Search results for "Mechanical Phenomena"

showing 10 items of 532 documents

Intramedullary nailing vs. palmar locked plating for unstable dorsally comminuted distal radius fractures: A biomechanical study

2010

Abstract Background The purpose of this study was to compare the stability of a 2.4 mm palmar locking compression plate and a new intramedullary nail-plate-hybrid Targon DR for dorsally comminuted distal radius fractures. Methods An extraarticular 10 mm dorsally open wedge osteotomy was created in 8 pairs of fresh frozen human radii to simulate an AO–A3-fracture. The fractures were stabilized using one of the fixation methods. The specimens were loaded axially with 200 N and dorsal-excentrically with 80 N. 2000 cycles of dynamic loading and axial loading-to-failure were performed. Findings Axial loading revealed that intramedullary osteosynthesis (Targon DR: 369 N/mm) was significantly ( p …

Orthodonticsmedicine.medical_specialtyMaterials scienceOsteosynthesisBiophysicsRadiusLocked platingIn Vitro TechniquesCompression (physics)Biomechanical PhenomenaFracture Fixation Intramedullarylaw.inventionSurgeryIntramedullary rodFracture Fixation InternalFixation (surgical)lawLoad to failureFresh frozenmedicineHumansOrthopedics and Sports MedicineRadius FracturesBone PlatesFractures ComminutedClinical Biomechanics
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ACUTE INFANTILE SPINAL MUSCULAR ATROPHY

1990

Biopsy as well as autopsy studies of a child who died 8 weeks after birth from the acute infantile form of spinal muscular atrophy revealed classical morphological changes, including degeneration and loss of motoneurons in the spinal cord, loss of large myelinated fibres in anterior roots and neurogenic atrophy in muscle. New ultrastructural findings include massive muscle cell elimination by apoptosis with the formation of membrane-bound muscle cell fragments, apoptotic bodies. In addition, numerous immature muscle fibres were observed. The morphological findings raise the possibility that in a severely growth-retarded muscle, the process of muscle cell apoptosis removes the peripheral tar…

Pathologymedicine.medical_specialtyCell SurvivalBiopsySpinal Muscular Atrophies of ChildhoodMuscular Atrophy SpinalAtrophyAnterior Horn CellmedicineHumansMyocyteMuscle contracturebusiness.industryMusclesInfant NewbornSpinal muscular atrophymedicine.diseaseSpinal cordBiomechanical PhenomenaTissue Degenerationmedicine.anatomical_structureSpinal CordApoptosisAcute DiseaseFemaleNeurology (clinical)businessBrain
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Ultrasound-based testing of tendon mechanical properties: a critical evaluation.

2015

In the past 20 years, the use of ultrasound-based methods has become a standard approach to measure tendon mechanical properties in vivo. Yet the multitude of methodological approaches adopted by various research groups probably contribute to the large variability of reported values. The technique of obtaining and relating tendon deformation to tensile force in vivo has been applied differently, depending on practical constraints or scientific points of view. Divergence can be seen in 1) methodological considerations, such as the choice of anatomical features to scan and to track, force measurements, or signal synchronization; and 2) in physiological considerations related to the viscoelas…

Pathologymedicine.medical_specialtyPhysiologybusiness.industryUltrasoundMeasure (physics)TendonBiomechanical PhenomenaTendonsmedicine.anatomical_structurePhysiology (medical)medicineHumansAponeurosisbusinessBiomedical engineeringUltrasonographyJournal of applied physiology (Bethesda, Md. : 1985)
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Patient-specific simulation of the intrastromal ring segment implantation in corneas with keratoconus

2015

Purpose The purpose of this study was the simulation of the implantation of intrastromal corneal-ring segments for patients with keratoconus. The aim of the study was the prediction of the corneal curvature recovery after this intervention. Methods Seven patients with keratoconus diagnosed and treated by implantation of intrastromal corneal-ring segments were enrolled in the study. The 3D geometry of the cornea of each patient was obtained from its specific topography and a hyperelastic model was assumed to characterize its mechanical behavior. To simulate the intervention, the intrastromal corneal-ring segments were modeled and placed at the same location at which they were placed in the s…

Patient-Specific ModelingKeratoconusmedicine.medical_specialtyMaterials sciencegenetic structuresINGENIERIA MECANICAkeratoconusFinite Element AnalysisBiomedical EngineeringCurvatureKeratoconusMean differenceBiomaterialsCorneaCorneaOphthalmologycorneabiomechanical simulationmedicineHumans3d geometryMechanical PhenomenaCorneal curvatureBiomechanical simulationintrastromal ring segmentsMechanical ProcessesProstheses and ImplantsPatient specificmedicine.diseaseeye diseasesSurgeryBiomechanical Phenomenamedicine.anatomical_structureIntrastromal ring segmentsMechanics of Materialssense organsLENGUAJES Y SISTEMAS INFORMATICOS
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Muscle training for bone strength

2006

The main function of bone is to provide the mechanical integrity for locomotion and protection; accordingly, bone mass and architecture are adjusted to control the strains produced by mechanical load and muscular activity. Age-related patterns involve peak bone mass during growth, a plateau in adulthood, and bone loss during aging. The decline in bone mass and structural integrity results in increased risk of fractures, particularly in post-menopausal women. Athletes competing in strength and power events, such as weight-lifting and jumping, have superior bone mass and structure compared with their untrained counterparts in all age groups. Exercise seems to be most effective during rapid gr…

Peak bone massAgingmedicine.medical_specialtyMuscle trainingWeight Liftingmedicine.disease_causeWeight-bearingWeight-BearingFractures BoneJumpingPhysical medicine and rehabilitationBone DensityRisk FactorsmedicineHumansAerobic exerciseFunctional abilityExercise physiologyExercisebiologyAthletesbusiness.industryMusclesbiology.organism_classificationBiomechanical PhenomenaPhysical therapyOsteoporosisFemaleGeriatrics and GerontologybusinessAging Clinical and Experimental Research
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Assessment of bioelectrical activity of pelvic floor muscles depending on the orientation of the pelvis in menopausal women with symptoms of stress u…

2017

Background Menopausal women often experience the prolapse of the uterus, bladder and rectum resulting from the failure and weakening of the pelvic floor muscles (PFM). Strengthening of the PFM through the standard exercises is recognized as an effective way of preventive measures and conservative treatment of the symptoms listed above, but still need to be improved. Aim The goal was the objective assessment of resting and functional bioelectrical activity of PFM in women during menopause and its comparison in three different positions of the pelvis: anterior pelvic tilt - position 1 (P1), posterior pelvic tilt - position 2 (P2), and neutral pelvic tilt - position 3 (P3). Design Prospective,…

Pelvic tiltmedicine.medical_specialtymedicine.medical_treatmentUrinary Incontinence StressPopulationPhysical Therapy Sports Therapy and RehabilitationUrinary incontinencePelvic floorElectromyographyPelvic Floor Disorders03 medical and health sciences0302 clinical medicine0502 economics and businessmedicineHumansProspective StudieseducationProspective cohort studyPelvisAgedAged 80 and overeducation.field_of_studyAnalysis of VarianceRehabilitationPelvic floormedicine.diagnostic_testbusiness.industryElectromyographyMuscles05 social sciencesRehabilitationAge FactorsMiddle AgedBiomechanical PhenomenaExercise Therapymedicine.anatomical_structureCross-Sectional StudiesTreatment Outcome030220 oncology & carcinogenesisPhysical therapy050211 marketingFemalePolandmedicine.symptomMenopausebusinessMuscle ContractionEuropean journal of physical and rehabilitation medicine
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Pectin biopolymer mechanics and microstructure associated with polysaccharide phase transitions.

2019

Polysaccharide polymers like pectin can demonstrate striking and reversible changes in their physical properties depending upon relatively small changes in water content. Recent interest in using pectin polysaccharides as mesothelial sealants suggests that water content, rather than nonphysiologic changes in temperature, may be a practical approach to optimize the physical properties of the pectin biopolymers. Here, we used humidified environments to manipulate the water content of dispersed solution of pectins with a high degree of methyl esterification (high-methoxyl pectin; HMP). The gel phase transition was identified by a nonlinear increase in compression resistance at a water content …

Phase transitionCitrusfood.ingredientMaterials scienceanimal structuresPectinScanning electron microscope0206 medical engineeringBiomedical Engineering02 engineering and technologyengineering.materialcomplex mixturesPhase TransitionArticleBiomaterialsfoodPhase (matter)Water contentchemistry.chemical_classificationdigestive oral and skin physiologyMetals and Alloysfood and beveragesPolymer021001 nanoscience & nanotechnologyMicrostructure020601 biomedical engineeringVitrificationBiomechanical PhenomenaChemical engineeringchemistryCeramics and CompositesengineeringPectinsBiopolymer0210 nano-technologyJournal of biomedical materials research. Part A
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Self-similarity and scaling of thermal shock fractures

2013

The problem of crack pattern formation due to thermal shock loading at the surface of half-space is solved numerically using two-dimensional boundary element method. The results of numerical simulations with 100-200 random simultaneously growing and interacting cracks are used to obtain scaling relations for crack length and spacing. The numerical results predict that such process of pattern formation with quasi-static crack growth is not stable and at some point the excess energy leads to unstable propagation of one of the longest crack. The onset of instability has also been determined from numerical results.

PhysicsCondensed Matter - Materials ScienceThermal shockSelf-similaritySurface PropertiesTemperatureMaterials Science (cond-mat.mtrl-sci)FOS: Physical sciencesPattern formationMechanicsCondensed Matter - Soft Condensed MatterHalf-spacePhysics::Classical PhysicsInstabilityPhysics::GeophysicsCondensed Matter::Materials ScienceSoft Condensed Matter (cond-mat.soft)Stress MechanicalScalingBoundary element methodQuasistatic processMechanical PhenomenaPhysical Review E
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Vertical ground reaction force measurements and video measurements provide comparable estimates of distance moved by mice during artificial light and…

2011

Video-based measures of spontaneous activity of rodents are of interest in studying, e.g. physiology. However, video-based tracking methods typically require light. The purpose of the present study was to develop a video based method for tracking movements of mice during a dark period. The method was applied in comparing the dark and light period activities of mice. Ten male mice were used in the present study. The activity of the animals was monitored simultaneously with video and ground reaction force (GRF) recordings during consecutive 12h periods of artificial light and dark. Texture based background subtraction method was used to track the mouse from the video recording, while the weig…

PhysicsMaleBackground subtractionArtificial lightLightbusiness.industryGeneral NeuroscienceMovementVertical ground reaction forceVideo RecordingMale miceDarknessMotor ActivityTracking (particle physics)GeodesyDark periodBiomechanical PhenomenaCircadian RhythmWeight-BearingMiceOpticsAnimalsGround reaction forcebusinessVideo basedJournal of neuroscience methods
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Mechanical energy states during running.

1978

Changes in total mechanical work and its partitioning into different energy states (kinetic, potential and rotational) during a step cycle of running were investigated on six well trained athletes who ran at the test speeds of 40, 60, 80, and 100% (9.3 +/- 0.3 m/s) of maximum. Cinematographic techniques were utilized to calculate the mechanical energy states as described by Norman et al. (1976), using a 13 segment mechanical model of a runner as the basis for the computations. The data showed that both the kinetic and rotational energy increased parabolically but the potential energy decreased linearly with increases in running velocity. The calculated power of the positive work phase incre…

PhysicsMalePhysiologyWork (physics)Physical ExertionPublic Health Environmental and Occupational HealthElastic energyGeneral MedicineMechanicsEfficiencyKinetic energyPotential energyPower (physics)Rotational energyBiomechanical PhenomenaRunningClassical mechanicsPhysiology (medical)Energy levelHumansOrthopedics and Sports MedicineMechanical energyMathematicsEuropean journal of applied physiology and occupational physiology
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