Related Experiment Video
Updated: Jan 20, 2026
Diffusion Tensor Imaging in Traumatic Brain Injury
Published on: April 30, 2023
Diffusion Tensor Imaging of the Kidney: Design and Evaluation of a Reliable Processing Pipeline
Pasquale Borrelli1, Carlo Cavaliere1, Luca Basso1
1IRCCS SDN, Diagnostic Imaging, Naples, 80143, Italy.
Abstract:
Diffusion tensor imaging (DTI) is particularly suitable for kidney studies due to tubules, collector ducts and blood vessels in the medulla that produce spatially restricted diffusion of water molecules, thus reflecting the high grade of anisotropy detectable by DTI. Kidney DTI is still a challenging technique where the off-resonance susceptibility artefacts and subject motion can severely affect the reproducibility of results. The aim of this study is to design a reliable processing pipeline by assessing different image processing approaches in terms of reproducibility and image artefacts correction. The results of four different processing pipelines (eddy: correction of eddy-currents and motion between DTI volume; eddy-s2v: eddy and within DTI volume motion correction; topup: eddy and geometric distortion correction; topup-s2v: topup and within DTI volume motion correction) are compared in terms of reproducibility by test-retest analysis in 14 healthy subjects. Within-subject coefficient of variation (wsCV) and intra-class correlation coefficient (ICC) are measured to assess the reproducibility and Dice similarity index is evaluated for the spatial alignment between DTI and anatomical images. Topup-s2v pipeline provides highest reproducibility (wsCV = 0.053, ICC = 0.814) and best correction of image distortion (Dice = 0.83). This study definitely provides a recipe for data processing, enabling for a clinical suitability of kidney DTI.
Related Concept Videos
Using Diffusion Tensor Imaging in Traumatic Brain Injury
Traditional brain imaging techniques using MRI are very good at visualizing the gross structures of the brain. A structural brain image made with MRI provides high contrast of the borders between gray and white matter, and information about the size and shape of brain structures. However, these images do not detail the underlying structure and integrity of white matter networks in the brain, which...
Assessing Spinal Cord Compression Using Diffusion Tensor Imaging
15:48Tracking the Mammary Architectural Features and Detecting Breast Cancer with Magnetic Resonance Diffusion Tensor Imaging
07:00Diffusion Tensor Magnetic Resonance Imaging in Chronic Spinal Cord Compression
09:33Diffusion Tensor Magnetic Resonance Imaging in the Analysis of Neurodegenerative Diseases
12:21Probing the Brain in Autism Using fMRI and Diffusion Tensor Imaging

