomes the limitations of other drug delivery systems and it can be scaled up to mass production, thus being a promising potential in biomedical ...

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Design of an Automatic Optical Power Control Circuit for Biomedical Applications

Design of an Automatic Optical Power Control Circuit for Biomedical Applications

... Abstract—Numerous biomedical devices include a light source component and a stable light source is totally vital for the precision of these devices. Therefore, the aim of this study is to design an automatic ...

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Investigation of Structural, Morphological, Magnetic Properties and Biomedical applications of Cu

Investigation of Structural, Morphological, Magnetic Properties and Biomedical applications of Cu

... nanopowders were synthesized via chemical co-precipitation method. The prepared powders were investigated by various characterization methods such as X-ray diffraction analysis (XRD), scanning electron microscope ...

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Electrospun poly(ε-caprolactone) nanofibers for bone regeneration and other biomedical applications

Electrospun poly(ε-caprolactone) nanofibers for bone regeneration and other biomedical applications

... 10 that of cortical bone [43]. The most widely investigated are poly(lactic acid), poly(glycolic acid), poly(ε-caprolactone) (PCL) and their copolymers such as poly (L-lactic-co-glycolic acid) [44-46]. Among these ...

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Advances in graphene-based materials and their composites with focus on biomedical applications

Advances in graphene-based materials and their composites with focus on biomedical applications

... medical applications, it was only after the year 2000, with the beginning of PLA’s widespread commercialization, that the outputs of the research on this field increased considerably, as can be observed from ...

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Fabrication of a Capacitance-Based Tactile Sensor with Biomedical Applications

Fabrication of a Capacitance-Based Tactile Sensor with Biomedical Applications

... Abstract: T he design, modeling, and testing of a flexible tactile sensor and its applications are presented. This sensor is made of polymer materials and can detect the 2D surface texture image and contact-force ...

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Free-standing multilayered membranes based on graphene and natural polymers for biomedical applications

Free-standing multilayered membranes based on graphene and natural polymers for biomedical applications

... In order to take advantages of the outstanding properties of both natural polymers and GO, the development of free-standing (FS) membranes composed of natural polymers and GO intended for biomedical ...

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MICRO-FLOW VISUALIZATION OF MAGNETIC NANOPARTICLES FOR BIOMEDICAL APPLICATIONS

MICRO-FLOW VISUALIZATION OF MAGNETIC NANOPARTICLES FOR BIOMEDICAL APPLICATIONS

... for biomedical applications, for applications such as drug delivery, the particles should be able to respond to an external magnetic field even at a larger ...

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Preliminary evaluation of novel triglyceridebased  for biomedical applications

Preliminary evaluation of novel triglyceridebased for biomedical applications

... therapeutic applications due to promising results in magnetic hyperthermia and drug release of ...for biomedical applications through the synergism between the therapeutic action of bioactive ...

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Shape memory chitosan-based scaffolds for biomedical applications

Shape memory chitosan-based scaffolds for biomedical applications

... in biomedical applications, they have not fully reached their technological ...many applications especially in cases where SMP devices should overcome a large resisting stress during shape ...the ...

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Design and Development of Micro-Power Generating Device for Biomedical Applications of Lab-on-a-Disc.

Design and Development of Micro-Power Generating Device for Biomedical Applications of Lab-on-a-Disc.

... diagnostic system with higher throughput, based on the biosensor’s characteristics. A diagnos- tic system with biosensors multiplexed fluidic sequencing and wireless data transmission to laptops is possible with the ...

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Laser technology and 3D printing for production of biopolymer-based hollow microneedles patch for biomedical applications

Laser technology and 3D printing for production of biopolymer-based hollow microneedles patch for biomedical applications

... One of the major challenges of transdermal drug delivery is the creation of methods that allow greater bioavailability of drugs. Many techniques have been proposed in order to address this issue such as hypodermic ...

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Preparation and characterization of microfiltration flat polymeric membranes for biomedical applications

Preparation and characterization of microfiltration flat polymeric membranes for biomedical applications

... these applications require not just wonderful transport properties, but also high chemical, physical and thermal stability [1, ...contactor applications [5, ...in biomedical and bio-separation ...

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ANTIMICROBIAL REAGENTS AS FUNCTIONAL FINISHING FOR TEXTILES INTENDED FOR BIOMEDICAL APPLICATIONS. I. SYNTHETIC ORGANIC COMPOUNDS

ANTIMICROBIAL REAGENTS AS FUNCTIONAL FINISHING FOR TEXTILES INTENDED FOR BIOMEDICAL APPLICATIONS. I. SYNTHETIC ORGANIC COMPOUNDS

... N-halamines are heterocyclic organic compounds containing one or more nitrogen-halogen (N–X) covalent bonds that are normally formed by the halogenation of imide, amide, or amine groups. Other N-halamines containing ...

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Electrophoretic deposition of a bioactive Si, Ca-rich glass coating on 316L stainless steel for biomedical applications

Electrophoretic deposition of a bioactive Si, Ca-rich glass coating on 316L stainless steel for biomedical applications

... Dr. Cortés got her Ph.D. degree from the Interdisciplinary Research Centre in Biomedical Materials, IRC, Queen Mary and Westfield College, University of London, London, UK; her M.S. degree from Centro de ...

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Mathematical Biology, II. Spatial Models and Biomedical Applications.

Mathematical Biology, II. Spatial Models and Biomedical Applications.

... In this section we discuss a possible model mechanism for generating some of these regularly recurring patterns and compare the results with specific butterfly patterns and experiments. [r] ...

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Bacterial cellulose as a nanostructured functional material for biomedical applications

Bacterial cellulose as a nanostructured functional material for biomedical applications

... Ainda para esta concentração de corante foi realizado um terceiro ensaio, utilizando uma membrana com uma massa de 20,5 mg. A quantidade de BSA, presente no permeado, para o ciclo de ad[r] ...

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Piezoelectric biosensors for molecular analysis in biomedical applications

Piezoelectric biosensors for molecular analysis in biomedical applications

... Esta tese é o seguimento dos trabalhos anteriormente desenvolvidos com senso- res piezoeléctricos (ver anexos), tendo como principais objectivos: i) aplicação de sensores mais sensíveis [r] ...

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