Sequential labelling of microdamage in bone using chelating agents.
about
Multiscale imaging of bone microdamageNon destructive characterization of cortical bone micro-damage by nonlinear resonant ultrasound spectroscopy.Visualisation of three-dimensional microcracks in compact bone.Microcracks in compact bone: a three-dimensional view.Spatial correlations of trabecular bone microdamage with local stresses and strains using rigid image registration.New approaches in the detection of calcium-containing microcrystals in synovial fluidQuantitative relationships between microdamage and cancellous bone strength and stiffness.New bone formation and microstructure assessed by combination of confocal laser scanning microscopy and differential interference contrast microscopy.Microdamage caused by fatigue loading in human cancellous bone: relationship to reductions in bone biomechanical performanceDetecting microdamage in bone.Fatigue-induced microdamage in cancellous bone occurs distant from resorption cavities and trabecular surfacesMechanical failure begins preferentially near resorption cavities in human vertebral cancellous bone under compression.Micro-computed tomography of fatigue microdamage in cortical bone using a barium sulfate contrast agent.Effects of different types of palatal lateral excisions on growth and development of maxilla and dental arch.μFEA successfully exhibits higher stresses and strains in microdamaged regions of whole vertebrae.Automated high-resolution three-dimensional fluorescence imaging of large biological specimens.The effect of staining on the monotonic tensile mechanical properties of human cortical bone.Intended and Unintended Targeting of Polymeric Nanocarriers: The Case of Modified Poly(glycerol adipate) Nanoparticles.Anatomists and geometers: 16th Samuel Haughton Lecture of the Royal Academy of Medicine in Ireland.Recombinant human BMP-2 enhances osteogenesis of demineralized bone matrix in experimental mastoid obliteration.Comparision of osteoconductivity of biologic and artificial synthetic hydroxyapatite in experimental mastoid obliteration.Methodological approach for the detection of both microdamage and fluorochrome labels in ewe bone and human trabecular bone.Quantification of fibre polymerization through Fourier space image analysis.Organic Molecules for Optical ImagingOsteonal crack barriers in ovine compact bone
P2860
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P2860
Sequential labelling of microdamage in bone using chelating agents.
description
2000 nî lūn-bûn
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2000年の論文
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2000年学术文章
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2000年学术文章
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name
Sequential labelling of microdamage in bone using chelating agents.
@en
Sequential labelling of microdamage in bone using chelating agents.
@nl
type
label
Sequential labelling of microdamage in bone using chelating agents.
@en
Sequential labelling of microdamage in bone using chelating agents.
@nl
prefLabel
Sequential labelling of microdamage in bone using chelating agents.
@en
Sequential labelling of microdamage in bone using chelating agents.
@nl
P2093
P356
P1476
Sequential labelling of microdamage in bone using chelating agents.
@en
P2093
P2860
P304
P356
10.1002/JOR.1100180222
P577
2000-03-01T00:00:00Z