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Comparison of Diagnostic Performance of Semi-Quantitative Knee Ultrasound and Knee Radiography with MRI: Oulu Knee Osteoarthritis Study.Specificity of Fourier Transform Infrared (FTIR) Microspectroscopy to Estimate Depth-Wise Proteoglycan Content in Normal and Osteoarthritic Human Articular CartilageImaging of Osteoarthritic Human Articular Cartilage using Fourier Transform Infrared Microspectroscopy Combined with Multivariate and Univariate AnalysisStructure-symptom relationship with wide-area ultrasound scanning of knee osteoarthritis.Optical coherence tomography enables accurate measurement of equine cartilage thickness for determination of speed of sound.Delivering Agents Locally into Articular Cartilage by Intense MHz Ultrasound.Arthroscopic Ultrasound Assessment of Articular Cartilage in the Human Knee Joint: A Potential Diagnostic Method.Optical spectral reflectance of human articular cartilage - relationships with tissue structure, composition and mechanical properties.Comparison of different material models of articular cartilage in 3D computational modeling of the knee: Data from the Osteoarthritis Initiative (OAI).Dual energy x-ray laser measurement of calcaneal bone mineral density.Association between subchondral bone structure and osteoarthritis histopathological grade.Hypotonic challenge modulates cell volumes differently in the superficial zone of intact articular cartilage and cartilage explant.Fourier transform infrared spectroscopic imaging and multivariate regression for prediction of proteoglycan content of articular cartilage.The effect of collagen degradation on chondrocyte volume and morphology in bovine articular cartilage following a hypotonic challenge.Multiparametric MRI assessment of human articular cartilage degeneration: Correlation with quantitative histology and mechanical properties.Cell-tissue interactions in osteoarthritic human hip joint articular cartilage.Associations between MRI-defined structural pathology and generalized and localized knee pain - the Oulu Knee Osteoarthritis study.Effects of Articular Cartilage Constituents on Phosphotungstic Acid Enhanced Micro-Computed Tomography.Subchondral bone histology and grading in osteoarthritis.Correlation of Subchondral Bone Density and Structure from Plain Radiographs with Micro Computed Tomography Ex VivoCationic Contrast Agent Diffusion Differs Between Cartilage and MeniscusQuantitative assessment of articular cartilage using high-frequency ultrasound: research findings and diagnostic prospects.Standard radiography: untapped potential in the assessment of osteoporotic fracture risk.Raccoon dog model shows preservation of bone during prolonged catabolism and reduced physical activity.Elevated adiabatic T1ρ and T2ρ in articular cartilage are associated with cartilage and bone lesions in early osteoarthritis: A preliminary study.Ultrasound indentation of bovine knee articular cartilage in situ.Cluster analysis of infrared spectra of rabbit cortical bone samples during maturation and growth.Comprehensive optimization process of paranasal sinus radiography.2-D finite difference time domain model of ultrasound reflection from normal and osteoarthritic human articular cartilage surface.Quantitative analysis of spatial proteoglycan content in articular cartilage with Fourier transform infrared imaging spectroscopy: Critical evaluation of analysis methods and specificity of the parameters.Bone healing in rabbit calvarial critical-sized defects filled with stem cells and growth factors combined with granular or solid scaffolds.Structure-function relationships of human meniscus.Erratum: Comparison of Diagnostic Performance of Semi-Quantitative Knee Ultrasound and Knee Radiography with MRI: Oulu Knee Osteoarthritis Study.Quantification of differences in bone texture from plain radiographs in knees with and without osteoarthritisQuantitative Analysis of Musculoskeletal Ultrasound: Techniques and Clinical Applications.Differences in tibial subchondral bone structure evaluated using plain radiographs between knees with and without cartilage damage or bone marrow lesions - the Oulu Knee Osteoarthritis study.Determining collagen distribution in articular cartilage using contrast-enhanced micro-computed tomography.Ability of ultrasound imaging to detect erosions in a bone phantom model.Infrared spectroscopy indicates altered bone turnover and remodeling activity in renal osteodystrophy.Depth-wise progression of osteoarthritis in human articular cartilage: investigation of composition, structure and biomechanics.
P50
Q27335180-FEF4F996-48E9-406D-9FE5-8E244451EFABQ28385981-518E1910-762A-421E-A989-CA29D028818DQ28829274-84AC26B2-75D0-449B-A992-DD3EBBDDEB16Q30360763-0747360F-11BA-4597-A036-283D6D7E6136Q30365831-8CC2C823-6F7B-445E-8AF5-FCA0D8C27A14Q30402318-9659F8CF-7F02-49BC-9F60-4A9BE7005C80Q30409472-3EA67216-814A-4C91-BCFC-C94C8279690CQ30475527-4546F13E-3477-4069-80B2-B743C8452E21Q31141492-82F4D683-A445-41F3-AE8F-9268AC74FEFEQ31150001-16F08292-F0AC-4BDD-B1FB-E344E17839B7Q33625988-6BC09F02-9B2D-4531-97CB-9D97CF153A66Q34005630-63D6D6C3-5A2A-4124-A501-0E56AFA80215Q34168698-0181F6B9-C15E-44C1-BA69-8D8248FA2B3CQ34308308-749AB498-B565-4F69-A44C-71955FDE9F60Q35060854-523EBBEE-373E-4833-BBF6-23EE02BC6E80Q35139512-3C56BF56-8B81-4B0F-A9DC-D5BA11FE1000Q36016377-9A21D173-4F3A-4BCD-ABD6-05614463302CQ36263971-C1CC7DC3-9B01-433F-838D-1C9745B1427CQ36314741-EBDBA0B5-4F04-4529-9FBA-255CE5478EC8Q36416696-FC7B36D9-355A-4D14-896E-6A86FFAD2B92Q37298040-889669F9-5F6D-4534-9821-505E09DDC35CQ37766613-824ABE6F-DC37-47CC-A15B-B968C3A8EF14Q38063088-47A3FC26-5ADD-4D58-9016-7E0CD14FCDE4Q38857448-08F81677-B89C-459B-B99D-718AC0F85927Q39002043-D66F3EFC-78BB-43D2-913A-33836FEDE639Q39656500-A11E8AC6-AF0A-4DBC-A3D3-BE0868968DCFQ39822223-ED7B74B9-F701-4FDB-9849-8F8D5EC0D89CQ39874877-D0DAAB35-7949-48F3-B2AC-D18274F9DE06Q39884564-C5AA2381-57BA-48E4-ABB8-962A29AE1EB4Q39904402-4713983A-517C-4096-A910-FF39166ADB48Q40091076-EABFA5DF-702C-4427-9C02-ABC694A2200CQ40429187-CF4E09E0-DEB9-4206-9DCD-FBC930B27DA0Q41106652-43535A8B-254D-48CA-A929-5BEB8BCF68CDQ41638477-10E5E49E-6408-4EA5-8E50-49D9954016E5Q42351306-3748F7A1-709D-41EE-A357-ECCAF8A14DB2Q42374247-764278B8-F86E-4D70-B289-F4BD5A879248Q42582864-A3E55516-C96D-4535-8248-5573D19D82F3Q42965449-BA5BC526-3BDF-44D4-9A63-A751CE446C84Q43143544-D338A0C9-CE66-44C2-86D1-5529F8A8C97FQ43491611-1BAA2010-AFB0-480E-A9B2-2353331FC764
P50
description
hulumtues
@sq
researcher
@en
wetenschapper
@nl
հետազոտող
@hy
name
Simo Saarakkala
@ast
Simo Saarakkala
@en
Simo Saarakkala
@es
Simo Saarakkala
@nl
Simo Saarakkala
@sl
type
label
Simo Saarakkala
@ast
Simo Saarakkala
@en
Simo Saarakkala
@es
Simo Saarakkala
@nl
Simo Saarakkala
@sl
prefLabel
Simo Saarakkala
@ast
Simo Saarakkala
@en
Simo Saarakkala
@es
Simo Saarakkala
@nl
Simo Saarakkala
@sl
P1053
F-5839-2013
P106
P1153
6602725434
P21
P31
P3829
P496
0000-0003-2850-5484
P569
2000-01-01T00:00:00Z