Search results for "Biomedical engineering"

showing 10 items of 2020 documents

Biomaterial-Assisted Anastomotic Healing: Serosal Adhesion of Pectin Films

2021

Anastomotic leakage is a frequent complication of intestinal surgery and a major source of surgical morbidity. The timing of anastomotic failures suggests that leaks are the result of inadequate mechanical support during the vulnerable phase of wound healing. To identify a biomaterial with physical and mechanical properties appropriate for assisted anastomotic healing, we studied the adhesive properties of the plant-derived structural heteropolysaccharide called pectin. Specifically, we examined high methoxyl citrus pectin films at water contents between 17–24% for their adhesivity to ex vivo porcine small bowel serosa. In assays of tensile adhesion strength, pectin demonstrated significant…

food.ingredientPolymers and PlasticsPectinAdhesion (medicine)Organic chemistryArticlebowelfoodQD241-441biopolymerUltimate tensile strengthmedicineCitrus PectinpectinChemistryheteropolysaccharidedigestive oral and skin physiologyBiomaterialfood and beveragesGeneral Chemistrymedicine.diseaseAdhesiveWound healingEx vivoBiomedical engineeringserosaPolymers
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Agar-based phantoms for skin diagnostic imaging

2020

Agar-based skin phantoms with different thicknesses and hemoglobin concentration were evaluated for diagnostics of skin lesions by RGB imaging. Scattering properties of the phantoms were simulated using intralipid, absorption properties – using lyophilized powder of human hemoglobin. RGB images of phantoms were captured by self-developed laboratory made devices. The algorithm for calculation of chromophore concentrations are based on Beer-Lambert law and includes the photon path length evaluated from the measured photon-time-of-flight signals. Optical properties and chromophore concentration maps of phantoms obtained from RGB images were analyzed. The influence of chromophore concentration …

food.ingredientfoodMaterials sciencePhotonPath lengthScatteringMedical imagingAgarRGB color modelChromophoreAbsorption (electromagnetic radiation)Biomedical engineeringTissue Optics and Photonics
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Exploration of muscle–tendon biomechanics one year after Achilles tendon rupture and the compensatory role of flexor hallucis longus

2023

Achilles tendon (AT) rupture leads to long-term structural and functional impairments. Currently, the predictors of good recovery after rupture are poorly known. Thus, we aimed to explore the interconnections between structural, mechanical, and neuromuscular parameters and their associations with factors that could explain good recovery in patients with non-surgically treated AT rupture. A total of 35 patients with unilateral rupture (6 females) participated in this study. Muscle-tendon structural, mechanical, and neuromuscular parameters were measured 1-year after rupture. Interconnections between the inter-limb differences (Δ) were explored using partial correlations, followed by multivar…

functionmuscleRehabilitationBiomedical EngineeringBiophysicslihaksetultrasonographyjänteetultraäänitutkimusOrthopedics and Sports Medicinemechanicalvammatbiomekaniikkakantajänneflexor hallucis longus muscletendons
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Physicochemical Surface Properties of Various Intraocular Lenses

2001

<i>Purpose:</i> It is of major interest to understand how intraocular lens (IOL) surfaces interact with aqueous humor or tissues after implantation. Important parameters to describe the physicochemical surface properties are the contact angle and critical surface tension. Therefore, we performed measurements of the contact angle and critical surface tension of several commercially available IOLs. <i>Setting:</i> Department of Ophthalmology, Johannes Gutenberg University, Mainz, University Eye Hospital, Tübingen, and Max Planck Institute for Polymer Research, Mainz, Germany. <i>Methods:</i> A total of 17 commercially available standard quality IOL types (6…

genetic structuresBiocompatibilityPolymethyl methacrylatemedicine.medical_treatmentAcrylic ResinsAqueous humorIntraocular lensCellular and Molecular NeuroscienceOpticsCoated Materials BiocompatiblemedicinePolymethyl MethacrylateSurface TensionLenses IntraocularHeparinbusiness.industryChemistryGeneral MedicineBiocompatible materialeye diseasesSensory SystemsSilicone ElastomersOphthalmologyIntraocular lensesSilicone Elastomerssense organsbusinessBiomedical engineeringOphthalmic Research
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The interplay between cooperativity and diversity in model threshold ensembles

2014

The interplay between cooperativity and diversity is crucial for biological ensembles because single molecule experiments show a significant degree of heterogeneity and also for artificial nanostructures because of the high individual variability characteristic of nanoscale units. We study the cross-effects between cooperativity and diversity in model threshold ensembles composed of individually different units that show a cooperative behaviour. The units are modelled as statistical distributions of parameters (the individual threshold potentials here) characterized by central and width distribution values. The simulations show that the interplay between cooperativity and diversity results …

genetic structuresChemistrySystems biologySystems BiologyCell MembraneBiomedical EngineeringBiophysicsElectric ConductivityNanotechnologyCooperativityBioengineeringModels TheoreticalBiochemistryNanostructuresBiomaterialsProbability distributionComputer SimulationThreshold responseBiological systemResearch ArticlesBiotechnologyDiversity (business)
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VisuMax®femtosecond laser for corneal refractive surgery

2008

Femtosecond lasers are increasingly present in ophthalmologic surgical theaters for a variety of reasons. These include faster and better visual outcomes, increased accuracy and predictability for corneal flap thickness in laser in situ keratomileusis procedures. Recent applications of modern femtosecond lasers have broadened the range of uses: keratoplasty, intrastromal segment insertion and even glaucoma and presbyopia surgery. This device profile provides an overview of the advantages of femtosecond lasers in ophthalmic surgery, paying special attention to the new VisuMax® femtosecond laser from Zeiss/Meditec.

genetic structuresbusiness.industrymedicine.medical_treatmentBiomedical EngineeringGlaucomaKeratomileusisPresbyopiaequipment and suppliesmedicine.diseaseLasereye diseaseslaw.inventionOphthalmologyOpticsCorneal surgerylawRefractive surgeryFemtosecondmedicinesense organsbusinessOptometryOphthalmic surgeryExpert Review of Ophthalmology
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Gold nanoprobe-based detection of human telomerase reverse transcriptase (hTERT) Gene Expression

2015

Human Telomerase Reverse Transcriptase (hTERT) gene is expressed in all types of cancers, and it is considered as unique biomarker for early detection, monitoring and prognosis of different cancers. Routinely, the main techniques for detection of hTERT gene expression are based on enzymatic amplifications which need specified equipments, expert personnel and high cost and time. With regarding to the clinical importance of analysis of hTERT gene expression, we have developed a rapid, simple and low cost method which detects hTERT RNA target in 5 $\mu {\rm l}$ reaction scale using gold nanoprobes. The method is based on the inhibition of nanoparticle aggregation in the presence of ${\rm MgCl}…

gold nanoprobeBiomedical EngineeringClinical scalePharmaceutical ScienceMedicine (miscellaneous)NanoprobeRNAEarly detectionBioengineeringBiologyMolecular biologyComputer Science ApplicationsHTERT GeneGene expressionembryonic structuresgene expressioncancerTelomerase reverse transcriptaseElectrical and Electronic EngineeringhTERTGeneBiotechnology
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A synergic nanoantioxidant based on covalently modified halloysite–trolox nanotubes with intra-lumen loaded quercetin

2016

We describe the preparation and properties of the first example of a synergic nanoantioxidant, obtained by different functionalizations of the external surface and the inner lumen of halloysite nanotubes (HNTs). Trolox, a mimic of natural α-tocopherol, was selectively grafted on the HNT external surface; while quercetin, a natural polyphenolic antioxidant, was loaded into the inner lumen to afford a bi-functional nanoantioxidant, HNT–Trolox/Que, which was investigated for its reactivity with transient peroxyl radicals and a persistent 1,1-diphenyl-2-picrylhydrazyl (DPPH˙) radical in comparison with the corresponding mono-functional analogues HNT–Trolox and HNT/Que. Both HNT–Trolox and HNT/Q…

halloysite nanotubes antioxidants peroxyl radicals quercetin Trolox synergismAntioxidantRadicalmedicine.medical_treatmentBiomedical Engineering02 engineering and technology010402 general chemistry01 natural scienceschemistry.chemical_compoundReaction rate constantmedicinehalloysite trolox release quercetin antioxidantOrganic chemistryGeneral Materials ScienceAcetonitrileSettore CHIM/02 - Chimica FisicaAutoxidationChemistryGeneral ChemistryGeneral MedicineSettore CHIM/06 - Chimica Organica021001 nanoscience & nanotechnology0104 chemical sciencesChlorobenzeneTrolox0210 nano-technologyQuercetinNuclear chemistry
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Covalently modified halloysite clay nanotubes: synthesis, properties, biological and medical applications

2017

Halloysite (HNT) is a promising natural nanosized tubular clay mineral that has many important uses in different industrial fields. It is naturally occurring, biocompatible, and available in thousands of tons at low cost. As a consequence of a hollow cavity, HNT is mainly used as nanocontainer for the controlled release of several chemicals. Chemical modification of both surfaces (inner lumen and outer surface) is a strategy to tune the nanotube's properties. Specifically, chemical modification of HNT surfaces generates a nanoarchitecture with targeted affinity through outer surface functionalization and drug transport ability from functionalization of the nanotube lumen. The primary focus …

halloysite drug delivery system drug carrier covalent functionalizationNanotubeMaterials scienceBiomedical EngineeringNanotechnology02 engineering and technologyengineering.material010402 general chemistry01 natural sciencesHalloysiteGeneral Materials ScienceSettore CHIM/02 - Chimica FisicaDrug transportChemical modificationNanocontainerSettore CHIM/06 - Chimica OrganicaGeneral ChemistryGeneral Medicine021001 nanoscience & nanotechnologyControlled release0104 chemical sciencesCovalent bondengineeringSurface modification0210 nano-technologyJournal of Materials Chemistry B
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Protein Adsorption Hysteresis and Transient States of Fibrinogen and BMP-2 as Model Mechanisms for Proteome-Binding to Implants

2020

Abstract Protein adsorption studies returned to the focus of medical therapeutics, when it was found that up to 2500 non-plasma proteins adsorbed to hip implants during arthroplastic surgery, challenging peri-implant healing models. Questions have re-emerged as to the implications of uncontrolled protein unfolding after adsorption. In past studies on the cooperativity of protein binding we discovered protein adsorption hysteresis, a thermodynamically irreversible process. The present precursory study comprises real-time kinetic (TIRF-Rheometry) and equilibrium (125I-tracer ) studies on the hysteretic binding of fibrinogen and rhBMP-2 to titanium and glass surfaces via transient states. Ther…

hill constantsChemistrybinding constantsoff-rate (k-1)RMedizinBiomedical Engineeringadsorption and desorption isothermsFibrinogenBone morphogenetic protein 2Hysteresison-rate (k+1)total internal reflection fluorescence (tirf)ProteomeBiophysicsmedicineMedicineTransient (oscillation)tirf-rheometrymedicine.drugProtein adsorptionCurrent Directions in Biomedical Engineering
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