In vivo bone and cartilage MRI using fully-balanced steady-state free-precession at 7 tesla.
about
Quantitative assessment of trabecular bone micro-architecture of the wrist via 7 Tesla MRI: preliminary results.Comparison of a 28-channel receive array coil and quadrature volume coil for morphologic imaging and T2 mapping of knee cartilage at 7TMRI of the hip at 7T: feasibility of bone microarchitecture, high-resolution cartilage, and clinical imagingHigh-resolution imaging techniques for the assessment of osteoporosisImproving contrast to noise ratio of resonance frequency contrast images (phase images) using balanced steady-state free precession.Performance of μMRI-Based virtual bone biopsy for structural and mechanical analysis at the distal tibia at 7T field strengthA radiofrequency coil configuration for imaging the human vertebral column at 7 T.Helmholtz-pair transmit coil with integrated receive array for high-resolution MRI of trabecular bone in the distal tibia at 7T.7 Tesla MRI of bone microarchitecture discriminates between women without and with fragility fractures who do not differ by bone mineral density.Comparison between eight- and sixteen-channel TEM transceive arrays for body imaging at 7 T.3D fast spin echo with out-of-slab cancellation: a technique for high-resolution structural imaging of trabecular bone at 7 Tesla.Reproducibility of subregional trabecular bone micro-architectural measures derived from 7-Tesla magnetic resonance images.In vivo estimation of bone stiffness at the distal femur and proximal tibia using ultra-high-field 7-Tesla magnetic resonance imaging and micro-finite element analysisEarly knee changes in dancers identified by ultra-high-field 7 T MRI.MR imaging assessment of articular cartilage repair procedures.Assessment of cartilage-dedicated sequences at ultra-high-field MRI: comparison of imaging performance and diagnostic confidence between 3.0 and 7.0 T with respect to osteoarthritis-induced changes at the knee jointHigh resolution morphologic imaging and T2 mapping of cartilage at 7 Tesla: comparison of cartilage repair patients and healthy controls7T MRI detects deterioration in subchondral bone microarchitecture in subjects with mild knee osteoarthritis as compared with healthy controls.Advances in multimodality molecular imaging of bone structure and function.Why buy an expensive ($7 million) 7T MRI system for biomedical research?A comparative analysis of 7.0-Tesla magnetic resonance imaging and histology measurements of knee articular cartilage in a canine posterolateral knee injury model: a preliminary analysis.PET/MR Imaging: New Frontier in Alzheimer's Disease and Other Dementias.An 8-channel transceiver 7-channel receive RF coil setup for high SNR ultrahigh-field MRI of the shoulder at 7T.Magnetic resonance imaging of the knee at 3 and 7 tesla: a comparison using dedicated multi-channel coils and optimised 2D and 3D protocols.
P2860
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P2860
In vivo bone and cartilage MRI using fully-balanced steady-state free-precession at 7 tesla.
description
2007 nî lūn-bûn
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2007年の論文
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2007年学术文章
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2007年学术文章
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2007年学术文章
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2007年學術文章
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name
In vivo bone and cartilage MRI ...... te free-precession at 7 tesla.
@en
In vivo bone and cartilage MRI ...... te free-precession at 7 tesla.
@nl
type
label
In vivo bone and cartilage MRI ...... te free-precession at 7 tesla.
@en
In vivo bone and cartilage MRI ...... te free-precession at 7 tesla.
@nl
prefLabel
In vivo bone and cartilage MRI ...... te free-precession at 7 tesla.
@en
In vivo bone and cartilage MRI ...... te free-precession at 7 tesla.
@nl
P2093
P356
P1476
In vivo bone and cartilage MRI ...... ate free-precession at 7 tesla
@en
P2093
Dan Vigneron
Douglas A C Kelley
Julio Carballido-Gamio
Lucas Carvajal
Robert Stahl
Roland Krug
Sharmila Majumdar
Suchandrima Banerjee
Thomas M Link
P304
P356
10.1002/MRM.21429
P50
P577
2007-12-01T00:00:00Z