Literature DB >> 31786076

Generalized Linear Binning to Compare Hyperpolarized 129Xe Ventilation Maps Derived from 3D Radial Gas Exchange Versus Dedicated Multislice Gradient Echo MRI.

Mu He1, Ziyi Wang2, Leith Rankine3, Sheng Luo4, John Nouls5, Rohan Virgincar2, Joseph Mammarappallil6, Bastiaan Driehuys7.   

Abstract

RATIONALE: Hyperpolarized 129Xe ventilation MRI is typically acquired using multislice fast gradient recalled echo (GRE), but interleaved 3D radial 129Xe gas transfer MRI now provides dissolved-phase and ventilation images from a single breath. To investigate whether these ventilation images provide equivalent quantitative metrics, we introduce generalized linear binning analysis.
METHODS: This study included 36 patients who had undergone both multislice GRE ventilation and 3D radial gas exchange imaging. Images were then quantified by linear binning to classify voxels into one of four clusters: ventilation defect percentage (VDP), Low-, Medium- or High-ventilation percentage (LVP, MVP, HVP). For 3D radial images, linear binning thresholds were generalized using a Box-Cox rescaled reference histogram. We compared the cluster populations from the two ventilation acquisitions both numerically and spatially.
RESULTS: Interacquisition Bland-Altman limits of agreement for the clusters between 3D radial vs GRE were (-7% to 5%) for VDP, (-10% to 14%) for LVP, and (-8% to 8%) for HVP. While binning maps were qualitatively similar between acquisitions, their spatial overlap was modest for VDP (Dice = 0.5 ± 0.2), and relatively poor for LVP (0.3 ± 0.1) and HVP (0.2 ± 0.1).
CONCLUSION: Both acquisitions yield reasonably concordant VDP and qualitatively similar maps. However, poor regional agreement (Dice) suggests that the two acquisitions cannot yet be used interchangeably. However, further improvements in 3D radial resolution and reconciliation of bias field correction may well obviate the need for a dedicated ventilation scan in many cases.
Copyright © 2019 The Association of University Radiologists. Published by Elsevier Inc. All rights reserved.

Entities:  

Keywords:  3D Radial; Acquisition; Hyperpolarized (129)Xe MRI; Multislice GRE; Quantification

Mesh:

Substances:

Year:  2019        PMID: 31786076      PMCID: PMC7250711          DOI: 10.1016/j.acra.2019.10.016

Source DB:  PubMed          Journal:  Acad Radiol        ISSN: 1076-6332            Impact factor:   3.173


  26 in total

1.  Time-resolved contrast-enhanced imaging with isotropic resolution and broad coverage using an undersampled 3D projection trajectory.

Authors:  Andrew V Barger; Walter F Block; Yuriy Toropov; Thomas M Grist; Charles A Mistretta
Journal:  Magn Reson Med       Date:  2002-08       Impact factor: 4.668

2.  Dose and pulse sequence considerations for hyperpolarized (129)Xe ventilation MRI.

Authors:  Mu He; Scott H Robertson; S Sivaram Kaushik; Matthew S Freeman; Rohan S Virgincar; John Davies; Jane Stiles; William M Foster; H Page McAdams; Bastiaan Driehuys
Journal:  Magn Reson Imaging       Date:  2015-04-30       Impact factor: 2.546

3.  Ventilation-based segmentation of the lungs using hyperpolarized (3)He MRI.

Authors:  Nicholas J Tustison; Brian B Avants; Lucia Flors; Talissa A Altes; Eduard E de Lange; John P Mugler; James C Gee
Journal:  J Magn Reson Imaging       Date:  2011-08-11       Impact factor: 4.813

4.  A two-center analysis of hyperpolarized 129Xe lung MRI in stable pediatric cystic fibrosis: Potential as a biomarker for multi-site trials.

Authors:  Marcus J Couch; Robert Thomen; Nikhil Kanhere; Raymond Hu; Felix Ratjen; Jason Woods; Giles Santyr
Journal:  J Cyst Fibros       Date:  2019-03-25       Impact factor: 5.482

5.  Mapping and correcting hyperpolarized magnetization decay with radial keyhole imaging.

Authors:  Peter J Niedbalski; Matthew M Willmering; Scott H Robertson; Matthew S Freeman; Wolfgang Loew; Randy O Giaquinto; Christopher Ireland; Ronald G Pratt; Charles L Dumoulin; Jason C Woods; Zackary I Cleveland
Journal:  Magn Reson Med       Date:  2019-03-07       Impact factor: 4.668

6.  Hyperpolarised 129Xe magnetic resonance imaging to monitor treatment response in children with cystic fibrosis.

Authors:  Jonathan H Rayment; Marcus J Couch; Nancy McDonald; Nikhil Kanhere; David Manson; Giles Santyr; Felix Ratjen
Journal:  Eur Respir J       Date:  2019-05-02       Impact factor: 16.671

7.  Hyperpolarized 129 Xe gas transfer MRI: the transition from 1.5T to 3T.

Authors:  Ziyi Wang; Mu He; Elianna Bier; Leith Rankine; Geoffry Schrank; Sudarshan Rajagopal; Yuh-Chin Huang; Christopher Kelsey; Samantha Womack; Joseph Mammarappallil; Bastiaan Driehuys
Journal:  Magn Reson Med       Date:  2018-07-19       Impact factor: 4.668

8.  Quantitative analysis of hyperpolarized 129 Xe gas transfer MRI.

Authors:  Ziyi Wang; Scott Haile Robertson; Jennifer Wang; Mu He; Rohan S Virgincar; Geoffry M Schrank; Elianna A Bier; Sudarshan Rajagopal; Yuh Chin Huang; Thomas G O'Riordan; Craig R Rackley; H Page McAdams; Bastiaan Driehuys
Journal:  Med Phys       Date:  2017-05-18       Impact factor: 4.071

9.  Symmetric diffeomorphic image registration with cross-correlation: evaluating automated labeling of elderly and neurodegenerative brain.

Authors:  B B Avants; C L Epstein; M Grossman; J C Gee
Journal:  Med Image Anal       Date:  2007-06-23       Impact factor: 8.545

10.  Assessment of the influence of lung inflation state on the quantitative parameters derived from hyperpolarized gas lung ventilation MRI in healthy volunteers.

Authors:  Paul J C Hughes; Laurie Smith; Ho-Fung Chan; Bilal A Tahir; Graham Norquay; Guilhem J Collier; Alberto Biancardi; Helen Marshall; Jim M Wild
Journal:  J Appl Physiol (1985)       Date:  2018-11-09
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  4 in total

1.  Bias field correction in hyperpolarized 129 Xe ventilation MRI using templates derived by RF-depolarization mapping.

Authors:  Junlan Lu; Ziyi Wang; Elianna Bier; Suphachart Leewiwatwong; David Mummy; Bastiaan Driehuys
Journal:  Magn Reson Med       Date:  2022-05-04       Impact factor: 3.737

2.  Using hyperpolarized 129Xe gas-exchange MRI to model the regional airspace, membrane, and capillary contributions to diffusing capacity.

Authors:  Ziyi Wang; Leith Rankine; Elianna A Bier; David Mummy; Junlan Lu; Alex Church; Robert M Tighe; Aparna Swaminathan; Yuh-Chin T Huang; Loretta G Que; Joseph G Mammarappallil; Sudarshan Rajagopal; Bastiaan Driehuys
Journal:  J Appl Physiol (1985)       Date:  2021-03-18

Review 3.  In vivo methods and applications of xenon-129 magnetic resonance.

Authors:  Helen Marshall; Neil J Stewart; Ho-Fung Chan; Madhwesha Rao; Graham Norquay; Jim M Wild
Journal:  Prog Nucl Magn Reson Spectrosc       Date:  2020-12-09       Impact factor: 9.795

4.  A dual center and dual vendor comparison study of automated perfusion-weighted phase-resolved functional lung magnetic resonance imaging with dynamic contrast-enhanced magnetic resonance imaging in patients with cystic fibrosis.

Authors:  Lea Behrendt; Laurie J Smith; Andreas Voskrebenzev; Filip Klimeš; Till F Kaireit; Gesa H Pöhler; Agilo L Kern; Cristian Crisosto Gonzalez; Anna-Maria Dittrich; Helen Marshall; Katharina Schütz; Paul J C Hughes; Pierluigi Ciet; Harm A W M Tiddens; Jim M Wild; Jens Vogel-Claussen
Journal:  Pulm Circ       Date:  2022-04-05       Impact factor: 2.886

  4 in total

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