Skip to main content
construction release_alert
Profile editing is temporarily unavailable from June 11-24, 2026 while manual profile data entry transitions to Elements. Learn More.
cancel

After over 200 years, 7 T magnetic resonance imaging reveals the foliate structure of the human corpus callosum in vivo.

Publication ,  Journal Article
Wiggins, CJ; Schäfer, A; Dhital, B; Le Bihan, D; Turner, R
Published in: Br J Radiol
May 2017

OBJECTIVE: A fine structure of the corpus callosum (CC), consisting of radial lines, is seen in historical anatomical atlases as far back as that of Vicq d'Azyr (1786). This study examines a similar pattern observed in vivo using high-resolution MR images at 7 T. METHODS: 8 healthy subjects were examined with 7.0-T MRI. Anatomical images were collected with a gradient echo scan with 0.5-mm isotropic resolution, which were rated for visibility of the radial pattern. In addition, the second eigenvector of the diffusion tensor images was examined. RESULTS: The fine radial lines are detected not only in the sagittal view but also in the axial view of the in vivo MR images. From this, it is likely that these structures are two-dimensional ribbons. Interestingly, and confirming the structural nature of these stripes, the second eigenvector of the diffusion tensor imaging data shows an extremely similar pattern of oriented foliate structure. A similar modular structure involving transient septa has been observed previously in histological sections of human fetal CC. CONCLUSION: The separate sets of data-the atlas of Klingler, anatomical images and second eigenvector images-all indicate a ribbon-like arrangement of the fibres in the CC. As such, they closely match the structures shown in the drawn atlases of as old as 1786. Advances in knowledge: This ribbon arrangement of fibres in the CC, previously unseen in CT or lower field MRI, can now be observed in vivo. This appears to match over two centuries of ex vivo observations.

Duke Scholars

Published In

Br J Radiol

DOI

EISSN

1748-880X

Publication Date

May 2017

Volume

90

Issue

1073

Start / End Page

20160906

Location

England

Related Subject Headings

  • Young Adult
  • Time Factors
  • Nuclear Medicine & Medical Imaging
  • Male
  • Magnetic Resonance Imaging
  • Humans
  • History, 20th Century
  • History, 19th Century
  • History, 18th Century
  • Female
 

Citation

APA
Chicago
ICMJE
MLA
NLM
Wiggins, C. J., Schäfer, A., Dhital, B., Le Bihan, D., & Turner, R. (2017). After over 200 years, 7 T magnetic resonance imaging reveals the foliate structure of the human corpus callosum in vivo. Br J Radiol, 90(1073), 20160906. https://doi.org/10.1259/bjr.20160906
Wiggins, Christopher J., Andreas Schäfer, Bibek Dhital, Denis Le Bihan, and Robert Turner. “After over 200 years, 7 T magnetic resonance imaging reveals the foliate structure of the human corpus callosum in vivo.Br J Radiol 90, no. 1073 (May 2017): 20160906. https://doi.org/10.1259/bjr.20160906.
Wiggins CJ, Schäfer A, Dhital B, Le Bihan D, Turner R. After over 200 years, 7 T magnetic resonance imaging reveals the foliate structure of the human corpus callosum in vivo. Br J Radiol. 2017 May;90(1073):20160906.
Wiggins, Christopher J., et al. “After over 200 years, 7 T magnetic resonance imaging reveals the foliate structure of the human corpus callosum in vivo.Br J Radiol, vol. 90, no. 1073, May 2017, p. 20160906. Pubmed, doi:10.1259/bjr.20160906.
Wiggins CJ, Schäfer A, Dhital B, Le Bihan D, Turner R. After over 200 years, 7 T magnetic resonance imaging reveals the foliate structure of the human corpus callosum in vivo. Br J Radiol. 2017 May;90(1073):20160906.

Published In

Br J Radiol

DOI

EISSN

1748-880X

Publication Date

May 2017

Volume

90

Issue

1073

Start / End Page

20160906

Location

England

Related Subject Headings

  • Young Adult
  • Time Factors
  • Nuclear Medicine & Medical Imaging
  • Male
  • Magnetic Resonance Imaging
  • Humans
  • History, 20th Century
  • History, 19th Century
  • History, 18th Century
  • Female