Search results for "Patella"

showing 10 items of 80 documents

Determination of knee joint cartilage thickness using three-dimensional magnetic resonance chondro-crassometry (3D MR-CCM)

1996

The objective of this article was to analyze the accuracy and precision with which the quantitative distribution of articular cartilage can be determined in the knee joint using MRI. A three-dimensional (3D) technique that accounts for the out-of-plane deviation of the interface normal in strongly curved joint surfaces (3D MR-CCM) has been developed for cartilage thickness measurements. Eight cadaveric knee-joint specimens and six volunteers were imaged using a fat-suppressed gradient-echo sequence at a resolution of 2 x 0.31 x 0.31 mm3. Cartilage volumes and topographical thickness maps were obtained and compared with those derived from anatomical sections by image analysis. The deviation …

AdultCartilage ArticularMalemusculoskeletal diseasesAccuracy and precisionMaterials scienceKnee JointCoefficient of variationKnee JointmedicineHumansRadiology Nuclear Medicine and imagingJoint (geology)AgedAged 80 and overObserver Variationmedicine.diagnostic_testCartilageReproducibility of ResultsMagnetic resonance imagingAnatomyMiddle AgedMagnetic Resonance Imagingmedicine.anatomical_structureFemalePatellaCadaveric spasmBiomedical engineeringMagnetic Resonance in Medicine
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Importance of Patella, Quadriceps Forces, and Depthwise Cartilage Structure on Knee Joint Motion and Cartilage Response During Gait

2015

In finite-element (FE) models of the knee joint, patella is often omitted. We investigated the importance of patella and quadriceps forces on the knee joint motion by creating an FE model of the subject's knee. In addition, depthwise strains and stresses in patellar cartilage with different tissue properties were determined. An FE model was created from subject's magnetic resonance images. Knee rotations, moments, and translational forces during gait were recorded in a motion laboratory and used as an input for the model. Three material models were implemented into the patellar cartilage: (1) homogeneous model, (2) inhomogeneous (arcadelike fibrils), and (3) random fibrils at the superficia…

AdultCartilage ArticularMalemusculoskeletal diseasesquadricepsMaterials science0206 medical engineeringShear forceBiomedical Engineering02 engineering and technologyOsteoarthritisKnee Jointmedicine.disease_causegaitModels BiologicalQuadriceps MuscleWeight-bearingWeight-Bearingknee joint03 medical and health sciences0302 clinical medicineTensile StrengthPhysiology (medical)Collagen networkfinite-element modelsmedicineHumansComputer SimulationRange of Motion Articularta315Orthodonticsta114Cartilage030229 sport sciencesmusculoskeletal systemmedicine.disease020601 biomedical engineeringmedicine.anatomical_structurepatellaPatellaStress MechanicalRange of motionhuman activitiesMuscle ContractionJournal of Biomechanical Engineering
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Non-invasive determination of cartilage thickness throughout joint surfaces using magnetic resonance imaging.

1997

Abstract Data on articular cartilage thickness in the living are important for the design of computer models, aimed at preoperatively assessing the effect of surgical procedures on joint contact and load transmission, and for the calculation of cartilage material properties from its deformational behavior as determined during arthroscopy. A non-invasive method for measuring cartilage thickness in living subjects is, however, not available. A technique based on magnetic resonance imaging has therefore been tested for assessing articular cartilage thickness throughout joint surfaces. The accuracy is determined by comparing cartilage thickness maps obtained from three patellar specimens with a…

AdultCartilage ArticularMaterials scienceKnee JointBiomedical EngineeringBiophysicsContrast MediaArticular cartilageModels BiologicalArthroscopyTriiodobenzoic AcidsmedicineCadaverImage Processing Computer-AssistedHumansOrthopedics and Sports MedicineJoint (geology)Ultrasonographymedicine.diagnostic_testbusiness.industryCartilageRehabilitationArthroscopyUltrasoundMagnetic resonance imagingPatellaCartilage thicknessMiddle AgedImage EnhancementMagnetic Resonance ImagingRadiographic Image Enhancementmedicine.anatomical_structurePatellaStress MechanicalbusinessTomography X-Ray ComputedBiomedical engineeringJournal of biomechanics
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Middle patellar tendon to posterior cruciate ligament (PT–PCL) and normalized PT–PCL: New magnetic resonance indices for tibial tubercle position in …

2018

BACKGROUND To demonstrate whether the distance between the middle point of the patellar tendon and posterior cruciate ligament (PT-PCL) calculated on a single axial MR image could be an alternative measure to tibial tubercle-PCL (TT-PCL) distance for TT lateralization without the need of imaging processing. To show that normalization of PT-PCL (nPT-PCL) against the maximum diameter of the tibial plateau may help to identify patients with patellar instability (PI). METHODS MR scans of 30 patients (13 females, age 32 ± 13 years) with known PI and 60 patients (31 females, age 39 ± 19 years) with no history of PI were reviewed. Two operators calculated TT-PCL, and PT-PCL nPT-PCL. Intraclass cor…

AdultJoint InstabilityMaleAdolescentIntraclass correlationInterobserver reproducibility030218 nuclear medicine & medical imagingPatellofemoral Joint03 medical and health sciences0302 clinical medicineMcNemar's testPatellar LigamentImage Processing Computer-AssistedmedicineHumansOrthopedics and Sports MedicineIn patient030222 orthopedicsTibiamedicine.diagnostic_testReceiver operating characteristicbusiness.industryReproducibility of ResultsMagnetic resonance imagingMiddle AgedMagnetic Resonance ImagingPatellar tendonmedicine.anatomical_structureROC CurvePosterior cruciate ligamentFemalePosterior Cruciate LigamentbusinessNuclear medicineThe Knee
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Lower strength of the human posterior patellar tendon seems unrelated to mature collagen cross-linking and fibril morphology

2009

The human patellar tendon is frequently affected by tendinopathy, but the etiology of the condition is not established, although differential loading of the anterior and posterior tendon may be associated with the condition. We hypothesized that changes in fibril morphology and collagen cross-linking would parallel differences in material strength between the anterior and posterior tendon. Tendon fascicles were obtained from elective ACL surgery patients and tested micromechanically. Transmission electron microscopy was used to assess fibril morphology, and collagen cross-linking was determined by HPLC and calorimetry. Anterior fascicles were markedly stronger (peak stress: 54.3 ± 21.2 vs.…

AdultMaleCollagen cross linkingPhysiologybusiness.industryFibrillar CollagensPatellar ligamentAnatomyFibrilmedicine.diseasePatellar tendonTendonStructure-Activity RelationshipCross-Linking Reagentsmedicine.anatomical_structurePatellar LigamentTensile StrengthPhysiology (medical)HumansMedicineStress MechanicalTendinopathybusinessFibril morphologyJumper's kneeJournal of Applied Physiology
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Translocation (X;18) in a Biphasic Synovial Sarcoma with Morphologic Features of Neural Differentiation

1998

The authors report a recurred neoplasm showing distinctive histologic, immunophenotypic, and ultrastructural features characteristic of biphasic synovial sarcoma with neural differentiation. The features include areas with a growth pattern of densely packed spindle cells in irregularly intersecting, broad fascicles, diffuse vimentin and HBA 71 immunoreactivity, expression of S-100 protein, and other neural markers. Moreover, areas with glandular structures and cellular expression of cytokeratin and epithelial membrane antigen were noted. Additionally, areas of neural-like growth pattern were positive for neuron-specific enolase, HNK-1, and protein gene product 9.5. Furthermore, cytogenetic …

AdultMaleLung NeoplasmsX ChromosomeBiphasic Synovial SarcomaEnolaseSoft Tissue NeoplasmsChromosomal translocationVimentinPolymerase Chain ReactionTranslocation GeneticImmunophenotypingPathology and Forensic MedicineGene productSarcoma SynovialCytokeratinTumor Cells CulturedmedicineHumansMolecular BiologyIn Situ Hybridization FluorescenceNeuronsmedicine.diagnostic_testbiologyChemistryCell DifferentiationPatellaCell BiologyMolecular biologyReverse transcription polymerase chain reactionKaryotypingbiology.proteinChromosomes Human Pair 18Fluorescence in situ hybridizationDiagnostic Molecular Pathology
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Interrelationships between electromyographic, mechanical, muscle structure and reflex time measurements in man.

1981

Reaction time (TRT) with its premotor (PMT) and motor time (MT) components, patellar reflex time (TRfT) with its latency (LAT) and motor time (RfMT) were studied together with isometric force production and relaxation time variables in one leg isometric knee extension. These variables were intercorrelated together with muscle biopsy variables taken from m. vastus lateralis. From these computations MT proved to demonstrate significant correlations to rate of isometric force development (RFD) (P less than 0.001), maximum force (P0) (P less than 0.001) and per cent distribution of ST fibers (P less than 0.001). It is speculated that these relationships are determined by the pattern of the moto…

AdultMaleMuscle biopsyTime Factorsmedicine.diagnostic_testPhysiologyChemistryElectromyographyMuscle RelaxationMusclesPatellar reflexAnatomyElectromyographyIsometric exerciseMuscle relaxationIsometric ContractionMotor unit recruitmentReflexReflexmedicineReaction TimeHumansmedicine.symptomMuscle contractionMuscle ContractionActa physiologica Scandinavica
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FiberWire tension band for patellar fractures.

2015

Background Symptomatic hardware represents the most frequent complication reported following surgical treatment of patellar fracture. For this reason, some authors suggested using nonabsorbable sutures to fix the fracture with various techniques. The aim of this study was to evaluate clinical and radiological results of patients treated following a modified Pyriford technique using a FiberWire suture (Arthrex, Naples, FL, USA). Materials and methods We retrospectively evaluated a case series of  seventeen patients with displaced patellar fractures treated by open reduction and internal fixation with a modified tension band using FiberWire sutures. Clinical and radiological outcome were eval…

AdultMalePatellar fracturemedicine.medical_specialtySports medicinemedicine.medical_treatmentKnee Injuries03 medical and health sciencesFracture Fixation InternalFractures BoneYoung Adult0302 clinical medicineTension bandmedicineSettore MED/33 - Malattie Apparato LocomotoreInternal fixationHumansOrthopedics and Sports Medicine030212 general & internal medicineTension bandSurgical treatmentAgedRetrospective StudiesSutureFibrous joint030222 orthopedicsSuturesbusiness.industrySuture TechniquesPatellaMiddle Agedmedicine.diseaseSurgeryKnee fracturemedicine.anatomical_structureOrthopedic surgeryFiberWireSurgeryFemaleOriginal ArticlePatella fracturebusinessComplicationBone WiresJournal of orthopaedics and traumatology : official journal of the Italian Society of Orthopaedics and Traumatology
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Fracture Mechanics of Collagen Fibrils: Influence of Natural Cross-Links

2013

AbstractTendons are important load-bearing structures, which are frequently injured in both sports and work. Type I collagen fibrils are the primary components of tendons and carry most of the mechanical loads experienced by the tissue, however, knowledge of how load is transmitted between and within fibrils is limited. The presence of covalent enzymatic cross-links between collagen molecules is an important factor that has been shown to influence mechanical behavior of the tendons. To improve our understanding of how molecular bonds translate into tendon mechanics, we used an atomic force microscopy technique to measure the mechanical behavior of individual collagen fibrils loaded to failu…

AdultMaleTailMechanical PhenomenaBiophysicsModulusFibrilta3111Collagen fibrilPatellar LigamentTensile StrengthUltimate tensile strengthmedicineAnimalsHumansMolecular Machines Motors and Nanoscale Biophysicsta315Mechanical PhenomenaChemistryFracture mechanicsta3141AnatomyHydrogen-Ion ConcentrationMiddle Agedmusculoskeletal systemTendonBiomechanical PhenomenaRatsmedicine.anatomical_structureSolubilityBiophysicsCollagenType I collagenBiophysical Journal
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Corticosteroid injections, eccentric decline squat training and heavy slow resistance training in patellar tendinopathy.

2009

Udgivelsesdato: Sep-28 A randomized-controlled single-blind trial was conducted to investigate the clinical, structural and functional effects of peritendinous corticosteroid injections (CORT), eccentric decline squat training (ECC) and heavy slow resistance training (HSR) in patellar tendinopathy. Thirty-nine male patients were randomized to CORT, ECC or HSR for 12 weeks. We assessed function and symptoms (VISA-p questionnaire), tendon pain during activity (VAS), treatment satisfaction, tendon swelling, tendon vascularization, tendon mechanical properties and collagen crosslink properties. Assessments were made at 0 weeks, 12 weeks and at follow-up (half-year). All groups improved in VISA-…

AdultMalemedicine.medical_specialtyAdolescentmedicine.drug_classPhysical Therapy Sports Therapy and RehabilitationSquatlaw.inventionYoung AdultRandomized controlled triallawAdrenal Cortex HormonesPatellar LigamentSurveys and QuestionnairesCollagen networkMedicineEccentricHumansOrthopedics and Sports MedicineUltrasonographybusiness.industryResistance trainingResistance TrainingMiddle Agedmusculoskeletal systemTendonSurgerymedicine.anatomical_structureAnesthesiaTendinopathyCorticosteroidPatellar tendinopathybusinessScandinavian journal of medicinescience in sports
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