Title of article :
Distinguishing and quantification of the human visual pathways using high-spatial-resolution diffusion tensor tractography
Author/Authors :
Kamali، نويسنده , , Arash and Hasan، نويسنده , , Khader M. and Adapa، نويسنده , , Pavani and Razmandi، نويسنده , , Azadeh and Keser، نويسنده , , Zafer and Lincoln، نويسنده , , John and Kramer، نويسنده , , Larry A.، نويسنده ,
Issue Information :
روزنامه با شماره پیاپی سال 2014
Abstract :
Quantification of the living human visual system using MRI methods has been challenging, but several applications demand a reliable and time-efficient data acquisition protocol. In this study, we demonstrate the utility of high-spatial-resolution diffusion tensor fiber tractography (DTT) in reconstructing and quantifying the human visual pathways. Five healthy males, age range 24–37 years, were studied after approval of the institutional review board (IRB) at The University of Texas Health Science Center at Houston. We acquired diffusion tensor imaging (DTI) data with 1-mm slice thickness on a 3.0-Tesla clinical MRI scanner and analyzed the data using DTT with the fiber assignment by continuous tractography (FACT) algorithm. By utilizing the high-spatial-resolution DTI protocol with FACT algorithm, we were able to reconstruct and quantify bilateral optic pathways including the optic chiasm, optic tract, optic radiations free of contamination from neighboring white matter tracts.
Keywords :
Diffusion tensor tractography , Optic chiasm , High spatial resolution , Optic tract , Calcarine cortex , Optic radiations , Visual pathways , Retinogeniculocalcarine tract , Diffusion Tensor Imaging , human visual system , Optic nerve , occipital lobe
Journal title :
Magnetic Resonance Imaging
Journal title :
Magnetic Resonance Imaging