Search results for "Spine."

showing 10 items of 390 documents

Macrophage Migration Inhibitory Factor Induces Inflammation and Predicts Spinal Progression in Ankylosing Spondylitis

2017

Objective: To investigate the role of macrophage migration inhibitory factor (MIF) in the pathogenesis of ankylosing spondylitis (AS). Methods: Patients who met the modified New York criteria for AS were recruited for the study. Healthy volunteers, rheumatoid arthritis patients, and osteoarthritis patients were included as controls. Based on the annual rate of increase in modified Stoke AS Spine Score (mSASSS), AS patients were classified as progressors or nonprogressors. MIF levels in serum and synovial fluid were quantitated by enzyme-linked immunosorbent assay. Predictors of AS progression were evaluated using logistic regression analysis. Immunohistochemical analysis of ileal tissue was…

AnkylosingAdultMaleLogistic ModelMacrophageImmunologyEnzyme-Linked Immunosorbent AssayIntramolecular OxidoreductasePredictive Value of TestMonocyteSeverity of Illness IndexCalcificationCalcification PhysiologicPaneth CellRheumatologySynovial Fluidotorhinolaryngologic diseasesImmunology and AllergySpondylitis AnkylosingPhysiologicSpondylitiMacrophage Migration-Inhibitory FactorTumor Necrosis Factor-alphaOsteoblastB-LymphocyteHistocompatibility Antigens Class IIMiddle AgedSpineAntigens Differentiation B-LymphocyteSettore MED/16 - ReumatologiaAntigenDifferentiationDisease ProgressionFemaleCase-Control StudieHuman
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The Smith-Robinson Approach to the Subaxial Cervical Spine: A Stepwise Microsurgical Technique Using Volumetric Models From Anatomic Dissections.

2020

BACKGROUND: The Smith-Robinson1 approach (SRA) is the most widely used route to access the anterior cervical spine. Although several authors have described this approach, there is a lack of the stepwise anatomic description of this operative technique. With the advent of new technologies in neuroanatomy education, such as volumetric models (VMs), the understanding of the spatial relation of the different neurovascular structures can be simplified. OBJECTIVE: To describe the anatomy of the SRA through the creation of VMs of anatomic dissections. METHODS: A total of 4 postmortem heads and a cervical replica were used to perform and record the SRA approach to the C4-C5 level. The most relevant…

Anterior cervical approachAnterior cervical approach Anterior neck Cervical spine Smith-Robinson approach Surgical anatomy Volumetric modelsmedicine.medical_treatmentSurgical planningNOSmith-Robinson approach03 medical and health sciences0302 clinical medicineSurgical anatomyVolumetric modelsCervical spinePlatysma musclemedicineHumans030212 general & internal medicineAnterior neckAnterior neckbusiness.industryDissectionSurgical anatomyAnatomyMicrosurgeryNeurovascular bundleCervical spineDissectionCervical VertebraeNeck DissectionSurgeryNeurology (clinical)business030217 neurology & neurosurgeryNeckDiskectomyOperative neurosurgery (Hagerstown, Md.)
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Targeted rescue of synaptic plasticity improves cognitive decline after severe systemic inflammation

2021

AbstractSepsis-associated encephalopathy (SAE) is a frequent complication in patients with severe systemic infection resulting in acute brain dysfunction and incapacitating long-term sequelae. SAE includes delirium, premature death, post-traumatic stress disorder, and major long-term cognitive impairment. The underlying pathophysiology of SAE is largely unresolved and specific treatment options are missing. We induced the peritoneal contamination and infection (PCI) sepsis model in 769 mice and compared these with 259 control mice. We found that experimental sepsis causes synaptic pathology in the brain characterized by severely disordered synaptic plasticity with reduced long-term potentia…

Arc (protein)Synaptic scalingDendritic spinebusiness.industrySynaptic plasticityExcitatory postsynaptic potentialMedicineHippocampusLong-term potentiationSynaptic signalingbusinessNeuroscience
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Overview of the magnetic properties experiments on the Mars Explorations Rovers

2009

[1] The Mars Exploration Rovers have accumulated airborne dust on different types of permanent magnets. Images of these magnets document the dynamics of dust capture and removal over time. The strongly magnetic subset of airborne dust appears dark brown to black in Panoramic Camera (Pancam) images, while the weakly magnetic one is bright red. Images returned by the Microscopic Imager reveal the formation of magnetic chains diagnostic of magnetite-rich grains with substantial magnetization (>8 Am2 kg−1). On the basis of Mossbauer spectra the dust contains magnetite, olivine, pyroxene, and nanophase oxides in varying proportions, depending on wind regime and landing site. The dust contains a …

Atmospheric ScienceSoil ScienceMineralogyPyroxeneAquatic Scienceengineering.materialOceanographychemistry.chemical_compoundMagnetizationGeochemistry and PetrologyEarth and Planetary Sciences (miscellaneous)Earth-Surface ProcessesWater Science and TechnologyMagnetiteBasaltOlivineEcologySpinelPaleontologyForestryMars Exploration Programequipment and suppliesSilicateGeophysicschemistrySpace and Planetary ScienceengineeringGeology
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Influence of preoxidation on the corrosion of steels in liquid lead-bismuth eutectic

2004

Abstract Oxidation studies of martensitic/ferritic and austenitic steels have been conducted in static lead bismuth eutectic (LBE). Samples were preoxidized in an air/H2O gas mixture prior to immersion in LBE. Preoxidation films grown on HT-9 at 800°C for 48 h had a bilayer structure, an outer Fe-rich layer, and an inner Cr-rich layer. Glancing angle x-ray diffraction data found that two distinct structures were present in this oxide: Fe1+xCr2−xO4 spinel (cubic, face-centered cubic [fcc]) and (Cr,Fe)2O3 (rhombohedral, corundum). Magnetite formation (Fe3O4) was ruled out. Immersion in LBE resulted in the growth of an Fe-rich film on top of the preoxidation layer. It was concluded that the gr…

AusteniteMaterials scienceLead-bismuth eutecticGeneral Chemical EngineeringMetallurgySpinelOxideCorundumGeneral Chemistryengineering.materialCorrosionchemistry.chemical_compoundchemistryengineeringGeneral Materials ScienceLayer (electronics)Magnetite
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Mice with experimental antiphospholipid syndrome display hippocampal dysfunction and a reduction of dendritic complexity in hippocampal CA1 neurones

2015

Aims The antiphospholipid syndrome (APS) is an autoimmune disease characterized by high titres of auto-antibodies (aPL) leading to thrombosis and consequent infarcts. However, many affected patients develop neurological symptoms in the absence of stroke. Similarly, in a mouse model of this disease (eAPS), animals consistently develop behavioural abnormalities despite lack of ischemic brain injury. Therefore, the present study was designed to identify structural alterations of hippocampal neurones underlying the neurological symptoms in eAPS. Methods Adult female Balb/C mice were subjected to either induction of eAPS by immunization with β2-Glycoprotein 1 or to a control group. After sixteen…

Autoimmune diseasePathologymedicine.medical_specialtyHistologyDendritic spineHippocampusHippocampal formationBiologymedicine.diseasePathology and Forensic MedicineNeurologyAntiphospholipid syndromePhysiology (medical)ImmunologymedicineSynaptopodinNeurology (clinical)PathologicalStrokeNeuropathology and Applied Neurobiology
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Lumbar spinal fixation removal by a minimal invasive microscope-assisted technique. Case report with technical description

2020

The concept of minimally invasive spine surgery (MISS) has gained increasing popularity in the last decades. While MISS holds promise for faster patient recovery, and shorter hospital stays, the removal of the surgical fixation, when required, is still performed by an extensive approach often resulting in disabling pain and discomfort. We describe a novel minimal invasive microscope-assisted technique for lumbar spinal fixation removal. This technique has been successfully applied in a 35-year-old man, affected by back pain despite a previous posterior dynamic MISS L4-S1 fixation. The previous skin incisions were opened and under microscopic vision, the screws and the roads were dissected f…

Back pain minimal invasive spine surgery lumbar
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The pressure-induced ringwoodite to Mg-perovskite and periclase post-spinel phase transition: a Bader’s topological analysis of the ab initio electro…

2011

In order to characterize the pressure-induced decomposition of ringwoodite (c-Mg2SiO4), the topological analysis of the electron density q(r), based upon the theory of atoms in molecules (AIM) developed by Bader in the framework of the catastrophe theory, has been performed. Calculations have been carried out by means of the ab initio CRYSTAL09 code at the HF/DFT level, using Hamiltonians based on the Becke- LYP scheme containing hybrid Hartree– Fock/density functional exchange–correlation terms. The equation of state at 0 K has been constructed for the three phases involved in the post-spinel phase transition (ringwoodite -> Mg-perovskite + periclase) occurring at the transition zone–lower…

Bader’s topological analysisElectron densityEquation of statePhase transitionRingwoodite Post-spinel phase transition Bader’s topological analysis Ab initio Catastrophe theory Critical pointsChemistryCatastrophe theoryAtoms in moleculesRingwooditeAb initioCritical pointsHartreeengineering.materialTopologyRingwoodite; Post-spinel phase transition; Bader’s topological analysis; Ab initio; Catastrophe theory; Critical pointsPost-spinel phase transitionRingwooditeGeochemistry and PetrologyBader’s topological analysiAb initioengineeringGeneral Materials SciencePerovskite (structure)
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Transition from mildly-tholeiitic to calc-alkaline suite: the case of Chichontepec volcanic centre, El Salvador, Central America

1998

Abstract The Chichontepec volcano is a Plio-Pleistocene composite volcano that erupted lavas ranging from high-alumina basalts to dacites. It experienced a caldera-forming paroxysmal eruption during the early Pleistocene. Pre-caldera lavas are mildly tholeiitic and they evolved mainly by low pressure crystal fractionation, notwithstanding the fact that most mafic lavas (low-MgO high-alumina basalts) retain traces of polybaric evolution. Conversely, post-caldera lavas, which are mainly pyroxene andesites, are clearly calc-alkaline, having evolved by open-system crystal fractionation. Sr–Nd isotopic data and trace elements characteristics indicate that the same mantle source was involved in t…

Basaltgeographygeography.geographical_feature_categoryFractional crystallization (geology)radiogenic isotopesandesitesAndesiteGeochemistryengineering.materialVolcanic rockGeophysicsal-spinelGeochemistry and PetrologyengineeringPlagioclaseal-spinel; andesites; central america; el salvador; high-alumina basalts; radiogenic isotopesIgneous differentiationMaficel salvadorhigh-alumina basaltscentral americaGeologyPetrogenesis
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Atomic Layer Deposition of Spinel Lithium Manganese Oxide by Film-Body-Controlled Lithium Incorporation for Thin-Film Lithium-Ion Batteries

2013

Lithium manganese oxide spinels are promising candidate materials for thin-film lithium-ion batteries owing to their high voltage, high specific capacity for storage of electrochemical energy, and minimal structural changes during battery operation. Atomic layer deposition (ALD) offers many benefits for preparing all-solid-state thin-film batteries, including excellent conformity and thickness control of the films. Yet, the number of available lithium-containing electrode materials obtained by ALD is limited. In this article, we demonstrate the ALD of lithium manganese oxide, LixMn2O4, from Mn(thd)3, Li(thd), and ozone. Films were polycrystalline in their as-deposited state and contained le…

Battery (electricity)Materials scienceta114Lithium vanadium phosphate batterySpinelInorganic chemistrychemistry.chemical_elementengineering.materialElectrochemical energy conversionSurfaces Coatings and FilmsElectronic Optical and Magnetic MaterialsAtomic layer depositionGeneral EnergychemistryImpurityengineeringLithiumCrystallitePhysical and Theoretical ChemistryThe Journal of Physical Chemistry C
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