Search results for " Strength"

showing 10 items of 1999 documents

The impact of maximal strength training on quality of life among women with breast cancer undergoing treatment.

2019

Cancer rehabilitation programs mainly involve endurance cardio training while little attention has been paid to strength training. Breast cancer (BC) patients lose muscle strength while undergoing adjuvant treatment, thus affecting daily activities and quality of life. Maximal strength training, with an emphasis on velocity in the concentric phase, improves maximal strength and muscle force development characteristics. However, the effect of maximal strength training on quality of life for BC patients undergoing treatment remains elusive. Consequently, the aim of this study was to evaluate the effectiveness of maximal strength training in Health related quality of life in women with newly d…

Cancer Researchmedicine.medical_specialtyActivities of daily livingStrength trainingmedicine.medical_treatmentBreast Neoplasmslaw.invention03 medical and health sciences0302 clinical medicineBreast cancerRandomized controlled trialQuality of lifelawOne-repetition maximumSurveys and QuestionnairesActivities of Daily LivingmedicineHumansMuscle StrengthExerciseFatigueCore (anatomy)Rehabilitationbusiness.industryResistance TrainingMiddle Agedmedicine.diseaseOncology030220 oncology & carcinogenesisPhysical therapyQuality of LifeFemalebusinessExperimental oncology
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Analysis of the mechanical performance of hybrid (SPR/bonded) single-lap joints between CFRP panels and aluminum blanks

2013

Abstract The increasing use of innovative materials in manufacturing of modern mechanical components has led to the development of reliable joints between innovative (composite materials etc.) and traditional materials (steel, aluminum etc.). In the last few years, hybrid joints, combining the advantages of the adhesive joints and traditional mechanical joints as bolted or riveted joints, have been shown an increasing industrial interest especially in automotive and aerospace sectors. In the present paper a systematic experimental study of hybrid lap joints was carried out with the aim to detect the optimal joint configuration. Tensile tests on hybrid joints made by combining adhesive bondi…

Carbon fiber reinforced polymerMaterials sciencePolymers and PlasticsAdhesive bondingbusiness.industryGeneral Chemical EngineeringHybrid jointStructural engineeringbondingBiomaterialsSettore ING-IND/14 - Progettazione Meccanica E Costruzione Di MacchineLap jointMechanical jointUltimate tensile strengthRivetself piercing rivetingAdhesiveComposite materialbusinessSettore ING-IND/16 - Tecnologie E Sistemi Di LavorazioneJoint (geology)International Journal of Adhesion and Adhesives
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Conversion of furfural to 2-methylfuran over CuNi catalysts supported on biobased carbon foams

2021

In this study, carbon foams prepared from the by-products of the Finnish forest industry, such as tannic acid and pine bark extracts, were examined as supports for 5/5% Cu/Ni catalysts in the hydrotreatment of furfural to 2-methylfuran (MF). Experiments were conducted in a batch reactor at 503 K and 40 bar H2. Prior to metal impregnation, the carbon foam from tannic acid was activated with steam (S1), and the carbon foam from pine bark extracts was activated with ZnCl2 (S2) and washed with acids (HNO3 or H2SO4). For comparison, a spruce-based activated carbon (AC) catalyst and two commercial AC catalysts as references were investigated. Compressive strength of the foam S2 was 30 times great…

Carbon nanofoamBatch reactorchemistry.chemical_elementkupari02 engineering and technology010402 general chemistryFurfural01 natural sciencesCatalysisCatalysischemistry.chemical_compoundkatalyytitTannic acidmedicinebiohiilicarbonGeneral Chemistrymechanical strengthfurfural021001 nanoscience & nanotechnology0104 chemical sciencesCu/Ni catalystvaahdotchemistrykatalyysisivutuotteet2-Methylfuran2-methylfurannikkeli0210 nano-technologybiobased foamsCarbonActivated carbonmedicine.drugNuclear chemistry
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Morphogenetically active scaffold for osteochondral repair (Polyphosphate/alginate/N,O-carboxymethyl chitosan)

2016

Here we describe a novel bioinspired hydrogel material that can be hardened with calcium ions to yield a scaffold material with viscoelastic properties matching those of cartilage. This material consists of a negatively charged biopolymer triplet, composed of morphogenetically active natural inorganic polyphosphate (polyP), along with the likewise biocompatible natural polymers N,O-carboxymethyl chitosan (N,O-CMC) and alginate. The porosity of the hardened scaffold material obtained after calcium exposure can be adjusted by varying the pre-processing conditions. Various compression tests were applied to determine the local (nanoindentation) and bulk mechanical properties (tensile/compressio…

Cartilage ArticularScaffoldlcsh:Diseases of the musculoskeletal systemO-Carboxymethyl chitosanBiocompatible Materials02 engineering and technology01 natural sciencesHydrogel Polyethylene Glycol DimethacrylateChitosanchemistry.chemical_compoundGlucuronic AcidTissue engineeringPolyphosphatesAggrecansTissue ScaffoldsHexuronic AcidsN021001 nanoscience & nanotechnologymedicine.anatomical_structuretissue engineering0210 nano-technologyPorosityAlginatesEpiphyseal platelcsh:Surgeryregenerative medicineengineering.material010402 general chemistryOsteocytesChondrocytesUltimate tensile strengthmedicineHumansRegenerationCollagen Type IIAggrecanCell ProliferationChitosanWound HealingCartilagepolyphosphatelcsh:RD1-811Alkaline Phosphatase0104 chemical sciencesCartilagechemistryengineeringCalciumBiopolymerlcsh:RC925-935Biomedical engineering
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In-situ gelling xyloglucan formulations as 3D artificial niche for adipose stem cell spheroids.

2020

Abstract Three-dimensional spheroidal cell aggregates of adipose stem cells (SASCs) are a distinct upstream population of stem cells present in adipose tissue, with enhanced regeneration properties in vivo. The preservation of the 3D structure of the cells, from extraction to administration, can be a promising strategy to ensure optimal conditions for cell viability and maintenance of stemness potential. With this aim, an artificial niche was created by incorporating the spheroids into an injectable, in-situ gelling solution of partially degalactosylated xyloglucan (dXG) and an ad hoc formulated culture medium for the preservation of stem cell spheroid features. The evolution of the mechani…

Cell SurvivalPopulationCellCell Culture TechniquesAdipose tissue02 engineering and technology[object Object]Biochemistry03 medical and health scienceschemistry.chemical_compoundStructural BiologySpheroids CellularmedicineHumansViability assayeducationMolecular BiologyGlucansCells Cultured030304 developmental biology0303 health scienceseducation.field_of_studyMicroscopyTissue EngineeringViscosityRegeneration (biology)SOXB1 Transcription FactorsSpheroids of adipose stem cells Artificial niche In-situ forming gel Partially degalactosylated xyloglucanSpheroidHydrogelsMesenchymal Stem CellsGeneral MedicineNanog Homeobox Protein021001 nanoscience & nanotechnologyCell biologyCulture MediaXyloglucanmedicine.anatomical_structurechemistryMicroscopy Electron ScanningXylansSettore CHIM/07 - Fondamenti Chimici Delle TecnologieStem cell0210 nano-technologyRheologyShear StrengthOctamer Transcription Factor-3International journal of biological macromolecules
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Hydraulic conductivity and strength of pervious concrete for deep trench drains

2019

Abstract Pervious concrete for deep trench drains, used to stabilise slopes, must meet many requirements, namely, adequate hydraulic conductivity, adequate shear strength a few days after pouring, capacity to act as a protective filter for soils in which the drain is installed, good resistance to clogging and adequate residual hydraulic conductivity. In current engineering practice, the composition of pervious concrete for drains is improperly selected according to criteria used for no-fines concrete for road pavements. To detect more suitable and specific criteria, a laboratory investigation has been conducted aimed at identifying the composition and the properties of pervious concrete sat…

CementAggregate (composite)Pervious concreteHydraulic conductivityPervious concrete0211 other engineering and technologies02 engineering and technology010502 geochemistry & geophysicsGeotechnical Engineering and Engineering GeologyResidual01 natural sciencesCurrent (stream)CloggingHydraulic conductivityShear strength (soil)Trench drainsEnvironmental scienceGeotechnical engineeringStrengthComputers in Earth SciencesSafety Risk Reliability and Quality021101 geological & geomatics engineering0105 earth and related environmental sciencesGeomechanics for Energy and the Environment
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Effect of blastfurnace slag addition to Portland cement for cationic exchange resins encapsulation

2013

In the nuclear industry, cement-based materials are extensively used to encapsulate spent ion exchange resins (IERs) before their final disposal in a repository. It is well known that the cement has to be carefully selected to prevent any deleterious expansion of the solidified waste form, but the reasons for this possible expansion are not clearly established. This work aims at filling the gap. The swelling pressure of IERs is first investigated as a function of ions exchange and ionic strength. It is shown that pressures of a few tenths of MPa can be produced by decreases in the ionic strength of the bulk solution, or by ion exchanges (2Na + instead of Ca 2+ , Na + instead of K + ). Then,…

CementCationic exchangeMaterials sciencePhysicsQC1-999Cationic polymerizationSwelling pressureMineralogyIonlaw.inventionPortland cementChemical engineeringlawIonic strengthIon-exchange resinEPJ Web of Conferences
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Immediate and long-term microshear bond strength of resin-based cements to core build-up materials

2021

Background To evaluate the microshear bond strength (μ-SBS) between resin-based cements and core build-up materials after water storage. Material and methods Cylinders (1x1 mm) of conventional dual-cure resin cement (RelyX ARC, 3M ESPE), universal dual-cure resin cement (RelyX Ultimate, 3M ESPE) or self-adhesive resin cement (RelyX U200, 3M ESPE) were adhered to disks (6x2 mm) made with commercial core build-up materials (Bis-Core, Bisco or LuxaCore Z, DMG) or conventional nanocomposite resin (Filtek Z350 XT, 3M ESPE). The specimens (n=10) were submitted to μ-SBS test using a universal testing machine and fracture pattern analysis at 48 hours or after 9 months of water storage. The data wer…

CementChange over timeUniversal testing machineNanocompositeMaterials scienceBond strengthResearchComposite numberCore (manufacturing)Operative Dentistry and EndodonticsAdhesiveComposite materialGeneral DentistryUNESCO:CIENCIAS MÉDICASJournal of Clinical and Experimental Dentistry
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Experimental Investigation on Water Loss and Stiffness of CBTM Using Different RA Sources

2021

Cold recycling of reclaimed asphalt (RA) is a promising technique to build or to maintain roads, combining performance and environmental advantages. Although this technique has been extensively used worldwide, there is no unique and internationally-shared method to characterize cold recycled mixtures. The previous work of the RILEM TC 237-SIB TG6 successfully attempted to characterize different RA sources with both traditional parameters (gradation, bitumen content and geometrical properties) and non-conventional properties (fragmentation and strength testing). The current RILEM TC 264-RAP TG1 mainly focuses on the influence of different RA sources on physical and mechanical characteristics…

CementCold recyclingCuring (food preservation)Materials scienceCompactionStiffnessWater lossFoamed bitumenAsphaltUltimate tensile strengthmedicineStrength testingGradationStrengthmedicine.symptomComposite materialEngineering sciences. TechnologyReclaimed asphalt
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The Micro-Shear bond strength of different cements to commercially pure titanium

2019

Background The most appropriate luting agent for attaching the prefabricated Ti-based insert of hybrid abutments to its ceramic component has not yet been determined. This study was done aimed at examining the micro-shear bond strength (μSBS) of different cements to commercially pure titanium (Cp Ti). Material and Methods A total of 100 milled cubes of Cp Ti was airborne-particle abraded using 250 μm aluminum oxide particles. Specimens were then divided into 5 groups (n=20) according to the type of resin cement used: (1) Panavia F.2, (2) Rely X U200, (3) Panavia SA LUTING Plus, (4) GC Fuji I, and (5) GC FujiCEM 2. After 24h storage, half of the samples were subjected to 5000 cycles of therm…

CementCommercially pure titaniumMaterials scienceBond strengthResearchGlass ionomer cementchemistry.chemical_elementLuting agent030206 dentistry:CIENCIAS MÉDICAS [UNESCO]Operative Dentistry and Endodontics030207 dermatology & venereal diseases03 medical and health sciences0302 clinical medicinechemistryvisual_artUNESCO::CIENCIAS MÉDICASvisual_art.visual_art_mediumCeramicAdhesiveComposite materialGeneral DentistryTitanium
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