Literature DB >> 23289085

The physical and biological basis of quantitative parameters derived from diffusion MRI.

Gavin P Winston1.   

Abstract

Diffusion magnetic resonance imaging is a quantitative imaging technique that measures the underlying molecular diffusion of protons. Diffusion-weighted imaging (DWI) quantifies the apparent diffusion coefficient (ADC) which was first used to detect early ischemic stroke. However this does not take account of the directional dependence of diffusion seen in biological systems (anisotropy).Diffusion tensor imaging (DTI) provides a mathematical model of diffusion anisotropy and is widely used. Parameters, including fractional anisotropy (FA), mean diffusivity (MD), parallel and perpendicular diffusivity can be derived to provide sensitive, but non-specific, measures of altered tissue structure. They are typically assessed in clinical studies by voxel-based or region-of-interest based analyses.The increasing recognition of the limitations of the diffusion tensor model has led to more complex multi-compartment models such as CHARMED, AxCaliber or NODDI being developed to estimate microstructural parameters including axonal diameter, axonal density and fiber orientations. However these are not yet in routine clinical use due to lengthy acquisition times.In this review, I discuss how molecular diffusion may be measured using diffusion MRI, the biological and physical bases for the parameters derived from DWI and DTI, how these are used in clinical studies and the prospect of more complex tissue models providing helpful micro-structural information.

Entities:  

Keywords:  Diffusion MRI; diffusion tensor imaging; diffusion weighted MRI; white matter

Year:  2012        PMID: 23289085      PMCID: PMC3533595          DOI: 10.3978/j.issn.2223-4292.2012.12.05

Source DB:  PubMed          Journal:  Quant Imaging Med Surg        ISSN: 2223-4306


  52 in total

1.  Color schemes to represent the orientation of anisotropic tissues from diffusion tensor data: application to white matter fiber tract mapping in the human brain.

Authors:  S Pajevic; C Pierpaoli
Journal:  Magn Reson Med       Date:  1999-09       Impact factor: 4.668

Review 2.  Basic principles of diffusion-weighted imaging.

Authors:  Roland Bammer
Journal:  Eur J Radiol       Date:  2003-03       Impact factor: 3.528

3.  Characterization of anisotropy in high angular resolution diffusion-weighted MRI.

Authors:  Lawrence R Frank
Journal:  Magn Reson Med       Date:  2002-06       Impact factor: 4.668

4.  High angular resolution diffusion imaging reveals intravoxel white matter fiber heterogeneity.

Authors:  David S Tuch; Timothy G Reese; Mette R Wiegell; Nikos Makris; John W Belliveau; Van J Wedeen
Journal:  Magn Reson Med       Date:  2002-10       Impact factor: 4.668

5.  Voxel based versus region of interest analysis in diffusion tensor imaging of neurodevelopment.

Authors:  Lindsay Snook; Chris Plewes; Christian Beaulieu
Journal:  Neuroimage       Date:  2006-10-27       Impact factor: 6.556

6.  Anisotropy in diffusion-weighted MRI.

Authors:  M E Moseley; J Kucharczyk; H S Asgari; D Norman
Journal:  Magn Reson Med       Date:  1991-06       Impact factor: 4.668

7.  About "axial" and "radial" diffusivities.

Authors:  Claudia A M Wheeler-Kingshott; Mara Cercignani
Journal:  Magn Reson Med       Date:  2009-05       Impact factor: 4.668

8.  Early detection of regional cerebral ischemia in cats: comparison of diffusion- and T2-weighted MRI and spectroscopy.

Authors:  M E Moseley; Y Cohen; J Mintorovitch; L Chileuitt; H Shimizu; J Kucharczyk; M F Wendland; P R Weinstein
Journal:  Magn Reson Med       Date:  1990-05       Impact factor: 4.668

9.  A simplified method to measure the diffusion tensor from seven MR images.

Authors:  P J Basser; C Pierpaoli
Journal:  Magn Reson Med       Date:  1998-06       Impact factor: 4.668

10.  Diffusion-weighted MR imaging of anisotropic water diffusion in cat central nervous system.

Authors:  M E Moseley; Y Cohen; J Kucharczyk; J Mintorovitch; H S Asgari; M F Wendland; J Tsuruda; D Norman
Journal:  Radiology       Date:  1990-08       Impact factor: 11.105

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  67 in total

1.  Functional hemispherectomy: postoperative motor state and correlation to preoperative DTI.

Authors:  M Nelles; H Urbach; R Sassen; J C Schöne-Bake; H Tschampa; F Träber; D Delev; C E Elger; A Jurcoane; E Hattingen
Journal:  Neuroradiology       Date:  2015-08-12       Impact factor: 2.804

Review 2.  Late postpartum eclampsia complicated with posterior reversible encephalopathy syndrome: a case report and a literature review.

Authors:  Lihong Zhang; Yacong Wang; Liang Shi; Jianhui Cao; Zhenzhong Li; Yì-Xiáng J Wáng
Journal:  Quant Imaging Med Surg       Date:  2015-12

3.  White matter abnormalities and impaired attention abilities in children born very preterm.

Authors:  Andrea L Murray; Deanne K Thompson; Leona Pascoe; Alexander Leemans; Terrie E Inder; Lex W Doyle; Jacqueline F I Anderson; Peter J Anderson
Journal:  Neuroimage       Date:  2015-08-28       Impact factor: 6.556

4.  White Matter Abnormalities in Major Depression Biotypes Identified by Diffusion Tensor Imaging.

Authors:  Sugai Liang; Qiang Wang; Xiangzhen Kong; Wei Deng; Xiao Yang; Xiaojing Li; Zhong Zhang; Jian Zhang; Chengcheng Zhang; Xin-Min Li; Xiaohong Ma; Junming Shao; Andrew J Greenshaw; Tao Li
Journal:  Neurosci Bull       Date:  2019-05-06       Impact factor: 5.203

5.  Structural integrity in subjective cognitive decline, mild cognitive impairment and Alzheimer's disease based on multicenter diffusion tensor imaging.

Authors:  Katharina Brueggen; Martin Dyrba; Arturo Cardenas-Blanco; Anja Schneider; Klaus Fliessbach; Katharina Buerger; Daniel Janowitz; Oliver Peters; Felix Menne; Josef Priller; Eike Spruth; Jens Wiltfang; Ruth Vukovich; Christoph Laske; Martina Buchmann; Michael Wagner; Sandra Röske; Annika Spottke; Janna Rudolph; Coraline D Metzger; Ingo Kilimann; Laura Dobisch; Emrah Düzel; Frank Jessen; Stefan J Teipel
Journal:  J Neurol       Date:  2019-06-21       Impact factor: 4.849

6.  Optimization of apparent diffusion coefficient measured by diffusion-weighted MRI for diagnosis of breast lesions presenting as mass and non-mass-like enhancement.

Authors:  Liuquan Cheng; Yuhan Bai; Jing Zhang; Mei Liu; Xiru Li; Ailiang Zhang; Xiaojing Zhang; Lin Ma
Journal:  Tumour Biol       Date:  2013-02-10

7.  Correction of geometric distortion in Propeller echo planar imaging using a modified reversed gradient approach.

Authors:  Hing-Chiu Chang; Tzu-Chao Chuang; Yi-Ru Lin; Fu-Nien Wang; Teng-Yi Huang; Hsiao-Wen Chung
Journal:  Quant Imaging Med Surg       Date:  2013-04

8.  Contralateral interictal spikes are related to tapetum damage in left temporal lobe epilepsy.

Authors:  Dorian Pustina; Gaelle Doucet; Christopher Skidmore; Michael Sperling; Joseph Tracy
Journal:  Epilepsia       Date:  2014-07-16       Impact factor: 5.864

Review 9.  What does diffusion tensor imaging (DTI) tell us about cognitive networks in temporal lobe epilepsy?

Authors:  Kelly M Leyden; N Erkut Kucukboyaci; Olivia K Puckett; Davis Lee; Richard Q Loi; Brianna Paul; Carrie R McDonald
Journal:  Quant Imaging Med Surg       Date:  2015-04

10.  Re-examining age-related differences in white matter microstructure with free-water corrected diffusion tensor imaging.

Authors:  Jordan A Chad; Ofer Pasternak; David H Salat; J Jean Chen
Journal:  Neurobiol Aging       Date:  2018-08-01       Impact factor: 4.673

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