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Structural anisotropy and internal magnetic fields in trabecular bone: coupling solution and solid dipolar interactions.

Publication ,  Journal Article
Bouchard, L-S; Wehrli, FW; Chin, C-L; Warren, WS
Published in: Journal of magnetic resonance (San Diego, Calif. : 1997)
September 2005

We investigate the use of intermolecular multiple-quantum coherence to probe structural anisotropy in trabecular bone. Despite the low volume fraction of bone, the bone-water interface produces internal magnetic field gradients which modulate the dipolar field, depending on sample orientation, choice of dipolar correlation length, correlation gradient direction, and evolution time. For this system, the probing of internal magnetic field gradients in the liquid phase permits indirect measurements of the solid phase dipolar field. Our results suggest that measurements of volume-averaged signal intensity as a function of gradient strength and three orthogonal directions could be used to non-invasively measure the orientation of structures inside a sample or their degree of anisotropy. The system is modeled as having two phases, solid and liquid (bone and water), which differ in their magnetization density and magnetic susceptibility. A simple calculation using a priori knowledge of the material geometry and distribution of internal magnetic fields verifies the experimental measurements as a function of gradient strength, direction, and sample orientation.

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Published In

Journal of magnetic resonance (San Diego, Calif. : 1997)

DOI

EISSN

1096-0856

ISSN

1090-7807

Publication Date

September 2005

Volume

176

Issue

1

Start / End Page

27 / 36

Related Subject Headings

  • Tibia
  • Porosity
  • Phantoms, Imaging
  • Magnetic Resonance Spectroscopy
  • Humans
  • Biophysics
  • Anisotropy
  • 51 Physical sciences
  • 40 Engineering
  • 09 Engineering
 

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Bouchard, L.-S., Wehrli, F. W., Chin, C.-L., & Warren, W. S. (2005). Structural anisotropy and internal magnetic fields in trabecular bone: coupling solution and solid dipolar interactions. Journal of Magnetic Resonance (San Diego, Calif. : 1997), 176(1), 27–36. https://doi.org/10.1016/j.jmr.2005.05.012
Bouchard, Louis-S, Felix W. Wehrli, Chih-Liang Chin, and Warren S. Warren. “Structural anisotropy and internal magnetic fields in trabecular bone: coupling solution and solid dipolar interactions.Journal of Magnetic Resonance (San Diego, Calif. : 1997) 176, no. 1 (September 2005): 27–36. https://doi.org/10.1016/j.jmr.2005.05.012.
Bouchard L-S, Wehrli FW, Chin C-L, Warren WS. Structural anisotropy and internal magnetic fields in trabecular bone: coupling solution and solid dipolar interactions. Journal of magnetic resonance (San Diego, Calif : 1997). 2005 Sep;176(1):27–36.
Bouchard, Louis-S., et al. “Structural anisotropy and internal magnetic fields in trabecular bone: coupling solution and solid dipolar interactions.Journal of Magnetic Resonance (San Diego, Calif. : 1997), vol. 176, no. 1, Sept. 2005, pp. 27–36. Epmc, doi:10.1016/j.jmr.2005.05.012.
Bouchard L-S, Wehrli FW, Chin C-L, Warren WS. Structural anisotropy and internal magnetic fields in trabecular bone: coupling solution and solid dipolar interactions. Journal of magnetic resonance (San Diego, Calif : 1997). 2005 Sep;176(1):27–36.
Journal cover image

Published In

Journal of magnetic resonance (San Diego, Calif. : 1997)

DOI

EISSN

1096-0856

ISSN

1090-7807

Publication Date

September 2005

Volume

176

Issue

1

Start / End Page

27 / 36

Related Subject Headings

  • Tibia
  • Porosity
  • Phantoms, Imaging
  • Magnetic Resonance Spectroscopy
  • Humans
  • Biophysics
  • Anisotropy
  • 51 Physical sciences
  • 40 Engineering
  • 09 Engineering