Search results for "Biological system"

showing 10 items of 319 documents

Linear and non-linear brain-heart and brain-brain interactions during sleep.

2015

In this study, the physiological networks underlying the joint modulation of the parasympathetic component of heart rate variability (HRV) and of the different electroencephalographic (EEG) rhythms during sleep were assessed using two popular measures of directed interaction in multivariate time series, namely Granger causality (GC) and transfer entropy (TE). Time series representative of cardiac and brain activities were obtained in 10 young healthy subjects as the normalized high frequency (HF) component of HRV and EEG power in the δ, θ, α, σ, and β bands, measured during the whole duration of sleep. The magnitude and statistical significance of GC and TE were evaluated between each …

MaleTime FactorsAdolescentPhysiologyBiomedical EngineeringBiophysicsInformation TheoryElectroencephalographyModels BiologicalSurrogate dataEntropy estimationElectrocardiographyYoung AdultHeart RatePhysiology (medical)StatisticsmedicineHeart rate variabilitymultivariate time serieHumansMathematicsmedicine.diagnostic_testDimensionality reductionLinear modeltransfer entropyBrainRegression analysisElectroencephalographySignal Processing Computer-Assistedphysiological networkBiophysicNonlinear DynamicsSettore ING-INF/06 - Bioingegneria Elettronica E InformaticaMultivariate AnalysisLinear ModelsTransfer entropyBiological systemSleepPhysiological measurement
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The Importance of Lipidomic Approach for Mapping and Exploring the Molecular Networks Underlying Physical Exercise: A Systematic Review

2021

Maintaining appropriate levels of physical exercise is an optimal way for keeping a good state of health. At the same time, optimal exercise performance necessitates an integrated organ system response. In this respect, physical exercise has numerous repercussions on metabolism and function of different organs and tissues by enhancing whole-body metabolic homeostasis in response to different exercise-related adaptations. Specifically, both prolonged and intensive physical exercise produce vast changes in multiple and different lipid-related metabolites. Lipidomic technologies allow these changes and adaptations to be clarified, by using a biological system approach they provide scientific u…

Malemedicine.medical_specialtyScoring systemQH301-705.5MEDLINEbiological systemsPhysical exerciseReviewCochrane LibraryCatalysisInorganic ChemistryPhysical medicine and rehabilitationExercise performanceLipidomicsmedicineMetabolomeHumansPhysical and Theoretical ChemistryBiology (General)Muscle SkeletalMolecular BiologyExerciseQD1-999Spectroscopymetabolitestrainingbiological systems; training; lipid profile; sports; metabolitesOrganic ChemistryGeneral MedicineComputer Science ApplicationsMolecular networkChemistrylipid profileOrgan SpecificityLipidomicsFemalesportsBlood Chemical Analysis
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Influence of Inter- and Intra-Batch Variability on the Sample Size Required for Demonstration of Equivalent Microstructure of Semisolid Dosage Forms

2020

Inter- and intra-batch variability of the quality attributes contribute to the uncertainty for demonstrating equivalent microstructure of post-approval changes and generic/hybrids of semisolid topical products. Selecting a representative sample size to describe accurately the in vitro properties of semisolids and to reach enough statistical power to demonstrate similarity between two semisolid topical products is currently challenging. The objective of this work is to establish the number of batches and units per batch to be compared based on different inter-batch and intra-batch variability to demonstrate equivalence in the physical characteristics of the products that ensure a similar mic…

Manufacturing processlcsh:RS1-441Pharmaceutical ScienceMicrostructureEquivalenceArticleStatistical powerDosage formIntra-batch variabilitylcsh:Pharmacy and materia medicaSample size determinationInter-batch variabilityBiological systemTopical productsMathematicsPharmaceutics
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2019

A probabilistic discrete model for 2D protein crystal growth is presented. This model takesinto account the available space and can describe growing processes of a different nature due to theversatility of its parameters, which gives the model great flexibility. The accuracy of the simulation istested against a real recrystallization experiment, carried out with the bacterial protein SbpA fromLysinibacillus sphaericus CCM2177, showing high agreement between the proposed model and theactual images of the crystal growth. Finally, it is also discussed how the regularity of the interface(i.e., the curve that separates the crystal from the substrate) affects the evolution of the simulation.

Materials science010304 chemical physicsProbabilistic logicRecrystallization (metallurgy)Statistical modelCrystal growth010402 general chemistry01 natural sciences0104 chemical sciencesBacterial protein0103 physical sciencesGeneral Materials ScienceBiological systemProtein crystallizationMicroscale chemistryMaterials
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Dielectric spectroscopy as a potential technique for prediction of kiwifruit quality indices during storage

2019

Dielectric spectroscopy has been employed as a simple, low cost and a non-destructive way for prediction of some physicochemical indices of kiwifruit during storage. A parallel-plate capacitor was developed and supplied with sinusoidal voltage waves within a frequency range of 40 kHz – 20 MHz. Dielectric properties of samples were measured by the dielectric sensor. Additionally, changes associated with fruit ripening properties, including firmness, total soluble solid (TSS) and pH were determined as a function of time at 2 °C. The results showed that storage time significantly affected the quality characteristics of kiwifruit. Artificial neural networks (ANNs) were employed to develop model…

Materials science020209 energy02 engineering and technologyDielectricAquatic Science01 natural scienceslaw.inventionQuality (physics)lawSoluble solids0202 electrical engineering electronic engineering information engineeringlcsh:Agriculture (General)Quality characteristicslcsh:T58.5-58.64lcsh:Information technology010401 analytical chemistryForestryRipeninglcsh:S1-9720104 chemical sciencesComputer Science ApplicationsDielectric spectroscopyCapacitorAnimal Science and ZoologyBiological systemAgronomy and Crop ScienceInformation Processing in Agriculture
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Using Dynamic Light Scattering for Monitoring the Size of the Suspended Particles in Wastewater

2019

Abstract A coherent light scattering experiment on wastewater samples extracted from several stages of water processing within a wastewater processing plant was carried out. The samples were allowed to sediment while they were the subject of a Dynamic Light Scattering (DLS) measurement. The recorded time series were processed using an Artificial Neural Network based DLS procedure to produce the average diameter of the particles in suspension. The method, using a single physical procedure for monitoring the variation of the average diameter in time, indicates the dominant type of suspensions in water.

Materials scienceAverage diameterEcologyScatteringSuspended particlesWater processingSediment010501 environmental sciences01 natural sciencescoherent light scatteringSuspension (chemistry)010309 opticsWastewaterDynamic light scattering0103 physical sciencesBiological systemdynamic light scattering (dls)wastewaterartificial neural networkQH540-549.50105 earth and related environmental sciencesTransylvanian Review of Systematical and Ecological Research
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Series resistance determination and further characterization of c-Si PV modules

2012

Abstract This paper presents a new algorithm for determination of the series resistance of crystalline-Si PV modules from individual illuminated I–V curves. The ideality factor and the reverse saturation current are then extracted in the classic way. The approach is applied to in-situ measured data from modules based on two types of mc-Si feedstock. The results indicate that the method yields physically meaningful parameters. An improved definition of local ideality factor is suggested, resulting in m-V plots unaffected by the series resistance. In addition, m-I plots are introduced for the first time. The novel differential techniques reveal an unexpected rise of the ideality factor at ope…

Materials scienceEquivalent series resistanceRenewable Energy Sustainability and the EnvironmentSaturation currentEstimation theoryOpen-circuit voltageElectronic engineeringBiological systemCharacterization (materials science)Renewable Energy
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Engineering the crack path in lattice cellular materials through bio-inspired micro-structural alterations

2019

Abstract A computational study on the fracture behaviour of bio-inspired finite-size lattice configurations is performed in this work. The study draws inspiration from recent investigations aimed at increasing the fracture energy of some materials through small modifications of their microstructure. The main question here is whether it is possible, to some extent, to engineer the crack path in metallic cellular materials through such small micro-structural modifications and how to quantify the effect of alternative strategies. Nature provides several examples of strategies used to delay or arrest damage and crack propagation. One striking example is given by the micro-architecture of severa…

Materials scienceFracture mechanicCellular architectureMechanical EngineeringFinite element analysisBioengineeringFracture mechanicsMetallic lattice02 engineering and technology010402 general chemistry021001 nanoscience & nanotechnologyMicrostructure01 natural sciencesFinite element method0104 chemical sciencesMicroarchitectureMechanics of MaterialsLattice (order)Chemical Engineering (miscellaneous)Figure of meritWood microstructure0210 nano-technologyBiological systemBio-inspired materialEngineering (miscellaneous)Extreme Mechanics Letters
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Get into flow: Design of experiments as a key technique in the optimization of anodic dehydrogenative C,C cross-coupling reaction of phenols in flow …

2021

Abstract The optimization of electro-organic reactions poses a challenge due to the various parameters involved. Quite often those parameters are not independent from each other, leading the experimental scientist using linear approaches into an optimization loophole. We report a strategy for the optimization of the anodic oxidative dehydrogenative C,C cross-coupling reactions for the synthesis of biphenols based on Design of Experiments (DoE), which overcomes the drawbacks of linear optimization approaches. Using a fractional design, we increased the yield of a long-time investigated example reaction from 44% up to 85% and point out different suitable reaction conditions through to linear …

Materials scienceLinear programmingGeneral Chemical EngineeringDesign of experiments02 engineering and technologyParameter space010402 general chemistry021001 nanoscience & nanotechnology01 natural sciencesCoupling reaction0104 chemical sciencesAnodeYield (chemistry)Linear regressionElectrochemistryPoint (geometry)0210 nano-technologyBiological systemElectrochimica Acta
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A procedure to achieve fine control in MW processing of foods

2007

Abstract A two-dimensional analytical model for predicting the unsteady temperature field in a cylindrical shaped body affected by spatially varying heat generation is presented. The dimensionless problem is solved analytically by using both partial solutions and the variation of parameters techniques. Having in mind industrial microwave heating for food pasteurization, the easy-to-handle solution is used to confirm the intrinsic lack of spatial uniformity of such a treatment in comparison to the traditional one. From an experimental point of view, a batch pasteurization treatment was realized to compare the effect of two different control techniques both based on IR thermography readout: t…

Materials sciencePasteurizationThermodynamicsPID controllerThermal treatmentCondensed Matter PhysicsVariation of parametersAtomic and Molecular Physics and OpticsElectronic Optical and Magnetic Materialslaw.inventionlawHeat generationMicrowave IR thermography PID control pasteurizationThermalBiological systemMicrowaveDimensionless quantity
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