Magnetic resonance diffusion tensor imaging of optic nerve and optic radiation in healthy adults at 3T

<b>AIM:</b> To investigate the diffusion characteristics of water of optic nerve and optic radiation in healthy adults and its related factors by diffusion tensor imaging (DTI) at 3T.<b>METHODS:</b> A total of 107 healthy volunteers performed head conventional MRI and bilater...

Full description

Bibliographic Details
Main Authors: Hong-Hong Sun, Dong Wang, Qiu-Juan Zhang, Zhi-Lan Bai, Ping He
Format: Article
Language:English
Published: Press of International Journal of Ophthalmology (IJO PRESS) 2013-12-01
Series:International Journal of Ophthalmology
Subjects:
Online Access:http://www.ncbi.nlm.nih.gov/pmc/articles/PMC3874530/
Description
Summary:<b>AIM:</b> To investigate the diffusion characteristics of water of optic nerve and optic radiation in healthy adults and its related factors by diffusion tensor imaging (DTI) at 3T.<b>METHODS:</b> A total of 107 healthy volunteers performed head conventional MRI and bilateral optic nerve and optic radiation DTI. The primary data of DTI was processed by post-processing software of DTI studio 2.3, obtaining fractional anisotropy value, mean diffusivity value, principal engine value, orthogonal engine value by measuring, and analyzed by the SPSS13.0 statistical software.<b>RESULTS:</b>The bilateral optic nerve and optic radiation fibers presented green color in directional encoded color (DEC) maps and presented high signal in fractional anisotropy (FA) maps. The FA value of the left optic nerve was 0.598±0.069 and the right was 0.593±0.065; the mean diffusivity (MD) value of the left optic nerve was (1.324±0.349)×10<sup>-3</sup>mm<sup>2</sup>/s and the right was (1.312±0.350)×10<sup>-3</sup>mm<sup>2</sup>/s; the principal engine value (λ‖) of the left optic nerve was (2.297±0.522)×10<sup>-</sup><sup>3</sup>mm<sup>2</sup>/s and the right was (2.277±0.526)×10<sup>-3</sup>mm<sup>2</sup>/s; the orthogonal engine value (λ⊥) of the left optic nerve was (0.838±0.285)×10<sup>-3</sup>mm<sup>2</sup>/s and the right was (0.830±0.280)×10<sup>-3</sup>mm<sup>2</sup>/s; the FA value of the left optic radiation was 0.636±0.057 and the right was 0.628±0.056; the mean diffusivity (MD) value of the left optic radiation was (0.907±0.103)×10<sup>-3</sup>mm<sup>2</sup>/s and the right was (0.889±0.125)×10<sup>-3</sup>mm<sup>2</sup>/s; the principal eigenvalue (λ‖) of the left optic radiation was (1.655±0.210)×10<sup>-3</sup>mm<sup>2</sup>/s and the right was (1.614±0.171)×10<sup>-3</sup>mm<sup>2</sup>/s; the orthogonal enginvalue (λ⊥) of the left optic radiation was (0.531±0.103)×10<sup>﹣3</sup>mm<sup>2</sup>/s and the right was (0.524±0.152)×10<sup>-3</sup>mm<sup>2</sup>/s. There was no obvious difference between the FA, MD, λ‖, λ⊥ of the bilateral optic radiation and the bilateral optic nerve (<i>P</i>>0.05) and no obvious difference between male and female group. The FA, MD, λ‖, λ⊥ of the bilateral optic radiation and the bilateral optic nerve had no obvious correlations to the age.<b>CONCLUSION:</b> DTI is sensitive to the optic nerve and radiation and the relevant DTI parameters of the optic nerve and radiation are established preliminarily in this study.
ISSN:2222-3959
2227-4898